Profiles

Meixue Zhou

UTAS Home Professor Meixue Zhou

Meixue Zhou

Professor in Plant Breeding (Barley) and Plant Stress Tolerance

Mount Pleasant Research Lab, Mount Pleasant

+61 3 6324 5615 (phone)

+61 3 6336 5395 (fax)

Meixue.Zhou@utas.edu.au

Professor Meixue Zhou is cereal pre-breeder at the Tasmanian Institute of Agriculture. He is interested in plant abiotic and biotic stress tolerance as well as grain quality and other agronomic traits.

Biography

Meixue has been involved in barley research for nearly 30 years, which includes more than 10 years of experience in China. He commenced his research career in Australia in 1999 after finishing his PhD study at Charles Sturt University, Australia. He started with a position of a Junior Research Fellow (Level A) in 1999, was then promoted to Research Fellow in 2002, to Senior Research Fellow in 2006, Associate Professor in 2010 and Professor in 2018.

Career summary

Qualifications

DegreeUniversityCountryAwarded
PhDCharles Sturt UniversityAustralia2000
MAYangzhou UniversityChina1988
BAYangzhou UniversityChina1982

Languages (other than English)

  • Chinese (mandarin)

View more on Professor Meixue Zhou in WARP

Research Themes

Meixue's research aligns to the University's research theme of Environment, Resources and Sustainability. His research interests include: (1) development of barley germplasm with stress tolerance (waterlogging, salinity, drought and acid soils), (2) cereal quality improvement, (3) physiological mechanisms for waterlogging and salinity tolerance, and (4) identifying molecular markers associated with the resistance of various stresses and diseases in barley.

Collaboration

Meixue is involved in several international projects with China, aiming at plant abiotic stress tolerance, disease resistance and barley malting quality. The Chinese collaborators include most of the Chinese Agricultural Universities/Institutes.

Fields of Research

  • Crop and Pasture Improvement (Selection and Breeding) (070305)
  • Plant Physiology (060705)
  • Crop and Pasture Biochemistry and Physiology (070303)
  • Horticultural Crop Growth and Development (070601)
  • Crop and Pasture Protection (Pests, Diseases and Weeds) (070308)
  • Crop and Pasture Production (070399)
  • Sustainable Agricultural Development (070108)
  • Agricultural Systems Analysis and Modelling (070105)
  • Molecular Evolution (060409)
  • Horticultural Crop Improvement (Selection and Breeding) (070602)
  • Horticultural Crop Protection (Pests, Diseases and Weeds) (070603)
  • Marketing (150599)
  • Animal Nutrition (070204)
  • Plant Biology (060799)
  • Plant Pathology (060704)
  • Crop and Pasture Nutrition (070306)
  • Farming Systems Research (070107)
  • Education (139999)
  • Post Harvest Horticultural Technologies (incl. Transportation and Storage) (070605)
  • Biological Adaptation (060303)
  • Epigenetics (incl. Genome Methylation and Epigenomics) (060404)
  • Plant Cell and Molecular Biology (060702)
  • Agronomy (070302)
  • Quantitative Genetics (incl. Disease and Trait Mapping Genetics) (060412)
  • Soil Biology (050303)

Research Objectives

  • Barley (820501)
  • Wheat (820507)
  • Expanding Knowledge in the Environmental Sciences (970105)
  • Plant Production and Plant Primary Products (829999)
  • Rice (820402)
  • Expanding Knowledge in the Biological Sciences (970106)
  • Vegetables (820215)
  • Winter Grains and Oilseeds (820599)
  • Flora, Fauna and Biodiversity of environments (960899)
  • Expanding Knowledge in the Agricultural and Veterinary Sciences (970107)
  • Environmentally Sustainable Plant Production (829899)
  • Sown Pastures (excl. Lucerne) (830406)
  • Dairy Cattle (830302)
  • Maize (820401)
  • Oats (820506)
  • Forest Product Traceability and Quality Assurance (829901)
  • Grain Legumes (820503)
  • Plant Extract Crops (e.g. Pyrethrum, Jojoba) (820303)

Publications

Since 1999 when Meixue started working at the University of Tasmania, he has published more than 100 refereed papers (one third of them are first author or corresponding author) and six book chapters. Most of the papers have beem published in high IF journals which include PNAS (IF = 9.67), Plant Physiology (IF = 6.84), Journal of Experimental Botany (IF = 5.53), Plant Cell Environment (IF = 6.96), BMC Genomics (IF = 3.99), BMC Plant Biology (IF = 3.81), TAG (IF = 3.79). More importantly, his publication showed greater impact in the last five years with of 29 and over 3,100 citations based on Google scholar with about 2500 citations since 2010.

Total publications

238

Highlighted publications

(7 outputs)
YearTypeCitationAltmetrics
2012Journal ArticleDai F, Nevo E, Wu D, Comadran J, Zhou M, et al., 'Tibet is one of the centers of domestication of cultivated barley', PNAS, 109, (42) pp. 16969-16973. ISSN 0027-8424 (2012) [Refereed Article]

DOI: 10.1073/pnas.1215265109 [eCite] [Details]

Citations: Scopus - 125Web of Science - 115

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2012Journal ArticleXu R, Wang J, Li C, Johnson P, Lu C, et al., 'A single locus is responsible for salinity tolerance in a Chinese landrace barley (Hordeum vulgare L.)', PLoS One, 7, (8) Article e43079. ISSN 1932-6203 (2012) [Refereed Article]

DOI: 10.1371/journal.pone.0043079 [eCite] [Details]

Citations: Scopus - 30Web of Science - 24

Co-authors: Johnson P

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2008Journal ArticleLi Haobing, Vaillancourt RE, Mendham NS, Zhou M, 'Comparative mapping of quantitative trait loci associated with waterlogging tolerance in barley (Hordeum vulgare L.)', BMC Genomics, 9, (27) pp. 1-12. ISSN 1471-2164 (2008) [Refereed Article]

DOI: 10.1186/1471-2164-9-401 [eCite] [Details]

Citations: Scopus - 71Web of Science - 62

Co-authors: Li Haobing; Vaillancourt RE; Mendham NS

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2007Journal ArticleChen Z, Pottosin II, Cuin TA, Fuglsang AT, Tester M, et al., 'Root Plasma Membrane Transporters Controlling K+/Na+ Homeostasis in Salt-Stressed Barley [C] [W] ', Plant Physiology, 145, (4) pp. 1714-1725. ISSN 0032-0889 (2007) [Refereed Article]

DOI: 10.1104/pp.107.110262 [eCite] [Details]

Citations: Scopus - 272Web of Science - 239

Co-authors: Chen Z; Cuin TA; Newman IA; Shabala SN

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2007Journal ArticleWang Junping, Raman H, Zhou M, Ryan PR, Delhaize E, et al., 'High-resolution mapping of the Alp locus and identification of a candidate gene HvMate controlling aluminium tolerancein barley (Hordeum vulgare L.) ', Theoretical and Applied Genetics, 115, (2) pp. 265-276. ISSN 0040-5752 (2007) [Refereed Article]

DOI: 10.1007/s00122-007-0562-9 [eCite] [Details]

Citations: Scopus - 92Web of Science - 48

Co-authors: Mendham NJ

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2006Journal ArticlePang J, Newman IA, Mendham NJ, Zhou M, Shabala SN, 'Microelectrode ion and O2 fluxes measurements reveal differential sensitivity of barley root tissues to hypoxia', Plant, Cell and Environment , 29, (6) pp. 1107-1121. ISSN 0140-7791 (2006) [Refereed Article]

DOI: 10.1111/j.1365-3040.2005.01486.x [eCite] [Details]

Citations: Scopus - 61Web of Science - 53

Co-authors: Pang J; Newman IA; Mendham NJ; Shabala SN

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2005Journal ArticleChen Z, Newman IA, Zhou M, Mendham NJ, Zhang G, et al., 'Screening plants for salt tolerance by measuring K+ flux: a case study for barley', Plant, Cell and Environment , 28, (10) pp. 1230-1246. ISSN 0140-7791 (2005) [Refereed Article]

DOI: 10.1111/j.1365-3040.2005.01364.x [eCite] [Details]

Citations: Scopus - 295Web of Science - 268

Co-authors: Chen Z; Newman IA; Mendham NJ; Shabala SN

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Journal Article

(159 outputs)
YearCitationAltmetrics
2019Choudhury S, Larkin P, Meinke H, Hasanuzzaman MD, Johnson P, et al., 'Barley yellow dwarf virus infection affects physiology, morphology, grain yield and flour pasting properties of wheat', Crop and Pasture Science, 70, (1) pp. 16-25. ISSN 1836-0947 (2019) [Refereed Article]

DOI: 10.1071/CP18364 [eCite] [Details]

Co-authors: Choudhury S; Meinke H; Hasanuzzaman MD; Johnson P

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2019Hu H, Ahmed I, Choudhury S, Fan Y, Shabala S, et al., 'Wild barley shows a wider diversity in genes regulating heading date compared with cultivated barley', Euphytica, 215 Article 75. ISSN 0014-2336 (2019) [Refereed Article]

DOI: 10.1007/s10681-019-2398-1 [eCite] [Details]

Co-authors: Ahmed I; Choudhury S; Fan Y; Shabala S; Harrison M; Meinke H

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2019Pan R, He D, Xu L, Zhou M, Li C, et al., 'Proteomic analysis reveals response of differential wheat (Triticum aestivum L.) genotypes to oxygen deficiency stress', BMC Genomics, 20 Article 60. ISSN 1471-2164 (2019) [Refereed Article]

DOI: 10.1186/s12864-018-5405-3 [eCite] [Details]

Citations: Scopus - 1

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2019Wang F, Chen Z-H, Lui X, Shabala L, Yu M, et al., 'The loss of RBOHD function modulates root adaptive responses to combined hypoxia and salinity stress in Arabidopsis', Environmental and Experimental Botany, 158 pp. 125-135. ISSN 0098-8472 (2019) [Refereed Article]

DOI: 10.1016/j.envexpbot.2018.11.020 [eCite] [Details]

Citations: Scopus - 1Web of Science - 1

Co-authors: Wang F; Shabala L; Shabala S

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2019Ibrahim A, Harrison MT, Meinke H, Zhou M, 'Examining the yield potential of barley near-isogenic lines using a genotype by environment by management analysis', European Journal of Agronomy, 105 pp. 41-51. ISSN 1161-0301 (2019) [Refereed Article]

DOI: 10.1016/j.eja.2019.02.003 [eCite] [Details]

Co-authors: Harrison MT; Meinke H

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2018Choudhury S, Hu H, Larkin P, Meinke H, Shabala S, et al., 'Agronomical, biochemical and histological response of resistant and susceptible wheat and barley under BYDV stress', PeerJ, 6, (5) Article e483. ISSN 2167-8359 (2018) [Refereed Article]

DOI: 10.7717/peerj.4833 [eCite] [Details]

Citations: Scopus - 1

Co-authors: Choudhury S; Meinke H; Shabala S; Ahmed I

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2018Gill MB, Zeng F, Shabala L, Bohm J, Zhang G, et al., 'The ability to regulate voltage-gated K+-permeable channels in the mature root epidermis is essential for waterlogging tolerance in barley', Journal of Experimental Botany, 69, (3) pp. 667-680. ISSN 0022-0957 (2018) [Refereed Article]

DOI: 10.1093/jxb/erx429 [eCite] [Details]

Citations: Scopus - 6Web of Science - 6

Co-authors: Gill MB; Shabala L; Bohm J; Shabala S

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2018Hasanuzzaman Md, Shabala L, Zhou M, Brodribb TJ, Corkrey R, et al., 'Factors determining stomatal and non-stomatal (residual) transpiration and their contribution towards salinity tolerance in contrasting barley genotypes', Environmental and Experimental Botany, 153 pp. 10-20. ISSN 0098-8472 (2018) [Refereed Article]

DOI: 10.1016/j.envexpbot.2018.05.002 [eCite] [Details]

Citations: Scopus - 2Web of Science - 1

Co-authors: Hasanuzzaman Md; Shabala L; Brodribb TJ; Corkrey R; Shabala S

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2018Huang X, Fan Y, Shabala L, Rengel Z, Shabala S, et al., 'A major QTL controlling the tolerance to manganese toxicity in barley (Hordeum vulgare L.)', Molecular Breeding, 38, (2) Article 16. ISSN 1380-3743 (2018) [Refereed Article]

DOI: 10.1007/s11032-017-0767-9 [eCite] [Details]

Citations: Scopus - 2Web of Science - 2

Co-authors: Huang X; Fan Y; Shabala L; Rengel Z; Shabala S

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2018Ibrahim A, Harrison M, Meinke H, Fan Y, Johnson P, et al., 'A regulator of early flowering in barley (Hordeum vulgare L.)', PLoS One, 13, (7) Article e0200722. ISSN 1932-6203 (2018) [Refereed Article]

DOI: 10.1371/journal.pone.0200722 [eCite] [Details]

Citations: Scopus - 2Web of Science - 2

Co-authors: Harrison M; Meinke H; Fan Y; Johnson P

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2018Liu J, Xu M, Estavillo GM, Delhaize E, White RG, et al., 'Altered expression of the malate-permeable anion channel OsALMT4 reduces the growth of rice under low radiance', Frontiers in Plant Science, 9 Article 542. ISSN 1664-462X (2018) [Refereed Article]

DOI: 10.3389/fpls.2018.00542 [eCite] [Details]

Citations: Scopus - 1Web of Science - 1

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2018Liu J, Zhou M, 'The ALMT gene family performs multiple functions in plants', Agronomy, 8, (2) Article 20. ISSN 2073-4395 (2018) [Refereed Article]

DOI: 10.3390/agronomy8020020 [eCite] [Details]

Citations: Scopus - 2Web of Science - 2

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2018Shi W, Yue L, Cheng J, Guo J, Li L, et al., 'A genome-wide associate study reveals favorable alleles conferring apical and basal spikelet fertility in wheat (Triticum aestivum L.)', Molecular Breeding, 38, (12) Article 146. ISSN 1380-3743 (2018) [Refereed Article]

DOI: 10.1007/s11032-018-0906-y [eCite] [Details]

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2018Wang H, Shabala L, Zhou M, Shabala S, 'Hydrogen peroxide-induced root Ca2+ and K+ fluxes correlate with salt tolerance in cereals: towards the cell-based phenotyping', International Journal of Molecular Sciences, 19, (3) Article 702. ISSN 1422-0067 (2018) [Refereed Article]

DOI: 10.3390/ijms19030702 [eCite] [Details]

Citations: Scopus - 5Web of Science - 4

Co-authors: Wang H; Shabala L; Shabala S

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2018Wang J, Yang J, Hua W, Wu X, Zhu J, et al., 'QTL mapping reveals the relationship between pasting properties and malt extract in barley', International Journal of Molecular Sciences, 19, (11) Article 3559. ISSN 1000-9035 (2018) [Refereed Article]

DOI: 10.3390/ijms19113559 [eCite] [Details]

Citations: Scopus - 1Web of Science - 1

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2018Wu H, Shabala L, Azzarello E, Huang Y, Pandolfi C, et al., 'Na+ extrusion from the cytosol and tissue-specific Na+ sequestration in roots confer differential salt stress tolerance between durum and bread wheat', Journal of Experimental Botany, 69, (16) pp. 3987-4001. ISSN 0022-0957 (2018) [Refereed Article]

DOI: 10.1093/jxb/ery194 [eCite] [Details]

Citations: Scopus - 7Web of Science - 4

Co-authors: Wu H; Shabala L; Su N; Wu Q; Bazihizina N; Wang L; Shabala S

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2018Choudhury S, Al-Shammari D, Hu H, Meinke H, Westmore G, et al., 'A screening method to detect BYDV-PAV resistance in cereals under glasshouse conditions', Plant Pathology, 67, (9) pp. 1-10. ISSN 0032-0862 (2018) [Refereed Article]

DOI: 10.1111/ppa.12888 [eCite] [Details]

Citations: Scopus - 1Web of Science - 1

Co-authors: Choudhury S; Meinke H

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2018Habib A, Powell JJ, Stiller J, Liu M, Shabala S, et al., 'A multiple near isogenic line (multi-NIL) RNA-seq approach to identify candidate genes underpinning QTL', Theoretical and Applied Genetics, 131, (3) pp. 613-624. ISSN 0040-5752 (2018) [Refereed Article]

DOI: 10.1007/s00122-017-3023-0 [eCite] [Details]

Citations: Scopus - 3Web of Science - 3

Co-authors: Shabala S

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2017Lu X, Zhou X, Cao Y, Zhou M, McNeil D, et al., 'RNA-seq analysis of cold and drought responsive transcriptomes of Zea mays ssp. mexicana L', Frontiers in Plant Science, 8 Article 136. ISSN 1664-462X (2017) [Refereed Article]

DOI: 10.3389/fpls.2017.00136 [eCite] [Details]

Citations: Scopus - 9Web of Science - 13

Co-authors: McNeil D

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2017Falakboland Z, Zhou M, Zeng F, Kiani-Pouya A, Shabala L, et al., 'Plant ionic relation and whole-plant physiological responses to waterlogging, salinity and their combination in barley', Functional Plant Biology, 44, (9) pp. 941-953. ISSN 1445-4408 (2017) [Refereed Article]

DOI: 10.1071/FP16385 [eCite] [Details]

Citations: Scopus - 5Web of Science - 3

Co-authors: Falakboland Z; Zeng F; Kiani-Pouya A; Shabala L; Shabala S

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2017Hasanuzzaman Md, Davies NW, Shabala L, Zhou M, Brodribb TJ, et al., 'Residual transpiration as a component of salinity stress tolerance mechanism: a case study for barley', BMC Plant Biology, 17 Article 107. ISSN 1471-2229 (2017) [Refereed Article]

DOI: 10.1186/s12870-017-1054-y [eCite] [Details]

Citations: Scopus - 6Web of Science - 5

Co-authors: Hasanuzzaman Md; Davies NW; Shabala L; Brodribb TJ; Shabala S

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2017Hasanuzzaman Md, Shabala L, Brodribb TJ, Zhou M, Shabala S, 'Assessing the suitability of various screening methods as a proxy for drought tolerance in barley', Functional Plant Biology, 44, (2) pp. 253-266. ISSN 1445-4408 (2017) [Refereed Article]

DOI: 10.1071/FP16263 [eCite] [Details]

Citations: Scopus - 6Web of Science - 5

Co-authors: Hasanuzzaman Md; Shabala L; Brodribb TJ; Shabala S

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2017Liu J, Zhou M, Delhaize E, Ryan PR, 'Altered expression of a malate-permeable anion channel, OsALMT4, disrupts mineral nutrition', Plant Physiology, 175, (4) pp. 1745-1759. ISSN 0032-0889 (2017) [Refereed Article]

DOI: 10.1104/pp.17.01142 [eCite] [Details]

Citations: Scopus - 7Web of Science - 7

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2017Liu X, Cai S, Wang G, Wang F, Dong F, et al., 'Halophytic NHXs confer salt tolerance by altering cytosolic and vacuolar K+ and Na+ in Arabidopsis root cell', Plant Growth Regulation, 82, (2) pp. 333-351. ISSN 0167-6903 (2017) [Refereed Article]

DOI: 10.1007/s10725-017-0262-7 [eCite] [Details]

Citations: Scopus - 9Web of Science - 8

Co-authors: Wang F; Shabala S

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2017Liu X, Fan Y, Mak M, Babla M, Holford P, et al., 'QTLs for stomatal and photosynthetic traits related to salinity tolerance in barley', BMC Genomics, 18 Article 9. ISSN 1471-2164 (2017) [Refereed Article]

DOI: 10.1186/s12864-016-3380-0 [eCite] [Details]

Citations: Scopus - 11Web of Science - 11

Co-authors: Fan Y; Wang F; Shabala S

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2017Lu X, Yang L, Yu M, Lai J, Wang C, et al., 'A novel Zea mays ssp. mexicana L. MYC-type ICE-like transcription factor gene ZmmICE1, enhances freezing tolerance in transgenic Arabidopsis thaliana', Plant Physiology and Biochemistry, 113 pp. 78-88. ISSN 0981-9428 (2017) [Refereed Article]

DOI: 10.1016/j.plaphy.2017.02.002 [eCite] [Details]

Citations: Scopus - 8Web of Science - 8

Co-authors: McNeil D

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2017Choudhury S, Hu H, Meinke H, Shabala S, Westmore G, et al., 'Barley yellow dwarf viruses: infection mechanisms and breeding strategies', Euphytica, 213, (8) Article 168. ISSN 0014-2336 (2017) [Refereed Article]

DOI: 10.1007/s10681-017-1955-8 [eCite] [Details]

Citations: Scopus - 4Web of Science - 4

Co-authors: Choudhury S; Meinke H; Shabala S

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2017Wang F, Chen Z-H, Liu X, Colmer TD, Shabala L, et al., 'Revealing the roles of GORK channels and NADPH oxidase in acclimation to hypoxia in Arabidopsis', Journal of Experimental Botany, 68, (12) pp. 3191-3204. ISSN 0022-0957 (2017) [Refereed Article]

DOI: 10.1093/jxb/erw378 [eCite] [Details]

Citations: Scopus - 19Web of Science - 19

Co-authors: Wang F; Shabala L; Shabala S

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2017Zhang X, Fan Y, Shabala S, Koutoulis A, Shabala L, et al., 'A new major-effect QTL for waterlogging tolerance in wild barley (H. spontaneum)', Theoretical and Applied Genetics, 130, (8) pp. 1559-1568. ISSN 1432-2242 (2017) [Refereed Article]

DOI: 10.1007/s00122-017-2910-8 [eCite] [Details]

Citations: Scopus - 13Web of Science - 13

Co-authors: Fan Y; Shabala S; Koutoulis A; Shabala L; Johnson P

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2017Zhang X, Shabala S, Koutoulis A, Shabala L, Zhou M, 'Meta-analysis of major QTL for abiotic stress tolerance in barley and implications for barley breeding', Planta, 245, (2) Article 283-295. ISSN 0032-0935 (2017) [Refereed Article]

DOI: 10.1007/s00425-016-2605-4 [eCite] [Details]

Citations: Scopus - 18Web of Science - 15

Co-authors: Shabala S; Koutoulis A; Shabala L

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2017Zheng Z, Gao S, Zhou M, Yan G, Liu C, 'Enhancing Fusarium crown rot resistance by pyramiding large-effect QTL in common wheat (Triticum aestivum L.)', Molecular Breeding, 37 Article 107. ISSN 1380-3743 (2017) [Refereed Article]

DOI: 10.1007/s11032-017-0708-7 [eCite] [Details]

Citations: Scopus - 3Web of Science - 3

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2017Zhu M, Zhiu M, Shabala L, Shabala S, 'Physiological and molecular mechanisms mediating xylem Na+ loading in barley in the context of salinity stress tolerance', Plant Cell and Environment, 40, (7) pp. 1009-1020. ISSN 0140-7791 (2017) [Refereed Article]

DOI: 10.1111/pce.12727 [eCite] [Details]

Citations: Scopus - 27Web of Science - 22

Co-authors: Zhu M; Shabala L; Shabala S

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2017Adem GD, Roy SJ, Huang Y, Chen Z-H, Wang F, et al., 'Expressing Arabidopsis thaliana V-ATPase subunit C in barley (Hordeum vulgare) improves plant performance under saline condition by enabling better osmotic adjustment', Functional Plant Biology, 44, (12) pp. 1147-1159. ISSN 1445-4408 (2017) [Refereed Article]

DOI: 10.1071/FP17133 [eCite] [Details]

Citations: Scopus - 3Web of Science - 2

Co-authors: Adem GD; Wang F; Bowman JP; Shabala SN

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2017Gill MB, Zeng F, Shabala L, Zhang G, Fan Y, et al., 'Cell-based phenotyping reveals QTL for membrane potential maintenance associated with hypoxia and salinity stress tolerance in barley', Frontiers in Plant Science, 8 Article 1941. ISSN 1664-462X (2017) [Refereed Article]

DOI: 10.3389/fpls.2017.01941 [eCite] [Details]

Citations: Scopus - 4Web of Science - 4

Co-authors: Gill MB; Shabala L; Fan Y; Shabala S

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2016Fan Yun, Zhou G, Shabala S, Chen Z-H, Cai S, et al., 'Genome-wide association study reveals a new QTL for salinity tolerance in barley (Hordeum vulgare L.)', Frontiers in Plant Science, 7 Article 946. ISSN 1664-462X (2016) [Refereed Article]

DOI: 10.3389/fpls.2016.00946 [eCite] [Details]

Citations: Scopus - 10Web of Science - 9

Co-authors: Fan Yun; Shabala S

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2016Habib A, Shabala S, Shabala L, Zhou M, Liu C, 'Near-isogenic lines developed for a major QTL on chromosome arm 4HL conferring Fusarium crown rot resistance in barley', Euphytica, 209, (3) pp. 555-563. ISSN 0014-2336 (2016) [Refereed Article]

DOI: 10.1007/s10681-015-1623-9 [eCite] [Details]

Citations: Scopus - 8Web of Science - 8

Co-authors: Shabala S; Shabala L

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2016Liang S, Sun C, Ren G, Zhao X, Zhou M, et al., 'Usefulness of the cloned and fine-mapped genes/QTL for grain yield and related traits in indica rice breeding for irrigated ecosystems', Field Crops Research, 187 pp. 58-73. ISSN 0378-4290 (2016) [Refereed Article]

DOI: 10.1016/j.fcr.2015.11.014 [eCite] [Details]

Citations: Scopus - 6Web of Science - 6

Co-authors: Liang S; McNeil D

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2016Liang S, Wu L, Ren G, Zhao X, Zhou M, et al., 'Genome-wide association study of grain yield and related traits using a collection of advanced indica rice breeding lines for irrigated ecosystems', Field Crops Research, 193 pp. 70-86. ISSN 0378-4290 (2016) [Refereed Article]

DOI: 10.1016/j.fcr.2016.03.008 [eCite] [Details]

Citations: Scopus - 4Web of Science - 4

Co-authors: Liang S; McNeil D

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2016Ma Y, Li C, Ryan PR, Shabala SN, You J, et al., 'A new allele for aluminium tolerance gene in barley (Hordeum vulgare L.)', BMC Genomics, 17, (1) Article 186. ISSN 1471-2164 (2016) [Refereed Article]

DOI: 10.1186/s12864-016-2551-3 [eCite] [Details]

Citations: Scopus - 11Web of Science - 10

Co-authors: Shabala SN

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2016Ma Y, Zhu M, Shabala L, Zhou M, Shabala S, 'Conditioning of roots with hypoxia increases aluminum and acid stress tolerance by mitigating activation of K+ efflux channels by ROS in barley: insights into cross-tolerance mechanisms', Plant and Cell Physiology, 57, (1) pp. 160-173. ISSN 0032-0781 (2016) [Refereed Article]

DOI: 10.1093/pcp/pcv175 [eCite] [Details]

Citations: Scopus - 3Web of Science - 3

Co-authors: Zhu M; Shabala L; Shabala S

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2016Shabala L, Zhang J, Pottosin I, Bose J, Zhu M, et al., 'Cell-type-specific H+-ATPase activity in root tissues enables K+ retention and mediates acclimation of barley (Hordeum vulgare) to salinity stress', Plant Physiology, 172, (4) pp. 2445-2458. ISSN 1532-2548 (2016) [Refereed Article]

DOI: 10.1104/pp.16.01347 [eCite] [Details]

Citations: Scopus - 34Web of Science - 30

Co-authors: Shabala L; Zhang J; Pottosin I; Bose J; Zhu M; Wu H; Shabala S

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2016Chen G, Li H, Wei Y, Zhen Y-L, Zhou M, et al., 'Pleiotropic effects of the semi-dwarfing gene uzu in barley', Euphytica, 209, (3) pp. 749-755. ISSN 0014-2336 (2016) [Refereed Article]

DOI: 10.1007/s10681-016-1668-4 [eCite] [Details]

Citations: Scopus - 2Web of Science - 1

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2016Zhang X, Zhou G, Shabala S, Koutoulis A, Shabala L, et al., 'Identification of aerenchyma formation-related QTL in barley that can be effective in breeding for waterlogging tolerance', Theoretical and Applied Genetics, 129, (6) pp. 1167-1177. ISSN 0040-5752 (2016) [Refereed Article]

DOI: 10.1007/s00122-016-2693-3 [eCite] [Details]

Citations: Scopus - 14Web of Science - 3

Co-authors: Shabala S; Koutoulis A; Shabala L; Johnson P

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2016Zhou G, Broughton S, Zhang X-Q, Ma Y, Zhou M, et al., 'Genome-wide association mapping of acid soil resistance in barley (Hordeum vulgare L.)', Frontiers in Plant Science, 7 Article 406. ISSN 1664-462X (2016) [Refereed Article]

DOI: 10.3389/fpls.2016.00406 [eCite] [Details]

Citations: Scopus - 2Web of Science - 2

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2016Zhu M, Shabala L, Cuin TA, Huang X, Zhou M, et al., 'Nax loci affect SOS1-like Na+/H+ exchanger expression and activity in wheat', Journal of Experimental Botany, 67, (3) pp. 835-844. ISSN 0022-0957 (2016) [Refereed Article]

DOI: 10.1093/jxb/erv493 [eCite] [Details]

Citations: Scopus - 39Web of Science - 40

Co-authors: Zhu M; Shabala L; Cuin TA; Huang X; Shabala S

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2016Zhu M, Shabala S, Shabala L, Fan Y, Zhou MX, 'Evaluating predictive values of various physiological indices for salinity stress tolerance in wheat', Journal of Agronomy and Crop Science, 202, (2) pp. 115-124. ISSN 0931-2250 (2016) [Refereed Article]

DOI: 10.1111/jac.12122 [eCite] [Details]

Citations: Scopus - 28Web of Science - 29

Co-authors: Zhu M; Shabala S; Shabala L; Fan Y

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2016Wang F, Chen Z-H, Liu X, Colmer TD, Zhou M, et al., 'Tissue-specific root ion profiling reveals essential roles of the CAX and ACA calcium transport systems in response to hypoxia in Arabidopsis', Journal of Experimental Botany, 67, (12) pp. 3747-3762. ISSN 0022-0957 (2016) [Refereed Article]

DOI: 10.1093/jxb/erw034 [eCite] [Details]

Citations: Scopus - 24Web of Science - 25

Co-authors: Wang F; Shabala S

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2015Adem GD, Roy SJ, Plett DC, Zhou M, Bowman JP, et al., 'Expressing AtNHX1 in barley (Hordium vulgare L.) does not improve plant performance under saline conditions', Plant Growth Regulation, 77, (3) pp. 289-297. ISSN 0167-6903 (2015) [Refereed Article]

DOI: 10.1007/s10725-015-0063-9 [eCite] [Details]

Citations: Scopus - 16Web of Science - 15

Co-authors: Adem GD; Bowman JP; Shabala S

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2015Broughton S, Zhou G, Teakle NL, Matsuda R, Zhou M, et al., 'Waterlogging tolerance is associated with root porosity in barley (Hordeum vulgare L.)', Molecular Breeding, 35, (1) Article 27. ISSN 1380-3743 (2015) [Refereed Article]

DOI: 10.1007/s11032-015-0243-3 [eCite] [Details]

Citations: Scopus - 24Web of Science - 23

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2015Chen G, Habib A, Wei Y, Zheng Y-L, Shabala S, et al., 'Enhancing Fusarium crown rot resistance by pyramiding large-effect QTL in barley', Molecular Breeding, 35 Article 26. ISSN 1380-3743 (2015) [Refereed Article]

DOI: 10.1007/s11032-015-0255-z [eCite] [Details]

Citations: Scopus - 9Web of Science - 3

Co-authors: Shabala S

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2015Derevnina L, Zhou M, Singh D, Wellings CR, Park RF, 'The genetic basis of resistance to barley grass yellow rust (Puccinia striiformis f. sp. pseudo-hordei) in Australian barley cultivars', Theoretical and Applied Genetics, 128, (2) pp. 187-197. ISSN 0040-5752 (2015) [Refereed Article]

DOI: 10.1007/s00122-014-2323-x [eCite] [Details]

Citations: Scopus - 7Web of Science - 7

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2015Fan Y, Shabala S, Ma Y, Xu R, Zhou M, 'Using QTL mapping to investigate the relationships between abiotic stress tolerance (drought and salinity) and agronomic and physiological traits', BMC Genomics, 16 Article 43. ISSN 1471-2164 (2015) [Refereed Article]

DOI: 10.1186/s12864-015-1243-8 [eCite] [Details]

Citations: Scopus - 27Web of Science - 26

Co-authors: Fan Y; Shabala S

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2015Huang X, Shabala S, Shabala L, Rengel Z, Wu X, et al., 'Linking waterlogging tolerance with Mn2+ toxicity: a case study for barley', Plant Biology, 17, (1) pp. 26-33. ISSN 1435-8603 (2015) [Refereed Article]

DOI: 10.1111/plb.12188 [eCite] [Details]

Citations: Scopus - 17Web of Science - 14

Co-authors: Huang X; Shabala S; Shabala L

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2015Liang S, Ren G, Liu J, Zhao X, Zhou M, et al., 'Genotype-by-environment interaction is important for grain yield in irrigated lowland rice', Field Crops Research, 180 pp. 90-99. ISSN 0378-4290 (2015) [Refereed Article]

DOI: 10.1016/j.fcr.2015.05.014 [eCite] [Details]

Citations: Scopus - 10Web of Science - 11

Co-authors: Liang S; McNeil D

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2015Ma Y, Shabala S, Li C, Liu C, Zhang W, et al., 'Quantitative trait loci for salinity tolerance identified under drained and waterlogged conditions and their association with flowering time in barley (Hordeum vulgare. L)', PLoS One, 10, (8) Article e0134822. ISSN 1932-6203 (2015) [Refereed Article]

DOI: 10.1371/journal.pone.0134822 [eCite] [Details]

Citations: Scopus - 8Web of Science - 7

Co-authors: Shabala S

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2015Singh D, Dracatos P, Derevnina L, Zhou M, Park RF, 'Rph23: a new designated additive adult plant resistance gene to leaf rust in barley on chromosome 7H', Plant Breeding, 134, (1) pp. 62-69. ISSN 0179-9541 (2015) [Refereed Article]

DOI: 10.1111/pbr.12229 [eCite] [Details]

Citations: Scopus - 12Web of Science - 11

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2015Wang J, Yang J, Zhang Q, Zhu J, Jia Q, et al., 'Mapping a major QTL for malt extract of barley from a cross between TX9425 x Naso Nijo', Theoretical and Applied Genetics, 128, (5) pp. 943-952. ISSN 0040-5752 (2015) [Refereed Article]

DOI: 10.1007/s00122-015-2481-5 [eCite] [Details]

Citations: Scopus - 9Web of Science - 9

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2015Wang X, Zhang X, Cai S, Ye L, Zhou M, et al., 'Genetic diversity and QTL mapping of thermostability of limit dextrinase in barley', Journal of Agricultural and Food Chemistry, 63, (14) pp. 3778-3783. ISSN 0021-8561 (2015) [Refereed Article]

DOI: 10.1021/acs.jafc.5b00190 [eCite] [Details]

Citations: Scopus - 6Web of Science - 5

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2015Wu H, Shabala L, Liu X, Azzarello E, Zhou M, et al., 'Linking salinity stress tolerance with tissue-specific Na+ sequestration in wheat roots', Frontiers in Plant Science, 6 Article 71. ISSN 1664-462X (2015) [Refereed Article]

DOI: 10.3389/fpls.2015.00071 [eCite] [Details]

Citations: Scopus - 38Web of Science - 30

Co-authors: Wu H; Shabala L; Bose J; Shabala S

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2015Wu H, Shabala L, Zhou M, Shabala S, 'MIFE technique-based screening for mesophyll K+ retention for crop breeding for salinity tolerance', Bio-protocol, 5, (9) Article e1466. ISSN 2331-8325 (2015) [Contribution to Refereed Journal]

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Co-authors: Wu H; Shabala L; Shabala S

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2015Wu H, Shabala L, Zhou M, Shabala S, 'Chloroplast-generated ROS dominate NaCl-induced K+ efflux in wheat leaf mesophyll', Plant Signalling and Behavior, 10, (5) Article e1013793. ISSN 1559-2316 (2015) [Refereed Article]

DOI: 10.1080/15592324.2015.1013793 [eCite] [Details]

Citations: Scopus - 6Web of Science - 11

Co-authors: Wu H; Shabala L; Shabala S

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2015Bian M, Jin X, Broughton S, Zhang X-Q, Zhou G, et al., 'A new allele of acid soil tolerance gene from a malting barley variety', BMC Genetics, 16 Article 92. ISSN 1471-2156 (2015) [Refereed Article]

DOI: 10.1186/s12863-015-0254-4 [eCite] [Details]

Citations: Scopus - 6Web of Science - 7

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2015Wu H, Zhu M, Shabala L, Zhou M, Shabala S, 'K+ retention in leaf mesophyll, an overlooked component of salinity tolerance mechanism: a case study for barley', Journal of Integrative Plant Biology, 57, (2) pp. 171-185. ISSN 1672-9072 (2015) [Refereed Article]

DOI: 10.1111/jipb.12238 [eCite] [Details]

Citations: Scopus - 53Web of Science - 51

Co-authors: Wu H; Zhu M; Shabala L; Shabala S

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2015Ye L, Huang Y, Dai F, Ning H, Li C, et al., 'Identification of two key genes controlling chill haze stability of beer in barley (Hordeum vulgare L)', BMC Genomics, 16 Article 449. ISSN 1471-2164 (2015) [Refereed Article]

DOI: 10.1186/s12864-015-1683-1 [eCite] [Details]

Citations: Scopus - 6Web of Science - 5

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2015Zhang X, Lu C, Xu R, Zhou M, 'Development of molecular markers linked to barley heterosis', Euphytica, 203, (2) pp. 309-319. ISSN 0014-2336 (2015) [Refereed Article]

DOI: 10.1007/s10681-014-1265-3 [eCite] [Details]

Citations: Scopus - 1Web of Science - 1

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2015Zhang X, Shabala S, Koutoulis A, Shabala L, Johnson P, et al., 'Waterlogging tolerance in barley is associated with faster aerenchyma formation in adventitious roots', Plant and Soil, 394, (1) pp. 355-372. ISSN 0032-079X (2015) [Refereed Article]

DOI: 10.1007/s11104-015-2536-z [eCite] [Details]

Citations: Scopus - 26Web of Science - 35

Co-authors: Shabala S; Koutoulis A; Shabala L; Johnson P; Nichols DS

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2015Zhu M, Zhou M, Shabala L, Shabala S, 'Linking osmotic adjustment and stomatal characteristics with salinity stress tolerance in contrasting barley accessions', Functional Plant Biology, 42, (3) pp. 252-263. ISSN 1445-4408 (2015) [Refereed Article]

DOI: 10.1071/FP14209 [eCite] [Details]

Citations: Scopus - 21Web of Science - 22

Co-authors: Zhu M; Shabala L; Shabala S

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2015Wu H, Shabala L, Zhou M, Stefano G, Pandolfi C, et al., 'Developing and validating a high-throughput assay for salinity tissue tolerance in wheat and barley', Planta, 242, (4) pp. 847-857. ISSN 0032-0935 (2015) [Refereed Article]

DOI: 10.1007/s00425-015-2317-1 [eCite] [Details]

Citations: Scopus - 13Web of Science - 12

Co-authors: Wu H; Shabala L; Shabala S

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2014Adem GD, Roy SJ, Zhou M, Bowman JP, Shabala S, 'Evaluating contribution of ionic, osmotic and oxidative stress components towards salinity tolerance in barley', BMC Plant Biology, 14 Article 113. ISSN 1471-2229 (2014) [Refereed Article]

DOI: 10.1186/1471-2229-14-113 [eCite] [Details]

Citations: Scopus - 74Web of Science - 71

Co-authors: Adem GD; Bowman JP; Shabala S

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2014Chen G, Yan W, Liu Y, Wei Y, Zhou M, et al., 'The non-gibberellic acid-responsive semi-dwarfing gene uzu affects Fusarium crown rot resistance in barley', BMC Plant Biology, 14, (1) Article 22. ISSN 1471-2229 (2014) [Refereed Article]

DOI: 10.1186/1471-2229-14-22 [eCite] [Details]

Citations: Scopus - 15Web of Science - 14

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2014Fan Y, Zhu M, Shabala S, Li CD, Johnson P, et al., 'Antioxidant activity in salt-stressed barley leaves: evaluating time- and age-dependence and suitability for the use as a biochemical marker in breeding programs', Journal of Agronomy and Crop Science, 200, (4) pp. 261-272. ISSN 0931-2250 (2014) [Refereed Article]

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Citations: Scopus - 6Web of Science - 4

Co-authors: Fan Y; Zhu M; Shabala S; Johnson P

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2014Gong X, Li C, Zhou M, Bonnardeaux Y, Yan G, 'Seed dormancy in barley is dictated by genetics, environments and their interactions', Euphytica, 197, (3) pp. 355-368. ISSN 0014-2336 (2014) [Refereed Article]

DOI: 10.1007/s10681-014-1072-x [eCite] [Details]

Citations: Scopus - 7Web of Science - 8

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2014Liu X, Mak M, Babla M, Wang F, Chen G, et al., 'Linking stomatal traits and expression of slow anion channel genes HvSLAH1 and HvSLAC1 with grain yield for increasing salinity tolerance in barley', Frontiers in Plant Science, 5 Article 634. ISSN 1664-462X (2014) [Refereed Article]

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Citations: Scopus - 18Web of Science - 16

Co-authors: Wang F; Shabala S

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2014Wang J, Yang J, Jia Q, Zhu J, Shang Y, et al., 'A new QTL for plant height in barley (Hordeum vulgare L.) showing no negative effects on grain yield', PLoS One, 9, (2) Article e90144. ISSN 1932-6203 (2014) [Refereed Article]

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Citations: Scopus - 30Web of Science - 18

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2014Wu H, Shabala L, Zhou M, Shabala S, 'Durum and bread wheat differ in their ability to retain potassium and leaf mesophyll: implications for salinity stress tolerance', Plant and Cell Physiology, 55, (10) pp. 1749-1762. ISSN 0032-0781 (2014) [Refereed Article]

DOI: 10.1093/pcp/pcu105 [eCite] [Details]

Citations: Scopus - 28Web of Science - 26

Co-authors: Wu H; Shabala L; Shabala S

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2014Zeng F, Konnerup D, Shabala L, Zhou M, Colmer TD, et al., 'Linking oxygen availability with membrane potential maintenance and K+ retention of barley roots: implications for waterlogging stress tolerance', Plant, Cell and Environment, 37, (10) pp. 2325-2338. ISSN 0140-7791 (2014) [Refereed Article]

DOI: 10.1111/pce.12422 [eCite] [Details]

Citations: Scopus - 21Web of Science - 21

Co-authors: Zeng F; Shabala L; Shabala S

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2014Zhou G, Pereira JF, Delhaize E, Zhou M, Magalhaes JV, et al., 'Enhancing the aluminium tolerance of barley by expressing the citrate transporter genes SbMATE and FRD3', Journal of Experimental Botany, 65, (9) pp. 2381-2390. ISSN 0022-0957 (2014) [Refereed Article]

DOI: 10.1093/jxb/eru121 [eCite] [Details]

Citations: Scopus - 34Web of Science - 28

Co-authors: Zhou G

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2013Bian M, Waters I, Broughton S, Zhang X-Q, Zhou M, et al., 'Development of gene-specific markers for acid soil/aluminium tolerance in barley (Hordeum vulgare L.)', Molecular Breeding, 32, (1) pp. 155-164. ISSN 1380-3743 (2013) [Refereed Article]

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Citations: Scopus - 11Web of Science - 9

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2013Bian M, Zhou M, Sun D, Li C, 'Molecular approaches unravel the mechanism of acid soil tolerance in plants', The Crop Journal, 1, (2) pp. 91-104. ISSN 2214-5141 (2013) [Refereed Article]

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Citations: Scopus - 39

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2013Chen GD, Liu YX, Wei YM, McIntyre CL, Zhou M, et al., 'Major QTL for Fusarium crown rot resistance in a barley landrace', Theoretical and Applied Genetics, 126, (10) pp. 2511-2520. ISSN 0040-5752 (2013) [Refereed Article]

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Citations: Scopus - 14Web of Science - 15

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2013Jin X, Cai S, Ye L, Chen Z, Zhou M, et al., 'Association of HvLDI with limit dextrinase activity and malt quality in barley', Biotechnology Letters, 35, (4) pp. 639-645. ISSN 0141-5492 (2013) [Refereed Article]

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Citations: Scopus - 6Web of Science - 6

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2013Maksimovic JD, Zhang J, Zeng F, Ziavanovic BD, Shabala L, et al., 'Linking oxidative and salinity stress tolerance in barley: can root antioxidant enzyme activity be used as a measure of stress tolerance?', Plant and Soil, 365, (1-2) pp. 141-155. ISSN 1573-5036 (2013) [Refereed Article]

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Citations: Scopus - 29Web of Science - 27

Co-authors: Zhang J; Ziavanovic BD; Shabala L; Shabala S

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2013Wu H, Shabala L, Barry K, Zhou M, Shabala S, 'Ability of leaf mesophyll to retain potassium correlates with salinity tolerance in wheat and barley', Physiologia Plantarum, 149, (4) pp. 515-527. ISSN 0031-9317 (2013) [Refereed Article]

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Citations: Scopus - 47Web of Science - 46

Co-authors: Wu H; Shabala L; Barry K; Shabala S

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2013Zeng F, Shabala L, Zhou M, Zhang G, Shabala S, 'Barley responses to combined waterlogging and salinity stress: separating effects of oxygen deprivation and elemental toxicity', Frontiers in Plant Science, 4 Article 313. ISSN 1664-462X (2013) [Refereed Article]

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Citations: Scopus - 39Web of Science - 33

Co-authors: Zeng F; Shabala L; Shabala S

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2013Zhou G, Delhaize E, Zhou M, Ryan PR, 'The barley MATE gene, HvAACT1, increases citrate efflux and Al3+ tolerance when expressed in wheat and barley', Annals of Botany, 112, (3) pp. 603-612. ISSN 0305-7364 (2013) [Refereed Article]

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Citations: Scopus - 50Web of Science - 48

Co-authors: Zhou G

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2012Chen GD, Li HB, Zheng Z, Wei YM, Zheng YL, et al., 'Characterization of a QTL affecting spike morphology on the long arm of chromosome 3H in barley (Hordeum vulgare L.) based on near isogenic lines and a NIL-derived population', Theoretical and Applied Genetics, 125, (7) pp. 1385-1392. ISSN 0040-5752 (2012) [Refereed Article]

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Citations: Scopus - 23Web of Science - 22

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2012Cuin TA, Zhou M, Parsons D, Shabala S, 'Genetic behaviour of physiological traits conferring cytosolic K+/Na+ homeostasis in wheat', Plant Biology, 14, (3) pp. 438-446. ISSN 1435-8603 (2012) [Refereed Article]

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Citations: Scopus - 34Web of Science - 33

Co-authors: Cuin TA; Parsons D; Shabala S

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2012Li HB, Zhou MX, Liu CJ, 'Development and validation of markers closely linked to crown rot resistance in wheat and barley', Molecular Plant Breeding, 3, (8) pp. 80-90. ISSN 1923-8266 (2012) [Refereed Article]

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Co-authors: Li HB

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2012Liu Y, Ma J, Yan W, Yan G, Zhou M, et al., 'Different tolerance in bread wheat, Durum wheat and barley to Fusarium crown rot disease caused by Fusarium pseudograminearum', Journal of Phytopathology, 160, (7-8) pp. 412-417. ISSN 0931-1785 (2012) [Refereed Article]

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Citations: Scopus - 15Web of Science - 16

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2012Liu Y, Zheng Y-L, Wei Y, Zhou M, Liu C, 'Genotypic differences to crown rot caused by Fusarium pseudograminearum in barley (Hordeum vulgare L.)', Plant Breeding, 131, (6) pp. 728-732. ISSN 0179-9541 (2012) [Refereed Article]

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Citations: Scopus - 13Web of Science - 14

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2012Xu R, Wang J, Li C, Johnson P, Lu C, et al., 'A single locus is responsible for salinity tolerance in a Chinese landrace barley (Hordeum vulgare L.)', PLoS One, 7, (8) Article e43079. ISSN 1932-6203 (2012) [Refereed Article]

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Citations: Scopus - 30Web of Science - 24

Co-authors: Johnson P

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2012Zhou G, Johnson P, Ryan PR, Delhaize E, Zhou M, 'Quantitative trait loci for salinity tolerance in barley (Hordeum vulgare L.)', Molecular Breeding: New Strategies in Plant Improvement, 29, (2) pp. 427-436. ISSN 1380-3743 (2012) [Refereed Article]

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Citations: Scopus - 45Web of Science - 43

Co-authors: Johnson P

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2012Zhou M, Johnson P, Zhou G, Li C, Lance R, 'Quantitative trait loci for waterlogging tolerance in a barley cross of Franklin x YuYaoXiangTian Erleng and the relationship between waterlogging and salinity tolerance', Crop Science, 52, (5) pp. 2082-2088. ISSN 0011-183X (2012) [Refereed Article]

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Citations: Scopus - 30Web of Science - 25

Co-authors: Johnson P; Zhou G

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2012Dai F, Nevo E, Wu D, Comadran J, Zhou M, et al., 'Tibet is one of the centers of domestication of cultivated barley', PNAS, 109, (42) pp. 16969-16973. ISSN 0027-8424 (2012) [Refereed Article]

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2011Dai F, Qiu L, Ye L, Wu D, Zhou M, et al., 'Identification of a phytase gene in barley (Hordeum vulgare L.)', PLoS One, 6, (4) Article e18829. ISSN 1932-6203 (2011) [Refereed Article]

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Citations: Scopus - 11Web of Science - 9

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2011Li HB, Zhou MX, 'Quantitative trait loci controlling barley powdery mildew and scald resistances in two different barley doubled haploid populations', Molecular Breeding: New Strategies in Plant Improvement, 27, (4) pp. 479-490. ISSN 1380-3743 (2011) [Refereed Article]

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Citations: Scopus - 13Web of Science - 12

Co-authors: Li HB

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2011Liu CJ, Ma J, Li HB, Liu YX, Liu GR, et al., 'The Homoeologous Regions on Long Arms of Group 3 Chromosomes in Wheat and Barley Harbour Major Crown Rot Resistance Loci', Czech Journal of Genetics and Plant Breeding, 47, (SI) pp. S109-S114. ISSN 1212-1975 (2011) [Refereed Article]

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2011Zhou M, 'Accurate phenotyping reveals better QTL for waterlogging tolerance in barley', Plant Breeding, 130, (2) pp. 203-208. ISSN 0179-9541 (2011) [Refereed Article]

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2011Alsop BP, Farre A, Wenzl P, Wang JM, Zhou M, et al., 'Development of wild barley-derived DArT markers and their integration into a barley consensus map', Molecular Breeding, 27, (1) pp. 77-92. ISSN 1380-3743 (2011) [Refereed Article]

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2011Huang J, Han B, Xu S, Zhou M, Shen W, 'Heme oxygenase-1 is involved in the cytokinin-induced alleviation of senescence in detached wheat leaves during dark incubation', Journal of Plant Physiology: Biochemistry, Physiology, Molecular Biology and Functional Biotechnology of Plants, 168, (8) pp. 768-775. ISSN 0176-1617 (2011) [Refereed Article]

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2010Li H, Kilian A, Zhou M, Wenzl P, Huttner E, et al., 'Construction of a high-density composite map and comparative mapping of segregation distortion regions in barley', Molecular Genetics and Genomics, 284, (5) pp. 319-331. ISSN 1617-4615 (2010) [Refereed Article]

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Co-authors: Li H; Mendham NJ; Vaillancourt RE

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2010Pereira JF, Zhou G, Delhaize E, Richardson T, Zhou M, et al., 'Engineering greater aluminium resistance in wheat by over-expressing TaALMT1', Annals of Botany, 106, (1) pp. 205-214. ISSN 0305-7364 (2010) [Refereed Article]

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Citations: Scopus - 70Web of Science - 64

Co-authors: Zhou G

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2010Wang J, Yang J, McNeil DL, Zhou M, 'Identification and molecular mapping of a dwarfing gene in barley (Hordeum vulgare L.) and its correlation with other agronomic traits', Euphytica, 175, (3) pp. 331-342. ISSN 0014-2336 (2010) [Refereed Article]

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Co-authors: Wang J; McNeil DL

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2010Wang J, Yang JM, McNeil DL, Zhou M, 'Mapping of quantitative trait loci controlling barley flour pasting properties', Genetica, 138, (11-12) pp. 1191-1200. ISSN 0016-6707 (2010) [Refereed Article]

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Co-authors: Wang J; McNeil DL

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2010Chen F, Wang F, Wu F, Mao W, Zhang G, et al., 'Modulaton of exogenous gluathione in antioxidant defense system against Cd stress in the two barley genotypes differing in Cd tolerance', Plant Physiology and Biochemistry, 48, (8) pp. 663-672. ISSN 0981-9428 (2010) [Refereed Article]

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Citations: Scopus - 140Web of Science - 129

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2010Xue DW, Zhou M, Zhang X, Chen S, Wei K, et al., 'Identification of QTLs for yield and yield components of barley under different growth conditions', Journal of Zhejiang University - Science B (Biomedicine & Biotechnology), 11, (3) pp. 169-176. ISSN 1673-1581 (2010) [Refereed Article]

DOI: 10.1631/jzus.B0900332 [eCite] [Details]

Citations: Scopus - 34Web of Science - 30

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2009Dai F, Huang YZ, Zhou M, Zhang GP, 'The influence of cold acclimation on antioxidative enzymes and antioxidants in sensitive and tolerant barley cultivars', Biologia Plantarum: Journal for Experimental Botany, 53, (2) pp. 257-262. ISSN 0006-3134 (2009) [Refereed Article]

DOI: 10.1007/s10535-009-0048-5 [eCite] [Details]

Citations: Scopus - 34Web of Science - 31

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2009Jin XL, Huang YZ, Zeng FR, Zhou M, Zhang GP, 'Genotypic difference in response of peroxidase and superoxide dismutase isozymes and activities to salt stress in barley', Acta Physiologiae Plantarum, 31, (6) pp. 1103-1109. ISSN 0137-5881 (2009) [Refereed Article]

DOI: 10.1007/s11738-009-0328-x [eCite] [Details]

Citations: Scopus - 17Web of Science - 13

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2009Li H, Zhou M, Liu CJ, 'A major QTL conferring crown rot resistance in barley and its association with plant height', Theoretical and Applied Genetics: International Journal of Breeding Research, 118, (5) pp. 903-910. ISSN 0040-5752 (2009) [Refereed Article]

DOI: 10.1007/s00122-008-0948-3 [eCite] [Details]

Citations: Scopus - 38Web of Science - 38

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2009Shabala SN, Pang J, Zhou M, Shabala SI, Cuin TA, et al., 'Electrical signalling and cytokinins mediate effects of light and root cutting on ion uptake in intact plants', Plant, Cell and Environment, 32, (2) pp. 194-207. ISSN 0140-7791 (2009) [Refereed Article]

DOI: 10.1111/J.1365-3040.2008.01914.x [eCite] [Details]

Citations: Scopus - 23Web of Science - 20

Co-authors: Shabala SN; Pang J; Shabala SI; Cuin TA

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2008Chen Z, Shabala SN, Mendham NJ, Newman IA, Zhang G, et al., 'Combining Ability of Salinity Tolerance on the Basis of NaC1-Induced K+ Flux from Roots of Barley', Crop Science, 48, (4) pp. 1382-1388. ISSN 0011-183X (2008) [Refereed Article]

DOI: 10.2135/cropsci2007.10.0557 [eCite] [Details]

Citations: Scopus - 47Web of Science - 39

Co-authors: Chen Z; Shabala SN; Mendham NJ; Newman IA

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2008Li Haobing, Vaillancourt RE, Mendham NS, Zhou M, 'Comparative mapping of quantitative trait loci associated with waterlogging tolerance in barley (Hordeum vulgare L.)', BMC Genomics, 9, (27) pp. 1-12. ISSN 1471-2164 (2008) [Refereed Article]

DOI: 10.1186/1471-2164-9-401 [eCite] [Details]

Citations: Scopus - 71Web of Science - 62

Co-authors: Li Haobing; Vaillancourt RE; Mendham NS

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2008Xue DW, Chen MC, Zhou M, Chen S, Mao Y, et al., 'QTL analysis of flag leaf in barley (Hordeum vulgare L.) for morphological traits and chlorophyll content', Journal of Zhejiang University-Science B, 9, (12) pp. 938-943. ISSN 1673-1581 (2008) [Refereed Article]

DOI: 10.1631/jzus.B0820105 [eCite] [Details]

Citations: Scopus - 28Web of Science - 26

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2008Zhou M, Li H, Chen Z, Mendham NJ, 'Combining ability of barley flour pasting properties', Journal of Cereal Science, 48, (3) pp. 789-793. ISSN 0733-5210 (2008) [Refereed Article]

DOI: 10.1016/J.JCS.2008.05.006 [eCite] [Details]

Citations: Scopus - 13Web of Science - 12

Co-authors: Li H; Chen Z; Mendham NJ

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2007Chen Z, Cuin TA, Zhou M, Twomey A, Bodapati PN, et al., 'Compatible solute accumulation and stress-mitigating effects in barley genotypes contrasting in their salt tolerance', Journal of Experimental Biology, 58, (15/16) pp. 4245-4255. ISSN 0022-0957 (2007) [Refereed Article]

DOI: 10.1093/jxb/erm284 [eCite] [Details]

Citations: Scopus - 228Web of Science - 200

Co-authors: Chen Z; Cuin TA; Shabala SN

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2007Chen Z, Pottosin II, Cuin TA, Fuglsang AT, Tester M, et al., 'Root Plasma Membrane Transporters Controlling K+/Na+ Homeostasis in Salt-Stressed Barley [C] [W] ', Plant Physiology, 145, (4) pp. 1714-1725. ISSN 0032-0889 (2007) [Refereed Article]

DOI: 10.1104/pp.107.110262 [eCite] [Details]

Citations: Scopus - 272Web of Science - 239

Co-authors: Chen Z; Cuin TA; Newman IA; Shabala SN

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2007Chen Z, Zhou M, Newman IA, Mendham NJ, Zhang G, et al., 'Potassium and sodium relations in salinised barley tissues as a basis of differential salt tolerance', Functional Plant Biology, 34, (2) pp. 150-162. ISSN 1445-4408 (2007) [Refereed Article]

DOI: 10.1071/FP06237 [eCite] [Details]

Citations: Scopus - 192Web of Science - 171

Co-authors: Chen Z; Newman IA; Mendham NJ; Shabala SN

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2007Dai F, Zhou M, Zhang G, 'The Change of chlorophyll fluorescence parameters in winter barley during recovery after freezing shock and as affected by cold acclimation and irradiance', Plant Physiology and Biochemistry, 45, (12) pp. 915-921. ISSN 0981-9428 (2007) [Refereed Article]

DOI: 10.1016/j.plaphy.2007.09.006 [eCite] [Details]

Citations: Scopus - 28Web of Science - 25

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2007Guo T, Zhang G, Zhou M, Wu F, Chen J, 'Influence of Aluminium and Cadmium Stresses on Mineral Nutrition and Root Exudates in Two Barley Cultivars', Pedosphere, 17, (4) pp. 505-512. ISSN 1002-0160 (2007) [Refereed Article]

DOI: 10.1016/S1002-0160(07)60060-5 [eCite] [Details]

Citations: Scopus - 35Web of Science - 27

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2007Pang J, Cuin TA, Shabala L, Zhou M, Mendham NJ, et al., 'Effect of Secondary Metabolites Associated with Anaerobic Soil Conditions on Ion Fluxes and Electrophysiology in Barley Roots', Plant Physiology, 145, (1) pp. 266-276. ISSN 0032-0889 (2007) [Refereed Article]

DOI: 10.1104/pp.107.102624 [eCite] [Details]

Citations: Scopus - 49Web of Science - 45

Co-authors: Pang J; Cuin TA; Shabala L; Mendham NJ; Shabala SN

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2007Pang J, Ross JJ, Zhou M, Mendham NJ, Shabala SN, 'Amelioration of detrimental effects of waterlogging by foliar nutrient sprays in barley', Functional Plant Biology, 34, (3) pp. 221-227. ISSN 1445-4408 (2007) [Refereed Article]

DOI: 10.1071/P06158 [eCite] [Details]

Citations: Scopus - 19Web of Science - 17

Co-authors: Pang J; Ross JJ; Mendham NJ; Shabala SN

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2007Wang J, Zhou M, Xu R, Lu C, Huang Z, 'Studies on Selecting Indices and Evaluation Methods for Barley's (Hordeum vulgare L.) Waterlogging Tolerance', Scientia Agricultura Sinica, 40, (10) pp. 2145-2152. ISSN 0578-1752 (2007) [Non Refereed Article]

[eCite] [Details]

2007Wang Junping, Raman H, Zhou M, Ryan PR, Delhaize E, et al., 'High-resolution mapping of the Alp locus and identification of a candidate gene HvMate controlling aluminium tolerancein barley (Hordeum vulgare L.) ', Theoretical and Applied Genetics, 115, (2) pp. 265-276. ISSN 0040-5752 (2007) [Refereed Article]

DOI: 10.1007/s00122-007-0562-9 [eCite] [Details]

Citations: Scopus - 92Web of Science - 48

Co-authors: Mendham NJ

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2007Wenzl P, Raman H, Wang Junping, Zhou M, Huttner E, et al., 'A DArT platform for quantitative bulked segregant analysis', BMC Genomics, 8, (28 June 2007) pp. 196. ISSN 1471-2164 (2007) [Refereed Article]

DOI: 10.1186/1471-2164-8-196 [eCite] [Details]

Citations: Scopus - 30Web of Science - 26

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2007Xiao YP, Wei K, Chen JX, Zhou M, Zhang GP, 'Genotypic difference in growth inhibition and yield loss in barley under waterlogging stress', Journal of Zhejiang University (Agriculture and Life Science), 33, (5) pp. 525-532. ISSN 1008-9209 (2007) [Refereed Article]

[eCite] [Details]

2007Xu RG, Zhou M, Lu F, Lu C, 'The Effect of Salinity on the Growth of Barley Seedlings', Seed, 26, (9) pp. 21-27. ISSN 0307-8884 (2007) [Non Refereed Article]

[eCite] [Details]

2007Zhou M, Li H, Mendham NJ, 'Inheritance of waterlogging tolerance in barley (Hordeum vulgare L.)', Crop Science, 47, (1) pp. 278-284. ISSN 0011-183X (2007) [Refereed Article]

DOI: 10.2135/cropsci2006.02.0065 [eCite] [Details]

Citations: Scopus - 39Web of Science - 35

Co-authors: Li H; Mendham NJ

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2006Huang YZ, Zhang GP, Wu FB, Chen JX, Zhou M, 'Difference in physiological traits among salt-stressed barley genotypes', Communications in Soil Science and Plant Analysis, 37, (3/4) pp. 557-570. ISSN 0010-3624 (2006) [Refereed Article]

DOI: 10.1080/00103620500449419 [eCite] [Details]

Citations: Scopus - 22Web of Science - 16

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2006Pang J, Newman IA, Mendham NJ, Zhou M, Shabala SN, 'Microelectrode ion and O2 fluxes measurements reveal differential sensitivity of barley root tissues to hypoxia', Plant, Cell and Environment , 29, (6) pp. 1107-1121. ISSN 0140-7791 (2006) [Refereed Article]

DOI: 10.1111/j.1365-3040.2005.01486.x [eCite] [Details]

Citations: Scopus - 61Web of Science - 53

Co-authors: Pang J; Newman IA; Mendham NJ; Shabala SN

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2006Tajbakhsh M, Zhou M, Chen Z, Mendham NJ, 'Physiological and cytological response of salt-tolerant and non-tolerant barley to salinity during germination and early growth', Australian Journal of Experimental Agriculture, 46, (4) pp. 555-562. ISSN 0816-1089 (2006) [Refereed Article]

DOI: 10.1071/EA05026 [eCite] [Details]

Citations: Scopus - 30Web of Science - 28

Co-authors: Tajbakhsh M; Chen Z; Mendham NJ

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2006Wang J, Zhou M, Huang Z, Lu Chao, Xu R, 'Genetic analysis of quantitative traits of a double haploid population in barley', Journal of Yangzhou University (Agricultural & Life Sciences Edition), 27, (3) pp. 65-69. ISSN 1671-4652 (2006) [Non Refereed Article]

[eCite] [Details]

2006Wang Junping, Raman H, Read B, Zhou M, Mendham NJ, et al., 'Validation of an Alt locus for aluminium tolerance scored with eriochrome cyanine R staining method in barley cultivar Honen (Hordeum vulgare L.)', Australian Journal of Agricultural Research, 57, (1) pp. 113-118. ISSN 0004-9409 (2006) [Refereed Article]

DOI: 10.1071/AR05202 [eCite] [Details]

Citations: Scopus - 14Web of Science - 9

Co-authors: Mendham NJ

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2006Wang Junping, Raman H, Zhang GP, Mendham NJ, Zhou M, 'Aluminium tolerance in barley (Hordeum vulgare L.): physiological mechanisms, genetics and screening methods', Journal of Zhejiang University Science B, 7, (10) pp. 769-787. ISSN 1673-1581 (2006) [Refereed Article]

DOI: 10.1631/jzus.2006.B0769 [eCite] [Details]

Citations: Scopus - 54

Co-authors: Mendham NJ

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2006Wenzl P, Li H, Carling J, Zhou M, Raman H, et al., 'A high-density consensus map of barley linking DArT markers to SSR, RFLP and STS loci and agricultural traits', BMC Genomics, 7, (206) EJ ISSN 1471-2164 (2006) [Refereed Article]

DOI: 10.1186/1471-2164-7-206 [eCite] [Details]

Citations: Scopus - 270Web of Science - 250

Co-authors: Li H

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2006Qi JC, Zhang GP, Zhou M, 'Protein and hordein content in barley seeds as affected by nitrogen level and their relationship to beta-amylase activity', Journal of Cereal Science, 43, (1) pp. 102-107. ISSN 0733-5210 (2006) [Refereed Article]

DOI: 10.1016/j.jcs.2005.08.005 [eCite] [Details]

Citations: Scopus - 53Web of Science - 45

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2005Chen Z, Newman IA, Zhou M, Mendham NJ, Zhang G, et al., 'Screening plants for salt tolerance by measuring K+ flux: a case study for barley', Plant, Cell and Environment , 28, (10) pp. 1230-1246. ISSN 0140-7791 (2005) [Refereed Article]

DOI: 10.1111/j.1365-3040.2005.01364.x [eCite] [Details]

Citations: Scopus - 295Web of Science - 268

Co-authors: Chen Z; Newman IA; Mendham NJ; Shabala SN

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2005Hossain AM, Zhou M, Mendham NJ, 'A Reliable Screening System for Aluminium Tolerance in Barley Cultivars', Australian Journal of Agricultural Research, 56, (5) pp. 475-482. ISSN 0004-9409 (2005) [Refereed Article]

DOI: 10.1071/AR04191 [eCite] [Details]

Citations: Scopus - 13Web of Science - 11

Co-authors: Hossain AM; Mendham NJ

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2005Xiao YP, Wei K, Chen JX, Zhou M, Zhang GP, 'Effects of waterlogging on photosynthesis and antioxidant enzyme activities of six barley genotypes with different waterlogging tolerance', Agricultural Sciences in China , 4, (4) pp. 310-316. ISSN 1671-2927 (2005) [Refereed Article]

[eCite] [Details]

2005Zhou M, Mendham NJ, 'Predicting barley malt extract with Rapid Viscoanalyser', Journal of Cereal Science, 41, (1) pp. 31-36. ISSN 0733-5210 (2005) [Refereed Article]

DOI: 10.1016/j.jcs.2004.04.003 [eCite] [Details]

Citations: Scopus - 31Web of Science - 30

Co-authors: Mendham NJ

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2005Dai F, Chen J, Wei K, Zhang GP, Zhou M, 'Studies on genotypic difference in low temperature tolerance and its mechanism in barley', Journal of Triticeae Crops, 25, (sub) pp. 35-39. ISSN 0123-4567 (2005) [Refereed Article]

[eCite] [Details]

2004Guo T, Zhang G, Zhou M, Wu F, Chen J, 'Effects of aluminum and cadmium toxicity on growth and antioxidant enzyme activities of two barley genotypes with different A1 resistance', Plant and Soil, 258, (1-2) pp. 241-248. ISSN 0032-079X (2004) [Refereed Article]

DOI: 10.1023/B:PLSO.0000016554.87519.d6 [eCite] [Details]

Citations: Scopus - 128Web of Science - 105

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2004Pang J, Zhou M, Mendham NJ, Shabala SN, 'Growth and physiological responses of six barley genotypes to waterlogging and subsequent recovery', Australian Journal of Agricultural Research, 55, (8) pp. 895-906. ISSN 0004-9409 (2004) [Refereed Article]

DOI: 10.1071/AR03097 [eCite] [Details]

Citations: Scopus - 90Web of Science - 83

Co-authors: Pang J; Mendham NJ; Shabala SN

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2004Xu RG, Lu C, Zhu L, Zhou M, Mo HD, 'Studies on the heterosis of barley (Hordeum vulgare L.). I. Superiority of hybrid F1 from mid-parent or over better-parent', Acta Agronomica Sinica , 30, (7) pp. 668-674. ISSN 0496-3490 (2004) [Refereed Article]

[eCite] [Details]

2003Guo TR, Zhang GP, Lu WY, Wu HP, Zhou M, 'Effect of A1 on dry matter accumulation and A1 and nutrients in barleys differing in A1 tolerance', Plant Nutrition and Fertilizer Science, 9, (3) pp. 324-330. (2003) [Refereed Article]

[eCite] [Details]

2003Guo TR, Zhang GP, Wu FB, Chen JX, Zhou M, 'Genotypic difference in plant growth and mineral composition in barley under aluminum stress', Agricultural Sciences in China, 2, (5) pp. 494-501. ISSN 1671-2927 (2003) [Refereed Article]

[eCite] [Details]

2000Zhou M, Robards K, Glennie-Holmes M, Helliwell S, 'Contribution of volatiles to the flavour of oatmeal', Journal of The Science of Food and Agriculture, 80, (2) pp. 247-254. ISSN 0022-5142 (2000) [Refereed Article]

DOI: 10.1002/(SICI)1097-0010(20000115)80:2<247::AID-JSFA525>3.3.CO;2-S [eCite] [Details]

Citations: Web of Science - 14

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2000Zhou M, Robards K, Glennie-Holmes M, Helliwell S, 'Effects of enzyme treatment and processing on pasting and thermal properties of oats', Journal of The Science of Food and Agriculture, 80, (10) pp. 1486-1494. ISSN 0022-5142 (2000) [Refereed Article]

DOI: 10.1002/1097-0010(200008)80:10<1486::AID-JSFA668>3.0.CO;2-# [eCite] [Details]

Citations: Web of Science - 32

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1999Huang ZR, Xu RG, Zhou M, Lu C, 'Breeding and heterosis of three lines from nuclear-cytoplasmic male sterile in barley', Barley Science, 1 pp. 7-9. (1999) [Refereed Article]

[eCite] [Details]

1999Xu DY, Huang ZR, Huang YS, Xu RG, Zhou M, 'Chromosome localization of multi-noded and dwarf genes in barley', Acta Agronomica Sinica, 25, (2) pp. 150-156. ISSN 0496-3490 (1999) [Refereed Article]

[eCite] [Details]

1999Zhou M, Glennie-Holmes M, Robards K, Helliwell S, 'Effects of processing and short-term storage on the pasting characteristics of slurries made from raw and rolled oats', Food Australia, 51, (6) pp. 251-258. ISSN 1032-5298 (1999) [Refereed Article]

[eCite] [Details]

Citations: Web of Science - 7

1999Zhou M, Glennie-Holmes M, Roberts GL, Robards K, Helliwell S, 'Effects of growing site on oat quality', Australian Journal of Agricultural Research, 50, (8) pp. 1409-1416. ISSN 0004-9409 (1999) [Refereed Article]

DOI: 10.1071/AR99025 [eCite] [Details]

Citations: Scopus - 10Web of Science - 10

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1999Zhou M, Robards K, Glennie-Holmes M, Helliwell S, 'Analysis of volatile compounds and their contribution to flavor in cereals', Journal Agriculture and Food Chemistry, 47, (10) pp. 3941-3953. ISSN 0021-8561 (1999) [Refereed Article]

DOI: 10.1021/jf990428l [eCite] [Details]

Citations: Scopus - 60Web of Science - 53

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1999Zhou M, Robards K, Glennie-Holmes M, Helliwell S, 'Oat Lipids', Journal of American Oil and Chemists Society, 76, (2) pp. 159-169. ISSN 0003-021X (1999) [Refereed Article]

DOI: 10.1007/s11746-999-0213-1 [eCite] [Details]

Citations: Scopus - 74Web of Science - 59

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1999Zhou M, Robards K, Glennie-Holmes M, Helliwell S, 'Effects of oat lipids on groat meal pasting properties', Journal of Science, Food and Agriculture, 79 pp. 585-592. ISSN 0022-5142 (1999) [Refereed Article]

DOI: 10.1002/(SICI)1097-0010(19990315)79:4<585::AID-JSFA223>3.0.CO;2-0 [eCite] [Details]

Citations: Web of Science - 19

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1998Huang ZR, Duan FP, Xu RG, Huang YS, Zhou M, 'Inheritance of the multi-node and dwarf characters of a barley mutant', Acta Agronomica Sinica, 24, (6) pp. 768-774. ISSN 0496-3490 (1998) [Refereed Article]

[eCite] [Details]

1998Zhou M, Glennie-Holmes M, Robards K, Helliwell S, 'Fatty acid composition of Australian oats', Journal of Cereal Science, 28 pp. 311-319. ISSN 0733-5210 (1998) [Refereed Article]

DOI: 10.1016/S0733-5210(98)90011-X [eCite] [Details]

Citations: Scopus - 37Web of Science - 31

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1998Zhou M, Robards K, Glennie-Holmes M, Helliwell S, 'The Structure and pasting properties of oat starch', Cereal Chemistry, 75, (3) pp. 273-281. ISSN 0009-0352 (1998) [Refereed Article]

DOI: 10.1094/CCHEM.1998.75.3.273 [eCite] [Details]

Citations: Scopus - 129Web of Science - 112

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1998Zhou M, Roberts GL, Robards K, Robards K, Glennie-Holmes M, 'The effects of sowing date, nitrogen application, and sowing rate on oat quality', Australian Journal of Agricultural Research, 49, (5) pp. 845-852. ISSN 0004-9409 (1998) [Refereed Article]

DOI: 10.1071/A97146 [eCite] [Details]

Citations: Scopus - 13Web of Science - 10

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1997Xu RG, Huang ZR, Zhou M, Huang YS, Lu C, 'Analysis on mid-parent heterosis between main agronomic characters and output characters in hybrid barley', Barley Science, 1 pp. 5-7. (1997) [Refereed Article]

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Chapter in Book

(9 outputs)
YearCitationAltmetrics
2016Adem GD, Bose J, Zhou M, Shabala S, 'Targeting vacuolar sodium sequestration in plant breeding for salinity tolerance', Managing Salt Tolerance in Plants: Molecular and Genomic Perspectives, CRC Press, SH Wani, MA Hossain (ed), Florida, USA, pp. 35-50. ISBN 9781482245134 (2016) [Research Book Chapter]

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Co-authors: Adem GD; Bose J; Shabala S

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2016Fan Y, Bose J, Zhou M, Shabala S, 'ROS Production, Scavenging, and Signaling under Salinity Stress', Managing Salt Tolerance in Plants: Molecular and Genomic Perspectives, CRC Press, SH Wani, MA Hossain (ed), Florida, USA, pp. 187-205. ISBN 9781482245134 (2016) [Research Book Chapter]

[eCite] [Details]

Co-authors: Fan Y; Bose J; Shabala S

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2016Ibrahim A, Harrison M, Meinke H, Zhou M, 'Barley Phenology: Physiological and Molecular Mechanisms for Heading Date and Modelling of Genotype‐Environment‐Management Interactions', Plant Growth, InTech, EC Rigobelo (ed), Rijeka, Croatia, pp. 175-202. ISBN 978-953-51-2771-0 (2016) [Research Book Chapter]

DOI: 10.5772/64827 [eCite] [Details]

Co-authors: Harrison M; Meinke H

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2016Ma Y, Zhou M, Shabala S, Li C, 'Exploration and utilization of waterlogging-tolerant barley germplasm', Exploration, Identification and Utilization of Barley Germplasm, Academic Press, G Zhang, C Li (ed), United States of America, pp. 153-179. ISBN 978-0-12-802922-0 (2016) [Research Book Chapter]

DOI: 10.1016/B978-0-12-802922-0.00006-6 [eCite] [Details]

Citations: Scopus - 1

Co-authors: Shabala S

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2016Zhou G, Zhou M, Li C, 'Next-generation sequencing technology: implications for barley genetics and breeding', Exploration, Identification and Utilization of Barley Germplasm, Academic Press, G Zhang, C Li (ed), United States of America, pp. 265-280. ISBN 978-0-12-802922-0 (2016) [Research Book Chapter]

DOI: 10.1016/B978-0-12-802922-0.00011-X [eCite] [Details]

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2015Zhang X, Huang X, Zhou M, Shabala L, Koutoulis A, et al., 'Plant Breeding for Flood Tolerance: Advances and Limitations', Genetic Manipulation in Plants for Mitigation of Climate Change, Springer, PK Jaiwal, RP Singh, OP Dhankher (ed), New Delhi, India, pp. 43-72. ISBN 978-81-322-2660-4 (2015) [Research Book Chapter]

DOI: 10.1007/978-81-322-2662-8_3 [eCite] [Details]

Citations: Scopus - 1

Co-authors: Huang X; Shabala L; Koutoulis A; Shabala S

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2011Zhou G, Delhaize E, Zhou M, Ryan PR, 'Biotechnological Solutions for Enhancing the Aluminium Resistance of Crop Plants', Abiotic Stress in Plants - Mechanisms and Adaptations, InTech, A Shanker and B Venkateswarlu (ed), Rijeka, Croatia, pp. 119-142. ISBN 978-953-307-394-1 (2011) [Research Book Chapter]

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Co-authors: Zhou G

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2010Zhou Meixue, 'Improvement of Plant Waterlogging Tolerance', Waterlogging Signalling and Tolerance in Plants, Springer-Verlag, S Mancuso and S Shabala (ed), Berlin Heidelberg, pp. 267-285. ISBN 978-3-642-10305-6 (2010) [Research Book Chapter]

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2009Zhou M, 'Barley Production and Consumption : World Barley Production', Genetics and Improvement of Barley Malt Quality, Zhejiang University Press, Guoping Zhang, Chengdao Li (ed), Zhejiang University, pp. 1-16. ISBN 978-7-308-06382-1 (2009) [Research Book Chapter]

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Conference Publication

(65 outputs)
YearCitationAltmetrics
2017Ahmed I, Harrison M, Meinke H, Johnson P, Zhou M, 'A quantitative trait loci (QTL) regulating early flowering in barley (Hordeum vulgare L.)', 18th Australian Barley Technical Symposium, 03-06 September, Hobart, Tasmania (2017) [Conference Extract]

[eCite] [Details]

Co-authors: Ahmed I; Harrison M; Meinke H; Johnson P

2017Stevenson K, Zhou M, Smith R, 'Screening for waterlogging tolerance in strawberry clover and other perennial legumes', Proceedings of the 18th Australian Society of Agronomy Conference, 24-28 September 2017, Ballarat, Victoria (2017) [Refereed Conference Paper]

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Co-authors: Smith R

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2015Zhou M, Larkin P, Schwinghamer M, Coutts B, Birchall C, et al., 'Studies on barley yellow dwarf virus (BYDV) in wheat', Proceedings of the 17th Australian Society of Agronomy Conference, 20-24 September 2015, Hobart, Australia, pp. 1-4. (2015) [Refereed Conference Paper]

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Co-authors: Johnson P; Davey B

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2015Ibrahim A, Zhou M, Meinke H, Harrison M, Johnson P, 'Genetic studies of phenological traits in barley', 9th Annual Graduate Research Conference 2015, 3-4 September 2015, Hobart, Australia (2015) [Conference Extract]

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Co-authors: Meinke H; Harrison M; Johnson P

2013Huang X, Shabala L, Shabala SN, Rengel Z, Zhang G, et al., 'Mn2+ tolerance in barley', The 16th Australian BarleyTechnical Symposium, 8-11 September 2013, Melbourne, Australia (2013) [Conference Extract]

[eCite] [Details]

Co-authors: Huang X; Shabala L; Shabala SN

2013Huang X, Shabala L, Shabala SN, Rengel Z, Zhang G, et al., 'Develolpment of a rapid screening method for Mn2+ tolerance in barley', 11th Conference of the International Society for Plant Anaerobiosis, 6-11 October 2013, Los Banos, Philippines (2013) [Conference Extract]

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Co-authors: Huang X; Shabala L; Shabala SN

2013Ma Y, Li C, Johnson PG, Zhou Meixue, 'Combining ability of acid soil tolerance in barley', The 16th Australian Barley Technical Symposium, 8-11 September 2013, Melbourne, Australia (2013) [Conference Extract]

[eCite] [Details]

Co-authors: Johnson PG

2013Fan Y, Shabala SN, Li C, Johnson PG, Zhou Meixue, 'Time- and tissue- specificity of antioxidant enzyme activity in salt-stressed barley leaves', 16th Australian Barley Technical Symposium, 8-11 September 2013, Melbourne, Victoria (2013) [Conference Extract]

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Co-authors: Fan Y; Shabala SN; Johnson PG

2013Zeng F, Shabala L, Zhou M, Zhang G, Shabala SN, 'Barley responses to combined waterlogging and salinity stress: separating effects of oxygen deprivation and elemental toxicity', 11th Conference of the International Society for Plant Anaerobiosis, 6-11 October 2013, Los Banos, Philippines (2013) [Conference Extract]

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Co-authors: Zeng F; Shabala L; Shabala SN

2013Zhou M, Shabala SN, Li C, Johnson PG, Broughton S, 'Barley waterlogging tolerance - physiology, genetics and the development of screening facilities', The 16th Australian Barley Technical Symposium, 8-11 September 2013, Melbourne, Australia (2013) [Non Refereed Conference Paper]

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Co-authors: Shabala SN; Johnson PG; Broughton S

2013Zhu M, Shabala SN, Shabala L, Johnson PG, Zhou M, 'Relations betweeen physiological traits and grain yield in barley unders saline condition', The 16th Australian Barley Technical Symposium, 8-11 September 2013, Melbourne, Victoria (2013) [Non Refereed Conference Paper]

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Co-authors: Zhu M; Shabala SN; Shabala L; Johnson PG

2013Bian M, Broughton S, Walters I, Zhou M, Sun D, et al., 'Genetic variance of malate transporter gene in barley (Hordeum vulgare L.)', The 16th Australian Barley Technical Symposium, 8-11 September 2013, Melbourne, Victoria (2013) [Non Refereed Conference Paper]

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Co-authors: Broughton S

2013Wu H, Shabala SN, Zhou M, Shabala L, 'Quantifying contribution of SOS1 and GORK plasma membrane transporters towards salinity tolerance in barley by the MIFE technology', The 16th Australian Barley Technical Symposium, 8-11 September 2013, Melbourne, Australia (2013) [Conference Extract]

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Co-authors: Wu H; Shabala SN; Shabala L

2012Liu Y, Li Haobing, Chen G, McIntyre L, Wei Y, et al., 'Fusarium crown rot resistance of barley', Proceedings of the 11th International Barley Genetics Symposium, 15-20 April 2012, Hangzhou, China (2012) [Conference Extract]

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Co-authors: Li Haobing

2012Shabala SN, Chen Z, Zhou Meixue, Zhang G, 'Physiological traits conferring salinity tolerance in barley', Proceedings of the 11th International Barley Genetics Symposium, 15-20 April 2012, Hangzhou, China (2012) [Conference Extract]

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Co-authors: Shabala SN; Chen Z

2012Wang Junmei, Zhou Meixue, Zhu j, Jia Q, Lin F, 'Quantitative trait loci for malt qualities in a barley cross between TX9425 and Naso Nijo', Proceedings of the 11th International Barley Genetics Symposium, 15-20 April 2012, Hangzhou, China (2012) [Conference Extract]

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Co-authors: Wang Junmei

2012Broughton S, Bowey R, Waters I, Westcott S, Wei Y, et al., 'Can barley outperform wheat under waterlogged conditions?', Proceedings of the 11th International Barley Genetics Symposium, 15-20 April 2012, Hangzhou, China (2012) [Conference Extract]

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2012Zhou M, 'Mechanisms and genetics of plant waterlogging tolerance', Proceedings of the 2012 Wuhan International Forum on Sustainable Agricultural Use of Wetlands, 7-10 July 2012, Jingzhou, China (2012) [Conference Extract]

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2012Zhou Meixue, 'Accurate phenotyping is crucial for developing barley with stress tolerance', Proceedings of the 11th International Barley Genetics Symposium, 15-20 April 2012, Hangzhou, China (2012) [Conference Extract]

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2012Zhu M, Shabala SN, Shabala L, Zhou Meixue, 'Physiological indices for salinity stress tolerance in barley', Proceedings of the 11th International Barley Genetics Symposium, 15-20 April 2012, Hangzhou, China (2012) [Conference Extract]

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Co-authors: Zhu M; Shabala SN; Shabala L

2012Zhou G, Delhaize D, Ryan MD, Zhou Meixue, 'Engineering greater aluminium resistance in barley by over-expression of SbMATE', Proceedings of the 11th International Barley Genetics Symposium, 15-20 April 2012, Hangzhou, China (2012) [Conference Extract]

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Co-authors: Zhou G; Ryan MD

2011Bian M, Walters I, Broughton S, Su D, Zhou M, et al., 'A gene-specific PCR marker for detecting acid soil tolerance in barley (Hordeum vulgare L.)', Proceedings of the 15th Australian Barley Technical Symposium : Barley for Business, 18-21 September 2011, Hilton Adelaide Hotel, South Australia (2011) [Conference Extract]

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2011Chengdao L, Zhou M, Zhang G, Sun D, Xu R, et al., 'Australia-China Collaborative Research on Barley Abiotic Stress Tolerance', Proceedings of the 15th Australian Barley Technical Symposium : Barley for Business, 18-21 September 2011, Hilton Adelaide Hotel, South Australia (2011) [Conference Extract]

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2011Johnson PG, Chengdao L, Zhou M, 'Development of a soil bioassay screening system for acid soil tolerance in barley', Proceedings of the 15th Australian Barley Technical Symposium : Barley for Business, 18-21 September 2011, Hilton Adelaide Hotel, South Australia (2011) [Conference Extract]

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Co-authors: Johnson PG

2011Zhou G, Pereira JF, Delhaize E, Zhou M, Ryan PR, 'Engineering enhanced aluminium resistance in barley by genetic modification with the Frd3 gene of Arabidopsis', Proceedings of the 15th Australian Barley Technical Symposium : Barley for Business, 18-21 September 2011, Hilton Adelaide Hotel, South Australia (2011) [Conference Extract]

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Co-authors: Zhou G

2011Broughton S, Teakle N, Zhou M, Colmer TD, Chengdao L, 'Screening for waterlogging tolerance in barley', Proceedings of the 15th Australian Barley Technical Symposium : Barley for Business, 18-21 September 2011, Hilton Adelaide Hotel, South Australia (2011) [Conference Extract]

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2011Zhou M, Johnson PG, Wang Junmei, Chengdao L, Lance R, 'Quantitative trait loci for salinity and waterlogging tolerance in a barely cross between TX9425 and Naso Nijo', Proceedings of the 15th Australian Barley Technical Symposium : Barley for Business, 18-21 September 2011, Hilton Adelaide Hotel, South Australia (2011) [Conference Extract]

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Co-authors: Johnson PG; Wang Junmei

2009Wang JM, Yang JM, McNeil DL, Zhou M, 'Identification and molecular mapping of a new dwarfing gene from a Chinese landrace variety ', Proceedings of the 14th Australasian Plant Breeding and 11th Society for the Advancement of Breeding Research in Asia & Oceania Conference, 10-14 August 2009, Cairns, Qeensland, pp. 1-5. (2009) [Conference Extract]

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Co-authors: Wang JM; McNeil DL

2009Zhou M, 'A Brief Introduction to Macquarie Barley', Invited paper presented at the 2009 Grain Research Development Corporation (GRDC) Grains Research Updates program for higher rainfall growers : Profitable stockfeed grains in Tasmania, 24th July 2009, Hadspen, Tasmania, pp. 37. (2009) [Non Refereed Conference Paper]

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2009Zhou M, Salter SJ, 'Accurate phenotyping reveals better QTLs for waterlogging tolerance', Proceedings of the 14th Australian Barley Technical Symposium, 13-16 September 2009, Gold Coast, Queensland (2009) [Conference Extract]

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Co-authors: Salter SJ

2009Zhou M, Salter SJ, 'QTLS analysis of salinity tolerance in Barley', Proceedings of the 14th Australian Barley Technical Symposium, 13-16 September 2009, Gold Coast, Queensland (2009) [Conference Extract]

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Co-authors: Salter SJ

2008Zhou M, Li H, 'Identification of Molecular Markers Assoicated with Powdery Mildew and Barley Grass Stripe Rust Resistance', Proceedings of the 10th International Barley Genetics Symposium, 2-15 April 2008, Egypt (2008) [Conference Extract]

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Co-authors: Li H

2008Zhou M, Pang J, Li H, Mendham NJ, Shabala SN, et al., 'Physiological Mechanism and Quantitative Trait Loci Associated with Waterlogging Tolerance in Barley', Proceedings of the 10th International Barley Genetics Symposium, 2-15 April 2008, Egypt (2008) [Conference Extract]

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Co-authors: Pang J; Li H; Mendham NJ; Shabala SN; Vaillancourt RE

2008Zhou M, Shabala SN, Chen Z, Mendham NJ, Pottosin I, et al., 'Targeting Potassium Homeostasis in Barley Breeding for Salt Tolerance', Proceedings of the 10th International Barley Genetics Symposium, 2-15 April 2008, Egypt (2008) [Conference Extract]

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Co-authors: Shabala SN; Chen Z; Mendham NJ; Cuin TA; Newman IA

2007Pang J, Cuin TA, Shabala Lana, Zhou M, Mendham NJ, et al., 'Effect of secondary metabolites associated with anaerobic soil conditions on ion fluxes and electrophysiology in barley roots', Proceedings of the 14th International Workshop on Plant Membrane Biology, Valencia, Spain (2007) [Conference Extract]

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Co-authors: Pang J; Cuin TA; Shabala Lana; Mendham NJ; Shabala SN

2007Pang J, Zhou M, Mendham NJ, Shabala SN, 'Linking physiological observations with breeding target for waterlogging tolerance in barley', Proceedings of the 13th Australian Barley Technical Symposium, 26-30 August 2007, Perth, Western Australia (2007) [Non Refereed Conference Paper]

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Co-authors: Pang J; Mendham NJ; Shabala SN

2007Zhou M, Mendham NJ, Shabala SN, Vaillancourt RE, Salter SJ, et al., 'Developing barley germplasm with stress tolerance - a summary for the research in TIAR', Proceedings of the 13th Australian Barley Technical Symposium, 26-30 August 2007, Perth, Western Australia (2007) [Non Refereed Conference Paper]

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Co-authors: Mendham NJ; Shabala SN; Vaillancourt RE; Salter SJ; Pang J; Li H; Chen Z

2006Chen Z, Zhou M, Mendham NJ, Shabala SN, Newman IA, et al., 'Inheritance of salt tolerance of barley (Hordeum vulgare L.)', Proceedings of the 13th Australasian Plant Breeding Conference, 18-21 April 2006, Christchurch, New Zealand, pp. 1133-1137. (2006) [Refereed Conference Paper]

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Co-authors: Chen Z; Mendham NJ; Shabala SN; Newman IA

2006Pang J, Cuin TA, Zhou M, Mendham NJ, Liang J, et al., 'Effect of secondary metabolites associated with anaerobic soil conditions on ion fluxes and electrophysiology in barley roots', Proceedings of the 2nd International Symposium on Plant Neurobiology, 21-26 May 2006, Beijing, China (2006) [Conference Extract]

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Co-authors: Pang J; Cuin TA; Mendham NJ; Shabala SN

2006Chen Z, Zhou M, Mendham NJ, Newman IA, Zhang G, et al., 'Inheritance of Root 'Potassium Flux Marker' and Tolerance in Barley', Proceedings of Cobmio 2006, 24-28 September 2006, Brisbane, Queensland (2006) [Conference Extract]

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Co-authors: Chen Z; Mendham NJ; Newman IA; Shabala SN

2006Li H, Vaillancourt RE, Zhou M, Mendham NJ, Wenzl P, et al., 'Large-scale segregation distortion in barley revealed by a genetic map based on DArT, AFLP and SSR markers'', Proceedings of the 13th Australasian Plant Breeding Conference, 18-21 April 2006, Christchurch, New Zealand, pp. 660-665. (2006) [Non Refereed Conference Paper]

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Co-authors: Li H; Vaillancourt RE; Mendham NJ

2005Chen Z, Zhou M, Mendham NJ, Newman IA, Zhang G, et al., 'Measuring Potassium Fluxes to Screen Barley Genotypes for Salt Tolerance', Proceedings of the 12th Australian Barley Technical Symposium, 11-14 September 2004, Hobart, Tasmania (2005) [Conference Extract]

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Co-authors: Chen Z; Mendham NJ; Newman IA; Shabala SN

2005Chen Z, Newman IA, Zhou M, Mendham NJ, Shabala SN, 'Targeting K+ homeostasis in plant breeding for salt tolerance: physiological and genetic aspects', Proceedings of ComBio 2005, 25-29 September 2005, Adelaide, South Australia, pp. Pos-Mon-89. (2005) [Conference Extract]

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Co-authors: Chen Z; Newman IA; Mendham NJ; Shabala SN

2005Li H, Zhou M, Mendham NJ, Kilian A, Huttner E, et al., 'Mapping and QTL analysis of the barley population TX9425 x Franklin', Proceedings of the 12th Australian Barley Technical Symposium, 11-14 September 2004, Hobart, Tasmania (2005) [Conference Extract]

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Co-authors: Li H; Mendham NJ; Vaillancourt RE

2005Pang J, Zhou M, Mendham NJ, Newman IA, Shabala SN, 'Two barley varieties with contrasting waterlogging tolerance showed different sensitivity of O2 and ion fluxes to hypoxia', Proceedings of the 12th Australian Barley Technical Symposium, 11-14 September 2005, Hobart, Tasmania, pp. 56. (2005) [Conference Extract]

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Co-authors: Pang J; Mendham NJ; Newman IA; Shabala SN

2005Pang J, Zhou M, Mendham NJ, Shabala SN, 'Different barley root tissues showed differential sensitivity of ion and O2 fluxes to hypoxia', Proceedings of the 12th Australian Barley Technical Symposium, 11-14 September 2004, Hobart, Tasmania (2005) [Non Refereed Conference Paper]

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Co-authors: Pang J; Mendham NJ; Shabala SN

2005Raman H, Wang Junping, Read B, Zhou M, Venkatanagappa S, et al., 'Molecular mapping of tolerance to aluminium toxicity in barley', Plant & Animal Genome XIII: The International Conference on the Status of Plant & Animal Genome Research, 2005, San Diego, Calilfornia, USA (2005) [Non Refereed Conference Paper]

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Co-authors: Mendham NJ

2005Chen Z, Zhou M, Mendham NJ, Newman IA, Zhang G, et al., 'Screening barley for salt tolerance: MIFE meets conventional criteria', Proceedings of the 12th Australian Barley Technical Symposium, 11-14 September 2005, Hobart, Tasmania (2005) [Conference Extract]

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Co-authors: Chen Z; Mendham NJ; Newman IA; Shabala SN

2004Chen Z, Shabala SN, Newman IA, Zhou M, Zhang G, 'Measuring Potassium Fluxes to Screen Barley Genotypes for Salt Tolerance', Genomics in the Barossa, 1st Annual ACPFG Research Symposium, 5-8 October 2004, Adelaide, South Australia (2004) [Conference Extract]

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Co-authors: Chen Z; Shabala SN; Newman IA

2004Chen Z, Shabala SN, Newman IA, Zhou M, Zhang G, 'Measure Potassium Fluxes to Screen Barley Genotypes for Salt Tolerance', Proceedings of ComBio 2004 Annual Conference, 26-30 September 2004, Perth, WA, pp. 79. (2004) [Conference Extract]

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Co-authors: Chen Z; Shabala SN; Newman IA

2004Guo TR, Zhang GP, Zhou M, Wu FB, Chen JX, 'Effects of Aluminum and Cadmium Toxicity on Growth and Antioxidant Enzyme Activities of Two Barley Genotypes with Different Al Tolerance', Proceedings 9th International Barley Genetics Symposium, 20-26 June 2004, Brno, Czech Republic (2004) [Non Refereed Conference Paper]

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2004Newman IA, Chen Z, Shabala SN, Zhou M, Zhang G, 'Measuring ion fluxes to screen barley genotypes for salt tolerance', Proceedings of 13th International Workshop on Plant Membrane Biology, 6-10 July 2004, Montpellier, France, pp. 11-28. (2004) [Conference Extract]

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Co-authors: Newman IA; Chen Z; Shabala SN

2004Pang J, Mendham NJ, Shabala SN, Zhou M, 'Effects of foliar fertilizer applications on the alleviation of waterlogging stress in six barley varieties', Proceedings of the 4th International Crop Science Congress, 26 September - 1 October 2004, Brisbane, Queensland, pp. www.regional.org.au. ISBN 1 920842 20 9 (2004) [Refereed Conference Paper]

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Co-authors: Pang J; Mendham NJ; Shabala SN

2004Pang J, Shabala SN, Mendham NJ, Zhou M, 'Growth, Morphological and Anatomical Responses of Two Barley Genotypes to Hypoxia', Proceedings 9th International Barley Genetics Symposium, 20-26 June 2004, Brno, Czech Republic (2004) [Non Refereed Conference Paper]

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Co-authors: Pang J; Shabala SN; Mendham NJ

2004Wang Junping, Raman H, Read B, Zhou M, Mendham NJ, et al., 'Comparison of root staining and root elongation in predicting aluminium tolerance using SSR markers in barley', Proceedings 4th International Crop Science Congress, 26 September - 1 October 2004, Brisbane, Queensland, pp. www.regional.org.au. ISBN 1 920842 20 9 (2004) [Refereed Conference Paper]

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Co-authors: Mendham NJ

2004Zhou M, Li H, Mendham NJ, Salter SJ, 'Inheritance of waterlogging tolerance of barley (Hordeum vulgare L.)', Proceedings 4th International Crop Science Congress, 26 September - 1 October 2004, Brisbane, Queensland, pp. www.regional.org.au. ISBN 1 920842 20 9 (2004) [Refereed Conference Paper]

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Co-authors: Li H; Mendham NJ; Salter SJ

2004Zhou M, Mendham NJ, Zhang GP, Shen QQ, Xu RG, et al., 'Screening Barley Germplasm for Waterlogging Tolerance', Proceedings 9th International Barley Genetics Symposium, 20-26 June 2004, Brno, Czech Republic (2004) [Non Refereed Conference Paper]

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Co-authors: Mendham NJ

2003Guo TR, Zhang GP, Zhou M, Wu FB, Chen JX, 'Genotypic difference in plant growth and mineral composition in barely under aluminum stress', Proceedings 11th Australian Barley Technical Symposium, 2003, Adelaide, South Australia (2003) [Refereed Conference Paper]

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2003Pang J, Shabala SN, Mendham NJ, Zhou M, 'Screening methods for waterlogging tolerance in barley', In: Genetic Solutions for Hostile Soils (Workshop Proceedings), 26-27 November 2003, CSIRO Plant Industry, Canberra, ACT (2003) [Conference Extract]

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Co-authors: Pang J; Shabala SN; Mendham NJ

2003Pang J, Zhou M, Mendham NJ, Li H, Shabala SN, 'Comparison of growth and physiological responses to waterlogging and subsequent recovery in six barley genotypes', Proceedings 11th Australian Barley Technical Symposium, 2003, Adelaide, South Australia (2003) [Refereed Conference Paper]

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Co-authors: Pang J; Mendham NJ; Li H; Shabala SN

2003Zhang J, Zhou M, Mendham NJ, 'Screening barley germplasm for stress tolerance and disease resistance', Proceedings 11th Australian Barley Technical Symposium, 2003, Adelaide, South Australia (2003) [Refereed Conference Paper]

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Co-authors: Mendham NJ

2003Zhou M, Mendham NJ, 'Predicting barley malt extract with rapid viscoanalyser', Proceedings 11th Australian Barley Technical Symposium, 2003, Adelaide, South Australia (2003) [Refereed Conference Paper]

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Co-authors: Mendham NJ

2003Zhou M, Xu RG, Chen DH, Huang ZL, Mendham NJ, et al., 'Effect of waterlogging on the growth of barley', Proceedings 11th Australian Agronomy Conference, 2003, Geelong, Victoria (2003) [Refereed Conference Paper]

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Co-authors: Mendham NJ; Hossain AM

2000Huang ZR, Xu RG, Zhou M, Lu C, 'Studies on Cytoplasmic Male Sterility', Proceedings of 8th International Barley Genetics Symposium, 2000, Adelaide, South Australia (2000) [Non Refereed Conference Paper]

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2000Zhou M, Mendham NJ, 'Developing Collaborative Studies with China', Proceedings 10th Australian Barley Technical Symposium, 2000, ACT, Australia (2000) [Non Refereed Conference Paper]

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Co-authors: Mendham NJ

Contract Report, Consultant's Report

(4 outputs)
YearCitationAltmetrics
2019Harrison MT, Zhou M, 'Manipulating barley phenology to maximise yield potential', Grains Research and Development Corporation, Hobart, Australia (2019) [Contract Report]

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Co-authors: Harrison MT

2007Zhou M, 'Fine mapping of the aluminium tolerance gene in barley', New South Wales Agriculture, Final Report (2007) [Contract Report]

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2007Zhou M, 'UT8 GRDC - Australia China Collaboration on Barley Genetic Resources', Grains Research & Development Corporation, Final Report (2007) [Contract Report]

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2000Zhou M, Mendham NJ, Mackinnon I, Platz G, 'Report on Short-Term Visit to China', Australia China Agricultural Cooperation Agreement (2000) [Contract Report]

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Co-authors: Mendham NJ

Other Public Output

(1 outputs)
YearCitationAltmetrics
2005Zhou M, Mendham NJ, Salter SJ, 'New Barley for Spring Sowing - T98189', Tas Regions - TIAR Column, Department of Primary Industries Water & Environment, Hobart, Tasmania (2005) [Magazine Article]

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Co-authors: Mendham NJ; Salter SJ

Grants & Funding

Since starting his position at the University of Tasmania in 1999, Meixue has been a Chief Investigator for about 15 research projects, with a total funding of more than $10 m. Most of the projects are related to plant abiotic stress tolerance (waterlogging, salinity, acids soil) and disease resistance (Barley Yellow Dwarf Virus etc)

Funding Summary

Number of grants

20

Total funding

$18,020,140

Projects

Introgressing waterlogging tolerance gene to commercial barley varieties (2019 - 2022)$1,072,810
Description
Waterlogging has become one of the major abiotic stresses that limit the production of barley crop in high rainfall areas of Australia, in particular, Tasmania. The development of waterlogging tolerant varieties is an effective and economical approach to improve crop production under waterlogging conditions. However, the progress of developing waterlogging tolerant barley varieties is slow due to the complexity of waterlogging conditions resulting from different water depth, soil type, duration of waterlogging, nutrient ions and temperature. Waterlogging tolerance is also a complex trait, controlled by many genes including some with small effects. Molecular markers have provided plant breeders with a method to improve selection accuracy and accelerate breeding programs.In our previous studies, we have identified a new gene controlling one of the major tolerance mechanisms, i.e. aerenchyma formation in roots under waterlogging conditions. The new gene from a wild barley accession not only produces a greater proportion of aerenchyma but makes a greater contribution to the overall waterlogging tolerance. We have already fine mapped the gene and some co-segregating markers have been identified. These markers are now ready to be used in selection programs. A new system has also been established to develop a new variety in a very short time (3 years). After the workshop organised with farmers and GRDC representatives, farmers and GRDC showed great interests in supporting this work in TIA. I would like to apply for funding to support a postdoc to conduct the backcrossing and selection program. The end product, new variety, will provide direct benefits to grain industry.
Funding
Grains Research & Development Corporation ($1,072,810)
Scheme
Tender
Administered By
University of Tasmania
Research Team
Zhou M; Johnson PG; Fan Y
Period
2019 - 2022
Manipulating barley phenology to maximise yield potential (2018 - 2019)$113,366
Description
Barley growing areas across Australia is so heterogeneous that environmental factors vary from one region to another. In addition, high levels of inter- and intra-seasonal rainfall variability cause large fluctuations in yield and grain quality. Barley cultivars often vary in their adaptation and thus yield potential under various environments. The time of flowering (awn appearance) is known to be the single most important trait that determines adaptation and yield of major cereals, including barley, to such variable environments. Barley genotypes vary genetically for the period they require from planting to flowering and maturity. Genes that underlie variation in phase development and flowering behaviour (phenology) have been, and will continue to be, critical for adapting barley varieties to different climates and diverse growing regions. Achieving the highest possible yields and the best quality requires growing barley cultivar that coincide its flowering and grain production period with optimal seasonal conditions.The flowering time is defined by the photoperiod (PPd), vernalisation (Vrn) and earliness per se (Eps) genes and their interactions with environmental factors. Several PPd, Vrn and Eps genes have been identified and various allelic forms of these genes have been discovered. Development of the next generation sequencing technology and completion of the barley genome sequence have provided more efficient tools to identify new genes and alleles for phenology. However, breeders and pre-breeders cannot currently utilise latest discoveries in diversity of the genes that control phenology as there is no field performance/ validation data to guide strategic breeding for specific adaption. The Australian barley breeding programs have made significant progress in development of the new barley varieties in the last few years. Hindmarsh, La trobe, Compass, Granger and Commander have demonstrated high yield and yield stability in the barley NVT trials. However, no information of the phenology alleles and allele combinations are available to understand the best combinations for the known environment groups (clusters) in these varieties. Thus, breeding programs currently have inefficient selection processes as large numbers of progeny are culled due to incorrect phenology which is reducing yield gain rates. In addition, pre-breeders need a better understanding of barley phenology so as to provide pre-breeding materials with more repeatable responses to environmental changes and to quantify the value of novel phenology traits in barley by simulating effects of allele combinations and sowing date on barley yield across diverse environment types using the crop simulation framework Agricultural Production Systems Simulator (APSIM). This tender compromises innovative approach to develop germplasm, allele-specific molecular markers and simulate modelling for breeding specifically adapted barley cultivars with high grain yield and quality through manipulation of phenology genes. The proposed research recognises the importance of a multidisciplinary approach and brings together barley pre-breeders, molecular geneticist, plant physiologist, agronomist, biometrician and barley breeder from Department of Food and Agriculture of Western Australia (DAFWA), the University of Western Australia (UWA), University of Tasmania (UTAS), Murdoch University (MU) and Australian Grain Technology (AGT) to produce industry relevant outcomes.1. By 2017, Australian barley breeders have access to accurate information regarding the combination of VRN, PPD and EPS genes that maximise yield potential in defined environments in each region and are using this information to design specific flowering ideotypes for different barley production environments. 2. By 2023, Growers in primary barley production regions have access to barley cultivars with a minimum of 12% higher yield than current dominant regional elite varieties (Hindmarsh, Buloke, Baudin
Funding
Grains Research & Development Corporation ($113,366)
Scheme
Tender, Improving Crop Yield
Administered By
Murdoch University
Research Team
Li C; Angessa T; Zhou M; Paynter B; Harrison MT
Period
2018 - 2019
Soil and crop management practices to minimise the impact of waterlogging on crop productivity and profit in Australia (2017 - 2018)$35,000
Description
TIA has been invited by the GRDC to conduct a scoping study into soil and crop management options to minimise the impact of waterlogging in grains production. This will require investigation into agronomic and engineering solutions. A report of 40-60 pages will be produced detailing: the impacts of waterlogging, current grower/advisor experiences, knowledge and attitudes towards soil and crop management of waterlogging; a summary of the current state of knowledge of soil and crop management practices to alleviate the impacts of waterlogging, consisting of a synthesis of past research and development in the published scientific and grey literature across Australia and internationally; and the identification of the most important gaps in knowledge, technology and farm practices that will reduce the impacts of waterlogging, increase farm productivity and profitability.
Funding
Grains Research & Development Corporation ($35,000)
Scheme
Consultancy
Administered By
University of Tasmania
Research Team
Dean GJ; Zhou M; Pengilley G; Field B
Period
2017 - 2018
Developing Salt Tolerant Rice for Food Security in India and Australia (2016 - 2019)$997,500
Description
In this highly innovative project we will analyse the genome and transcriptome of a highly salt tolerant wild rice species Oryza coarctata to reveal novel mechanisms that confer salt tolerance that can be incorporated into traditional (O. sativa) rice varieties to boost their salinity stress tolerance. This will be achieved by addressing the following major objectives:(a) Quantifying the relative contribution and providing a comprehensive assessment of key physiological traits contributing to salinity stress tolerance in Oryzacoarctata, both at the cellular and whole-plant levels;(b) Identifying and cloning key transport genes conferring the above traits;(c) Assessing function and regulation of key transport genes in Oryzacoarctata in planta and using heterologous expression systems; and (d) Overexpressing the above genes in (traditional) O. sativa genotypes and assessing plant performance under saline conditions in glasshouse and field experiments. The ultimate goal of this work is to create truly salt tolerant rice varieties for farmers fields.
Funding
Department of Industry and Science ($997,500)
Scheme
Grant-Australia-India Strategic Research Fund
Administered By
University of Tasmania
Research Team
Shabala SN; Meinke HB; Zhou M; Shabala L; Chen ZH
Period
2016 - 2019
Improved Adaptation of Barley to Acid Soils (2015 - 2020)$2,450,000
Funding
Grains Research & Development Corporation ($2,450,000)
Scheme
Tender-Germplasm Enhancement
Administered By
Murdoch University
Research Team
Li C; Zhou M; Broughton S; Zhang X
Period
2015 - 2020
Transpirational control and oxidative stress tolerance traits as components of salinity stress tolerance in cereals (2014 - 2016)$600,477
Funding
Grains Research & Development Corporation ($600,477)
Scheme
Grant
Administered By
University of Tasmania
Research Team
Shabala SN; Zhou M; Shabala L
Period
2014 - 2016
Effective control of barley yellow dwarf virus (BYDV) in wheat (2014 - 2019)$1,537,323
Description
For two consecutive years (2011 and 2012) YDV (BYDV) has been one of the major production issues in high rainfall areas of the southern region including Tasmania, Victoria and Western Australia. BYDV-PAV, vectored mainly by the aphid Rhopalosiphum padi, is the most prevalent YDV species in wheat and grasslands across all states, except Queensland. The virus is not seed-borne and persists from one growing season to the next in over-summering grasses. Early application of aphicides as a seed treatment has been recommended and used but has given inconsistent protection, so resistance/tolerance is seen as the best solution.
Funding
Grains Research & Development Corporation ($1,500,000)
Scheme
Tender
Administered By
University of Tasmania
Research Team
Zhou M; Johnson PG
Period
2014 - 2019
National Barley Foliar Pathogen Variety Improvement Program (NBFPVIP) (2013 - 2019)$7,515,000
Description
The project is a national barley pathology program providing sustainable options to growers to manage current and emerging threats to barley through delivering effective strategic and tactical management and using genetic technologies to reduce both crop losses and cost of control.
Funding
Grains Research & Development Corporation ($7,505,000)
Scheme
Tender, Improving Crop Yield
Administered By
Queensland Department of Agriculture & Fisheries
Research Team
Linde C; Platz G; Gupta S; McLean M; Milgate A; Zhou M; Johnson PG; Daveis J
Period
2013 - 2019
Association analysis of rice yield in irrigated ecosystems: Effectiveness of fine-mapped and cloned yield related QTLs/Genes, identification of new marker-trait associations and efficiency of genomic (2012 - 2015)$195,339
Funding
Agrilife Research - Texas A&M University System ($195,339)
Scheme
Contract Research
Administered By
University of Tasmania
Research Team
Zhou M
Period
2012 - 2015
The role of canopy architecture in improving the water-limited yield of wheat lines contrasting in the 'tin' gene (2012 - 2015)$267,022
Funding
Grains Research & Development Corporation ($267,022)
Scheme
Tender-Germplasm Enhancement
Administered By
University of Tasmania
Research Team
Moeller CN; Zhou M
Period
2012 - 2015
Improved Adaptation of Barley to Acid Soils (2012 - 2015)$245,628
Funding
Grains Research & Development Corporation ($245,628)
Scheme
Tender-Germplasm Enhancement
Administered By
Murdoch University
Research Team
Li C; Zhou M
Period
2012 - 2015
Developing molecular and physiological markers for marker-assisted barley breeding for waterlogging tolerance (2012 - 2015)$264,953
Description
Waterlogging results in severe economic penalties to agricultural crop production. To date, plant breeding for waterlogging tolerance has been based largely on phenotyping and has failed to deliver truly tolerant varieties. In this project, new physiological markers conferring waterlogging stress tolerance at the cellular level will be developed. Using a range of molecular markers, key genes conferring these traits will be then accurately located to the particular loci on barley chromosomes. This highly innovative approach will provide a major breakthrough in our understanding of the relative contribution of each of the key mechanisms contributing to waterlogging tolerance trait, and allow for creating germplasm with better stress tolerance.
Funding
Australian Research Council ($132,000)
Scheme
Grant-Linkage Projects Round 2
Administered By
University of Tasmania
Research Team
Shabala SN; Zhou M; Shabala L
Period
2012 - 2015
Grant Reference
LP120200516
Waterlogging and Acid Soil Screening of Pulses (2010)$49,918
Funding
Grains Research & Development Corporation ($49,918)
Scheme
Tender-Pulse, Oilseed, and Summer Coarse Grains
Administered By
University of Tasmania
Research Team
Johnson PG; Zhou M
Year
2010
Quantifying the Relative Contribution of Physiological Traits Contributing to Salinity Tolerance in Barley and Wheat (2010 - 2012)$502,024
Funding
Grains Research & Development Corporation ($502,024)
Scheme
Grant-Multi-Stage Tender-Germplasm Enhancement
Administered By
University of Tasmania
Research Team
Shabala SN; Zhou M; Shabala L
Period
2010 - 2012
DAFWA -TIAR - China Barley Collaboration 2009-2012 (2009 - 2012)$630,000
Funding
Grains Research & Development Corporation ($630,000)
Scheme
Tender-Wheat and Barley Breeding
Administered By
Department of Agriculture and Food Western Australia
Research Team
Zhou M; Li C
Period
2009 - 2012
DArT Marker Analysis (2008)$10,000
Funding
Zhejiang Academy of Agricultural Sciences ($10,000)
Scheme
Grant
Administered By
University of Tasmania
Research Team
Zhou M
Year
2008
Conduct (Seed, Manage and Harvest) Regional Barley Stage 3, Stage 4, Breeding Trials and Disease and Abiotic Stress Screening Nurseries in Tasmania (2007 - 2011)$227,270
Funding
Grains Research & Development Corporation ($227,270)
Scheme
Tender-Wheat and Barley Breeding
Administered By
University of Tasmania
Research Team
Zhou M
Period
2007 - 2011
Fine mapping of the aluminium tolerance gene in barley (2004 - 2006)$35,000
Funding
New South Wales Agriculture ($35,000)
Scheme
Grant
Administered By
University of Tasmania
Research Team
Zhou M; Mendham NJ
Period
2004 - 2006
Studies on Physiological Mechanisms and Screening Methodology on Salinity Tolerance of Barley (2003)$37,000
Funding
Department of Education, Science and Training ($37,000)
Scheme
Grant
Administered By
University of Tasmania
Research Team
Zhou M
Year
2003
Australia China Collaboration on Barley Genetic Resources (2001 - 2008)$1,234,510
Funding
Grains Research & Development Corporation ($1,234,510)
Scheme
Tender-Wheat and Barley Breeding
Administered By
University of Tasmania
Research Team
Zhou M; Mendham NJ
Period
2001 - 2008

Research Supervision

Meixue has demonstrated a strong track record in capability and capacity building of HDR students. In the last 10 years, he has trained 8 and expecting at least six completions this year. He is currently supervising 20 HDR candidates (Primary supervisor of 10). Most of his students published between 4-6 papers from their PhD study (mostly as the 1st-named author) and most of them are now working in the research or industry sectors, both nationally (UWA, Murdock University, University of Western Sydney, Victoria DPI, CSIRO) and internationally (China). Meixueis planning to have 3-4 new HDR students each year, working on physiological and genetic studies on plant abiotic stress tolerance, disease resistance, and phenology.

Current

19

Completed

28

Current

DegreeTitleCommenced
PhDUnderstanding the Role of Stomatal Traits and Tissue-Tolerance Mechanisms in Salinity Stress Responses in Quinoa and Wild Barley2015
PhDTissue-specific Reactive Oxygen Species Signaling and Ionic Homeostasis in Chenopodium quinoa and Spinacia oleracea in the context of Salinity Stress Tolerance2015
PhDEffective Control of Barley Yellow Dwarf Virus (BYDV) in Wheat2015
PhDTaming Quantitative Resistance Mechanisms to Recalcitrant Diseases2016
PhDUnderstanding the Mechanisms Conferring Salt Stress Tolerance in Different Rice Species2017
PhDTransgenic Rice for Saline Soils: a molecular and electrophysiological investigation2017
MastersPotential Strategies for Control and Treatment Against Powdery Mildew of Wheat2018
PhDPhysiological and Molecular Mechanisms Controlling Xylem Ion Loading in Rice2018
PhDFine Mapping, Development of Near-isogenic Lines, and Candidate Gene Analysis of a Major Quantitative Trait Locus Tolerance to Waterlogging in Wild Barley (H. spontaneum)2018
PhDMechanisms of salt stress tolerance in O.coarctata (Rice)2018
PhDFine Mapping and Characterization of Waterlogging Tolerance Genes in Barley2018
PhDFine Mapping and Identification of a Salinity Tolerance Candidate Gene in Barley2018
PhDFine Mapping and Identification of a Salinity Tolerance Candidate Gene in Barley2018
PhDZinc and other Micronutrient Use Efficiency in Barley for Biofortification of Grain and Vegetative Parts for Human and Animal Health2018
PhDUnderstanding the Implications of Waterlogging on the Growth and Yield of Wheat and Barley2018
PhDFine mapping of a salt-tolerance gene in barley (Hordeum vulgare L.)2019
MastersResponse of Alternative Perennial Temperate and Topical Grasses to Water-logging and Effect of Management Strategies on their Water-logging Tolerance. Improving Feed Supply and Quality to Lift Productivity of Smallholder Cattle Producers in Vietnam2019
PhDMapping QTL for Salt Tolerance in Rice2019
PhDIdentification of QTL for Barley Yellow Dwarf (BYD) Resistance in Wheat2019

Completed

DegreeTitleCompleted
PhDAssessing Genetic Variability and Physiological Traits Conferring Drought Stress Tolerance in Cereals
Candidate: Amarah Batool
2019
PhDDeveloping Molecular and Physiological Markers for Barley Breeding for Waterlogging Tolerance by Targeting Root Ionic Homeostasis
Candidate: Muhammad Bilal Gill
2019
PhDOxidative Stress Tolerance as a Component of the Tissue Tolerance Mechanism in Wheat and Barley
Candidate: Haiyang Wang
2019
PhDBarley Yellow Dwarf Resistance in Cereal Crops: Genetics and resistance mechanisms
Candidate: Shormin Choudhury
2019
PhDExploring Genetics Associated with Phenology and Grain Quality in Barley (Hordeum vulgare L.)
Candidate: Ibrahim Danasabe Ahmed
2019
PhDPhysiological and Morphological Responses to Osmotic Stress in Barley (Hordeum vulgare L.)
Candidate: Md. Hasanuzzaman
2018
MastersPotassium Use Efficiency in Barley
Candidate: Widad Al-Azzawi
2018
PhDMn2+ Tolerance in Barley (Hordeum vulgare L.) and its Contribution to Waterlogging Tolerance
Candidate: Xin Huang
2018
PhDBioinformatics, Gene Functional and Germplasm Physiology Feature Studies of Zea may ssp. mexicana L. Under Cold and Other Environmental Stresses
Candidate: Xiang Lu
2017
PhDPhysiological Mechanisms Conferring Ameliorative Effects of Nitric Oxide and Cytokinin on Salinity Stress Tolerance in Pea and Barley
Candidate: Shivam Sidana
2017
PhDImproving Waterlogging Tolerance in Barley with Molecular and Physiological Markers
Candidate: Xuechen Zhang
2017
PhDGenetics of Fusarium (F. pseudograminearum) Crown Rot Resistance in Barley
Candidate: Ahsan Habib
2016
PhDMapping QTL for Salinity Tolerance and its Related Physiological Traits in Barley (Hordeum vulgare L.)
Candidate: Yun Fan
2016
MastersUnderstanding the Physiology of Combined Salinity and Waterlogging Tolerance in Barley
Candidate: Zhinous Falakboland
2016
PhDGenetic Association Analysis of Indica Rice Yield and Related Traits in Irrigated Ecosystems
Candidate: Shanshan Liang
2016
PhDTissue Specificity of Cytosolic K+ Retention, Na+ Exclusion, and Vacuolar Na+ Sequestration Traits in the Context of Differential Salinity Stress Tolerance in Barley and Wheat
Candidate: Honghong Wu
2016
PhDBiology and Function of the OsALMT1 Gene in Rice (Oryza sativa L.)
Candidate: Jie Liu
2016
PhDGenetic and Physiological Aspects of Barley (Hordeum vulgare L.) Responses to Waterlogging, Salinity and Aluminium Stresses and Their Interactions
Candidate: Yanling Ma
2016
PhDRegulation of Xylem Ion Loading and Iconic Relations in Barley and Wheat Leaves in the Context of Salinity Stress Tolerance
Candidate: Min Zhu
2015
PhDEvaluating the Contribution of Tonoplast and Plasma Membrane Transporters in Salinity Tissue Tolerance in Barley
Candidate: Getnet Dino Adem
2015
PhDAllelic variation analysis and development of gene-specific molecular markers conferring acid soil tolerance in barley (Hordeum vagular L.)
Candidate: Miao Bian
2014
PhDEnhancing Aluminium Resistance in Barley through Over - expression of MATE Genes
Candidate: Gaofeng Zhou
2013
MastersEvidence for Natural Selection acting on Genes Affecting Lignin and Cellulose Biosynthesis in Eucalyptus globulus
Candidate: Sara Hadjigol
2012
MastersModifying Poppy Growth and Alkaloid Yield with Plant Growth Regulators
Candidate: Geoffrey Johnson Dean
2011
PhDPotassium Homeostasis and Salinity Tolerance in Barley: Physiological and Genetic Aspects
Candidate: Zhonghua Chen
2008
PhDHigh-Resolution Mapping of an Aluminium Tolerance Gene Alp in Barley (Hordeum vulgare L.)
Candidate: Junping Wang
2007
PhDIdentification and Characterization of Quantitative Trait Loci (QTLs) Associated with Waterlogging Tolerance in Barley (Hordeum vulgare L.)
Candidate: Haobing Li
2007
PhDPhysiological Responses to Waterlogging in Barley (Hordeum vulgare L.)
Candidate: Jiayin Pang
2006