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Meixue Zhou

Showing results (101-110 of 164) with videos related to

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Scientific Reports|January 1, 2020
Bivariate analysis of barley scald resistance with relative maturity reveals a new major QTL on chromosome 3HXuechen Zhang, Ben Ovenden, Beverley A Orchard, et al.
Plant Physiology and Biochemistry : PPB|February 12, 2017
A novel Zea mays ssp. mexicana L. MYC-type ICE-like transcription factor gene ZmmICE1, enhances freezing tolerance in transgenic Arabidopsis thalianaXiang Lu, Lei Yang, Mengyuan Yu, et al.
International Journal of Molecular Sciences|February 27, 2020
Understanding Mechanisms of Salinity Tolerance in Barley by Proteomic and Biochemical Analysis of Near-Isogenic LinesJuan Zhu, Yun Fan, Sergey Shabala, et al.
BMC Plant Biology|October 28, 2020
Ecological genomics of Chinese wheat improvement: implications in breeding for adaptationJie Guo, Chang Li, Junjie Zhao, et al.
BMC Genomics|March 6, 2016
A new allele for aluminium tolerance gene in barley (Hordeum vulgare L.)Yanling Ma, Chengdao Li, Peter R Ryan, et al.
Functional Plant Biology : FPB|February 21, 2022
Unravelling the physiological basis of salinity stress tolerance in cultivated and wild rice speciesBabar Shahzad, Ping Yun, Lana Shabala, et al.
Molecular Genetics and Genomics : MGG|August 31, 2010
Construction of a high-density composite map and comparative mapping of segregation distortion regions in barleyHaobing Li, Andrzej Kilian, Meixue Zhou, et al.
Abiotech|March 10, 2025
A high-throughput protocol for testing heat-stress tolerance in pollenChenchen Zhao, Abu Bakar Siddique, Ce Guo, et al.
Physiologia Plantarum|June 30, 2026
Wild Barley Exhibits Higher Phosphorus-Use Efficiency and Greater Rhizosheath Carboxylates Than Cultivated Barley Under Low-Phosphorus ConditionsYunpeng Tao, Xiaowen Fan, Tahmina Nazish, et al.
Plants (Basel, Switzerland)|August 28, 2021
Revealing the Role of the Calcineurin B-Like Protein-Interacting Protein Kinase 9 (CIPK9) in Rice Adaptive Responses to Salinity, Osmotic Stress, and K<sup>+</sup> DeficiencySergey Shabala, Mohammad Alnayef, Jayakumar Bose, et al.
Pageof 17

Showing results (101-110 of 164) with videos related to

Sort By:
Pageof 17
Scientific Reports|January 1, 2020
Bivariate analysis of barley scald resistance with relative maturity reveals a new major QTL on chromosome 3HXuechen Zhang, Ben Ovenden, Beverley A Orchard, et al.
Plant Physiology and Biochemistry : PPB|February 12, 2017
A novel Zea mays ssp. mexicana L. MYC-type ICE-like transcription factor gene ZmmICE1, enhances freezing tolerance in transgenic Arabidopsis thalianaXiang Lu, Lei Yang, Mengyuan Yu, et al.
International Journal of Molecular Sciences|February 27, 2020
Understanding Mechanisms of Salinity Tolerance in Barley by Proteomic and Biochemical Analysis of Near-Isogenic LinesJuan Zhu, Yun Fan, Sergey Shabala, et al.
BMC Plant Biology|October 28, 2020
Ecological genomics of Chinese wheat improvement: implications in breeding for adaptationJie Guo, Chang Li, Junjie Zhao, et al.
BMC Genomics|March 6, 2016
A new allele for aluminium tolerance gene in barley (Hordeum vulgare L.)Yanling Ma, Chengdao Li, Peter R Ryan, et al.
Functional Plant Biology : FPB|February 21, 2022
Unravelling the physiological basis of salinity stress tolerance in cultivated and wild rice speciesBabar Shahzad, Ping Yun, Lana Shabala, et al.
Molecular Genetics and Genomics : MGG|August 31, 2010
Construction of a high-density composite map and comparative mapping of segregation distortion regions in barleyHaobing Li, Andrzej Kilian, Meixue Zhou, et al.
Abiotech|March 10, 2025
A high-throughput protocol for testing heat-stress tolerance in pollenChenchen Zhao, Abu Bakar Siddique, Ce Guo, et al.
Physiologia Plantarum|June 30, 2026
Wild Barley Exhibits Higher Phosphorus-Use Efficiency and Greater Rhizosheath Carboxylates Than Cultivated Barley Under Low-Phosphorus ConditionsYunpeng Tao, Xiaowen Fan, Tahmina Nazish, et al.
Plants (Basel, Switzerland)|August 28, 2021
Revealing the Role of the Calcineurin B-Like Protein-Interacting Protein Kinase 9 (CIPK9) in Rice Adaptive Responses to Salinity, Osmotic Stress, and K<sup>+</sup> DeficiencySergey Shabala, Mohammad Alnayef, Jayakumar Bose, et al.
Pageof 17