The trihelix transcription factor OsGTγ-2 is involved adaption to salt stress in rice

被引:0
作者
Xiaoshuang Liu
Dechuan Wu
Tiaofeng Shan
Shanbin Xu
Ruiying Qin
Hao Li
Mahrous Negm
Dexiang Wu
Juan Li
机构
[1] Anhui Agricultural University,College of Agronomy
[2] Anhui Academy of Agricultural Science,Key Laboratory of Rice Genetics & Breeding of Anhui Province, Institute of Rice Research
[3] Agricultural Research Center,Rice Research Department, Field Crops Research Institute
来源
Plant Molecular Biology | 2020年 / 103卷
关键词
Rice; Salinity; Stress adaption; Transcriptional regulation; Transporter;
D O I
暂无
中图分类号
学科分类号
摘要
引用
收藏
页码:545 / 560
页数:15
相关论文
共 422 条
[1]  
Agarwal PK(2010)Transcription factors in plants and ABA dependent and independent abiotic stress signalling Biol Plant 54 201-212
[2]  
Jha B(2012)Identification andin silicocharacterization of soybean trihelix-GT and bHLH transcription factors involved in stress responses Genet Mol Biol 35 233-246
[3]  
Borges OM(2004)PETAL LOSS, a trihelix transcription factor gene, regulates perianth architecture in the Arabidopsis flower Development 131 4035-379
[4]  
Lauro BN(2014)Plant salt-tolerance mechanisms Trends Plant Sci 19 371-22168
[5]  
Graciela C(2009)Identification and characterization of Bph14, a gene conferring resistance to brown plant hopper in rice Proc Natl Acad Sci USA 106 22163-1624
[6]  
Carina TZA(2012)An efficient and high-throughput protocol for Agrobacterium-mediated transformation based on phosphomannose isomerase positive selection in Japonica rice (Oryza sativa L.) Plant Cell Rep 31 1611-62
[7]  
Beatriz WS(2016)Identification of a regulatory element responsible for salt induction of rice OsRAV2 through ex situ and in situ promoter analysis Plant Mol Biol 90 49-169
[8]  
Helena BZM(2010)Systematic analysis of GT factor family of rice reveals a novel subfamily involved in stress responses Mol Genet Genomics 283 157-159
[9]  
Márcia MP(2002)Abscisic acid signaling in seeds and seedlings Plant Cell 14 S15-509
[10]  
Brewer PB(2004)Function, intracellular localization and the importance in salt tolerance of a vacuolar Na(+)/H(+) antiporter from rice Plant Cell Physiol 45 146-71