数字农科院2.0

Expansin Gene Taexpa2 Positively Regulates Drought Tolerance In Transgenic Wheat (Triticum Aestivum L.)

文献类型: 外文期刊

作者: Yang, JJ; Zhang, GQ; An, J; Li, QX; Chen, YH; Zhao, XY; Wu, JJ; Wang, Y; Hao, QQ; Wang, WQ; Wang, W

作者机构:

关键词: Wheat; Expansin; Drought Tolerance; Taexpa2; Antioxidant Capacity; Lateral Root

期刊名称: PLANT SCIENCE

ISSN: 0168-9452

年卷期: 2020 年 298 卷

页码:

收录情况: JCR(2021版)

摘要: Expansins loosen plant cell walls and are involved in cell enlargement and various abiotic stresses. In previous studies, we cloned the expansin gene TaEXPA2 from the wheat cultivar HF9703. Here, we studied its function and regulation in wheat drought stress tolerance. The results indicated that TaEXPA2-overexpressing wheat plants (OE) exhibited drought tolerant phenotypes, whereas down-regulation of TaEXPA2 by RNA interference (RNAi) resulted in elevated drought sensitivity, as measured by survival rate, photosynthetic rate and water containing ability under drought stress. Overexpression of TaEXPA2 enhanced the antioxidant capacity in wheat plants, via elevation of antioxidant enzyme activity and the increase of the transcripts of some ROS scavenging enzyme-related genes. Further investigation revealed that TaEXPA2 positively influenced lateral root formation under drought conditions. A MYB transcription factor of wheat named TaMPS activates TaEXPA2 expression directly by binding to its promoter. Overexpression of TaMPS in Arabidopsis conferred drought tolerance associated with improved lateral root number, and the close homolog genes of TaEXPA2 were up-regulated in Arabidopsis roots overexpressing TaMPS, which suggest that TaMPS may function as one of the regulator of TaEXPA2 gene expression in the root lateral development under drought stress. These findings suggest that TaEXPA2 positively regulates drought stress tolerance in wheat.

分类号:

  • 相关文献

[1]充分发掘保护利用生物多样性;促进农业可持续发展——《生物多样性与小麦改良》简评. 李祥洲. 1997

[2]Tawrky51 Promotes Lateral Root Formation T.hrough Negative Regulation Of E thylene Biosynthesis In Wheat (Triticum Aestivum L.). Ni,Zhongfu,Meng, Fei,Xing,Mingming,Zheng,Mei,Peng,Huiru,Sun, Qixin,Yao,Yingyin,Liu,Xingbei,Wu, Hualing,Wang,Rui,Hu,Zhaorong. 2018

[3]Overexpression Of Tacomt Improves Melatonin P.roduction And Enhances Drought T olerance In Transgenic Arabidopsis. Yang, Wen-Jing,Chen, Jun,Yang, Wen-Jing,Zhou, Yong-Bin,Du, Yong-Tao,Xu, Zhao-Shi,Min, Dong-Hong,Chen, Ming,Ma, You-Zhi. 2019

[4]Cloning And Molecular Characterization Of Triticum Aestivum Ornithine Amino Transferase (Taoat) Encoding Genes. Anwar, A, She, MY, Wang, K, Ye, XG. 2020

[5]Nbexpa1, An Alpha-Expansin, Is Plasmodesmata-Specific A.nd A Novel Host F actor For Potyviral Infection. Park, SH, Li, FF, Renaud, J, Shen, WT, Li, YZ, Guo, LH, Cui, HG, Sumarah, M, Wang, AM. 2017

[6]30个小麦新品系抗条锈病基因分析及成株期抗病性评价. 冯晶,蔺瑞明,林凤,徐世昌. 2013

[7]小麦抗菌蛋白编码基因BS108的克隆及其转基因抗病小麦的创制. 李钊,周淼平,张增艳,庄洪涛,徐惠君,杜丽璞,叶兴国. 2010

[8]渗透调节物质及有机附加物对小麦体细胞胚发生影响的研究(英文). 孙朝霞,侯思宇,王玉国. 2008

[9]普通小麦品种辐射敏感性模糊聚类分析<英文>. 冯志杰,王琳清. 1992

[10]基因枪转化小麦主要轰击参数的优化. 闵东红,何莎,张彦,夏兰琴. 2013

[11]小麦矮缩病毒分子群体遗传结构研究. 刘艳,王锡锋,周广和. 2008

[12]Auxin Is Involved In Lateral R.oot Formation Induced By D rought Stress In Tobacco Seedlings. Song, Wenjing,Meng, Lin,Yang, Yinju,Wang, Shusheng,Zhao, Yang,Zou, Fuyu,Gu, Pengyuan,Zhang, Yali,Wang, Chengdong. 2018

[13]Mepiquat Chloride Promotes Cotton Lateral Root Formation By Modulating Plant Hormone Homeostasis. Li, Zhaohu,Wu, Jie,Li, Fangjun,Tian, Xiaoli,Wu, Qian,Wang, Ning,Wu, Qian,Wang, Baomin,Du, Mingwei. 2019

[14]Differential Response Of First-Order Lateral R.oot Elongation To Low P otassium Involves Nitric Oxide In Two Tobacco Cultivars. Song, WJ, Xue, R, Song, Y, Bi, Y, Liang, ZH, Meng, L, Dong, CX, Wang, CD, Liu, GL, Dong, JX, Zhang, YL. 2018

[15]Differential Responses Of Root Growth To Nutrition With Different Ammonium/Nitrate Ratios Involve Auxin Distribution In Two Tobacco Cultivars. Meng, L, Dong, JX, Wang, SS, Song, K, Ling, AF, Yang, JG, Xiao, ZX, Li, W, Song, WJ, Liang, HB. 2019

[16]Volatile compounds from beneficial rhizobacteria Bacillus spp. promote periodic lateral root development in Arabidopsis. Yucong Li,Jiahui Shao,Yuanming Xie,Letian Jia,Yansong Fu,Zhihui Xu,Nan Zhang,Haichao Feng,Weibing Xun,Yunpeng Liu,Qirong Shen,Wei Xuan,Ruifu Zhang. 2021

[17]Entomopathogen Metarhizium Anisopliae Promotes The E.arly Development Of Peanut R oot. Wang, Miao-Miao,Wang, Guang-Jun,Li, Shan-Lin,Zhang, Ze-Hua,Nong, Xiang-Qun,Liu, Bin,Cao, Guang-Chun,Liu, Shao-Fang,Cao, Guang-Chun,Wang, Guang-Jun,Nong, Xiang-Qun,Zhang, Ze-Hua,Wang, Miao-Miao,Li, Shan-Lin,Liu, Bin,Liu, Shao-Fang. 2017

[18]Signalling Overlaps Between Nitrate And Auxin In Regulation Of The Root System Architecture: Insights From The Arabidopsis Thaliana. Asim, M, Ullah, Z, Oluwaseun, A, Wang, Q, Liu, HB. 2020

[19]Development Of Broccoli By-Products As C.arriers For Delivering Egcg. Ying, Dan:Yang,Shi, Meng,Ye, Jian:Hui,Hlaing, Mya Myintzu,Augustin, Mary Ann,Sanguansri, Luz. 2019

[20]Enzymatic Synthesis And Antioxidant Activity O.f 1-Caffeoylglycerol Prepared From A lkyl Caffeates And Glycerol. Zhu, Chang-Tong,Zhu, Chang-Tong,Wang, Jun,Wang, Jun,Meng, Xiang-Yun,Wu, Fu-An,Wang, Jun,Wu, Fu-An,Wu, Guo-Hua,Xu, Yan,Wu, Guo-Hua,Meng, Xiang-Yun,Zhang, Dong-Yang,Wu, Guo-Hua,Xu, Yan,Zhang, Dong-Yang,Wu, Jin-Xian. 2018

作者其他论文 更多>>