THE ROLE OF R2R3MYB TRANSCRIPTION FACTORS IN PLANT STRESS TOLERANCE

文献类型: 外文期刊

第一作者: Xie, R. J.

作者: Xie, R. J.;Deng, L.;He, S. L.;Yi, S. L.;Zheng, L.

作者机构:

关键词: R2R3MYB;transcription factor;stress signaling;biologic function;target gene

期刊名称:JOURNAL OF ANIMAL AND PLANT SCIENCES ( 影响因子:0.49; 五年影响因子:0.686 )

ISSN: 1018-7081

年卷期: 2014 年 24 卷 6 期

页码:

收录情况: SCI

摘要: The plant-specific R2R3MYB proteins constitute a largest subfamily in MYB transcription factors and are widely involved in growth and developmental processes. In spite of their highly conserved DNA-binding domains, the biologic functions are strikingly varied across plant species. Recently, their roles in making plant more survivable under adverse environmental conditions including cold, drought, pathogen, salinity have received considerable attention. Nowadays, the R2R3MYBs in response to stresses, here termed as stress-responsive R2R3MYBs (SR-R2R3MYBs), were continuously identified from different plant species. This review mainly focused on the recent progresses in SR-R2R3MYBs gene structure, biological functions and their expression pattern under varied stresses. Additionally, we have also discussed the genetic relationship of SR-R2R3MYB proteins, and their role in integrating a diversity of pathways including metabolic, SOS, signal transduction pathways etc, with an aim to use them for crop improvement via transgenic technologies.

分类号:

  • 相关文献

[1]ER-localized adenine nucleotide transporter ER-ANT1: an integrator of energy and stress signaling in rice. Zhang, Xiangqian,Ke, Shanwen,Zhu, Haitao,Liu, Fang,Zhang, Zemin,Peng, Xinxiang,Zeng, Ruizhen,Liu, Ziqiang,Zhang, Guiquan,Zheng, Xu,Guo, Lin,Hou, Pei,Wu, Suowei,Song, Meifang,Yang, Jianping,Zhang, Xiangqian.

[2]Protein-DNA interactions in the promoter region of the gene encoding diapause hormone and pheromone biosynthesis activating neuropeptide of the cotton bollworm, Helicoverpa armigera. Hong, B,Zhang, ZF,Tang, SM,Yi, YZ,Zhang, TY,Xu, WH.

[3]High-throughput sequencing discovery of conserved and novel microRNAs in Chinese cabbage (Brassica rapa L. ssp pekinensis). Wang, Fengde,Li, Libin,Liu, Lifeng,Li, Huayin,Zhang, Yihui,Gao, Jianwei,Yao, Yingyin,Ni, Zhongfu. 2012

[4]Difference in miRNA expression profiles between two cotton cultivars with distinct salt sensitivity. Zujun Yin,Yan Li,Jiwen Yu,Yudong Liu,Chunhe Li,Xiulan Han,Fafu Shen.

[5]A Novel miRNA Sponge Form Efficiently Inhibits the Activity ofmiR393 and Enhances the Salt Tolerance and ABA Insensitivity in Arabidopsis thaliana. Long, Ruicai,Li, Xiao,Gao, Yanli,Zhang, Tiejun,Kang, Junmei,Cong, Lili,Yang, Qingchuan,Li, Mingna,Sun, Yan,Wang, Tenghua.

[6]Characterization and profiling of MicroRNAs in posterior silk gland of the silkworm (Bombyx mori). Song, Fei,Wang, Xin,Chen, Chen,Fan, Yangyang,Tang, Shunming,Huang, Jinshan,Guo, Xijie,Shen, Xingjia,Tang, Shunming,Huang, Jinshan,Guo, Xijie,Shen, Xingjia.

[7]Identification of novel and salt-responsive miRNAs to explore miRNA-mediated regulatory network of salt stress response in radish (Raphanus sativus L.). Sun, Xiaochuan,Xu, Liang,Wang, Yan,Yu, Rugang,Luo, Xiaobo,Gong, Yiqin,Wang, Ronghua,Limera, Cecilia,Liu, Liwang,Sun, Xiaochuan,Xu, Liang,Luo, Xiaobo,Zhu, Xianwen,Zhang, Keyun. 2015

[8]NF-kappa B target microRNAs and their target genes in TNF alpha-stimulated HeLa Cells. Zhou, Fei,Wang, Wei,Xing, Yujun,Wang, Tingting,Xu, Xinhui,Wang, Jinke,Xing, Yujun. 2014

[9]Potential functions of microRNAs in starch metabolism and development revealed by miRNA transcriptome profiling of cassava cultivars and their wild progenitor. Chen, Xin,Xia, Zhiqiang,Zhang, Hefang,Zeng, Changying,Lu, Cheng,Wang, Wenquan,Chen, Xin,Xia, Zhiqiang,Zhang, Hefang,Zeng, Changying,Lu, Cheng,Wang, Wenquan,Xia, Jing,Zhang, Weixiong,Xia, Jing,Zhang, Weixiong. 2015

[10]Characterization of miRNAs involved in response to poly(I: C) in porcine airway epithelial cells. Wang, L.,Wang, J. K.,Han, L. X.,Zhuo, J. S.,Du, X.,Yang, X. Q.,Wang, L.,Liu, D..

[11]MiR164 is involved in delaying senescence of strawberry (Fragaria ananassa) fruit by negatively regulating NAC transcription factor genes under low temperature. Li, J.,Lai, T.,Song, H.,Xu, X.,Li, J..

[12]Computational identification and characteristics of novel microRNAs from the silkworm (Bombyx mori L.). Huang, Yong,Tang, Shun Ming,Wang, Li Gang,Shen, Xing Jia,Zou, Quan,Huang, Yong,Tang, Shun Ming,Wang, Li Gang,Shen, Xing Jia. 2010

[13]Identification of miRNAs differentially expressed in Fusarium wilt-resistant and susceptible banana varieties. Song, Shun,Huang, Dongmei,Xu, Yi,Jin, Zhiqiang,Chen, Xin,Zeng, Huicai,Xu, Biyu,Wang, Wenquan,Hu, Xiaowen,Song, Shun,Huang, Dongmei,Xu, Yi,Jin, Zhiqiang,Song, Shun,Huang, Dongmei,Xu, Yi,Jin, Zhiqiang.

[14]Genome-wide identification of microRNAs and their targets in wild type and phyB mutant provides a key link between microRNAs and the phyB-mediated light signaling pathway in rice. Sun, Wei,wu, Xiu,Xie, Xianzhi,Xu, Xiao Hui,Lu, Xingbo,Sun, Hongwei,Wang, Yong. 2015

[15]The abiotic stress-responsive NAC transcription factor SlNAC11 is involved in drought and salt response in tomato (Solanum lycopersicum L.). Lingling Wang,Chen, Guoping,Zongli Hu,Mingku Zhu,Zhiguo Zhu,Jingtao Hu,Ghulam Qanmber,Guoping Chen.

[16]Identification of candidate thermotolerance genes during early seedling stage in upland cotton (Gossypium hirsutum L.) revealed by comparative transcriptome analysis. Peng, Zhen,Cao, Moju,Xu, Jie,Lu, Yanli,Peng, Zhen,He, Shoupu,Gong, Wenfang,Sun, Junling,Pan, Zhaoe,Du, Xiongming,Sun, Gaofei.

[17]Characterization of the global transcriptome for cotton (Gossypium hirsutum L.) anther and development of SSR marker. Xianwen Zhang ,Zhenwei Ye,TiankangWang,Hairong Xiong,Xiaoling Yuan,Zhigang Zhang,Youlu Yuan,Zhi Liu.

[18]RNA-seq analysis of unintended effects in transgenic wheat overexpressing the transcription factor GmDREB1. Jiang, Qiyan,Niu, Fengjuan,Sun, Xianjun,Hu, Zheng,Li, Xinhai,Ma, Youzhi,Zhang, Hui. 2017

[19]Genome-wide analysis of maize NLP transcription factor family revealed the roles in nitrogen response. Ge, Min,Jiang, Lu,Wang, Yuancong,Lv, Yuanda,Zhou, Ling,Liang, Shuaiqiang,Bao, Huabin,Zhao, Han,Liu, Yuhe. 2018

[20]De Novo Transcriptome Sequencing and the Hypothetical Cold Response Mode of Saussurea involucrata in Extreme Cold Environments. Li, Jin,Liu, Hailiang,Xia, Wenwen,Mu, Jianqiang,Feng, Yujie,Liu, Ruina,Wang, Aiying,Lin, Zhongping,Zhu, Jianbo,Chen, Xianfeng,Liu, Hailiang,Yan, Panyao,Chen, Xianfeng,Lin, Zhongping,Guo, Yong. 2017

作者其他论文 更多>>