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张举仁
职称:教授
所在单位:生命科学学院
教师拼音名称:
zhangjuren
入职时间:
1985-03-01
所在单位:
生命科学学院
性别:
男
在职信息:
在职
是否在职:
0
论文成果
[31] 李坤朋 , 张举仁 , 张可炜 and 杨爱芳. Proteomic analysis of roots growth and metabolic changes under phosphorus deficit in maize (Zea mays L.) plants. Proteomics, 7, 1501, 2007.
[32] 刘昌彬 , 李坤朋 , 张举仁 and 张可炜. Expression of the Thellungiella halophila vacuolar H+-pyrophosphatase gene (TsVP) in cotton improves salinity tolerance and increases seed cotton yield in a saline field. Euphytica, 2016.
[33] 李坤朋 , 张举仁 and 张可炜. Physiological and comparative proteome analyses reveal low-phosphate tolerance . BMC Plant Biology, 2016.
[34] 张举仁 and 翟淑梅. Overexpression of a Zea mays phospholipase C1 gene enhances drought tolerance in tobacco in part by maintaining stability in the membrane lipid composition. Plant Cell Tissue Organ Culture, 115, 2013.
[35] 杨爱芳 , 张举仁 and 翟淑梅. overexpression of the phosphatidylinositol synthase gene from Zea mays in tobacco plants alters the membrane lipids composition and improves drought stress tolerance. Planta, 2012.
[36] 张可炜 , 杨爱芳 , 张举仁 and 李坤朋. Comparative proteome analyses of phosphorus responses in maize (Zea mays L.) roots of wild-type and a low-P-tolerant mutant reveal root characteristics associated with phosphorus efficiency. The Plant Journal, 55, 927, 2008.
[37] 张举仁 and 李坤朋. Proteome profile of maize (Zea Mays L.) leaf tissue at the flowering stage after long-term adjustment to rice black-streaked dwarf virus infection. Gene, 106, 2011.
[38] 张可炜 , 杨爱芳 , 张举仁 and 李坤朋. Efficient production and characterization for maize inbred lines with low-phosphorus tolerance. Plant science, 172, 255, 2007.
[39] 张可炜 , 杨爱芳 , 张举仁 and 李坤朋. Proteomic analysis of roots growth and metabolic changes under phosphorus deficit in maize (Zea mays L.) plants. Proteomics, 7, 1501, 2007.
[40] 张举仁 and 马海珍. ZmbZIP4 Contributes to Stress Resistance in Maize by Regulating ABA Synthesis and Root Development. plant physiology, 178, 753, 2018.
[41] 张举仁 , 张可炜 and 宋玖玲. Co-expression of ApGSMT2g and ApDMT2g in cotton enhances salt tolerance and increases seed cotton yield in saline fields. Plant science, 274, 369, 2018.
[42] 刘昌彬 , 李坤朋 , 张举仁 and 张可炜. Expression of the Thellungiella halophila vacuolar H+-pyrophosphatase gene (TsVP) in cotton improves salinity tolerance and increases seed cotton yield in a saline field. Euphytica, 2016.
[43] 彭正华 , 张举仁 and 李朝霞. Enhancing auxin accumulation in maize root tips improves root growth and dwarfs plant height. PLANT BIOTECHNOLOGY JOURNAL, 16, 86, 2018.
[44] 张可炜 , 杨爱芳 , 张举仁 and 李坤朋. Comparative proteome analyses of phosphorus responses in maize (Zea mays L.) roots of wild-type and a low-P-tolerant mutant reveal root characteristics associated with phosphorus efficiency. The Plant Journal, 55, 927, 2008.
[45] 李坤朋 , 张举仁 and 张可炜. Physiological and comparative proteome analyses reveal low-phosphate tolerance . BMC Plant Biology, 2016.
共64条 3/5
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