Constitutive expression of a meiotic recombination protein gene homolog, OsTOP6A1, from rice confers abiotic stress tolerance in transgenic Arabidopsis plants

被引:0
|
作者
Mukesh Jain
Akhilesh K. Tyagi
Jitendra P. Khurana
机构
[1] University of Delhi South Campus,Interdisciplinary Centre for Plant Genomics and Department of Plant Molecular Biology
来源
Plant Cell Reports | 2008年 / 27卷
关键词
Abiotic stress; Gene expression; Rice (; ); Topoisomerase 6 subunit A1; Transgenic ;
D O I
暂无
中图分类号
学科分类号
摘要
Plant productivity is greatly influenced by various environmental stresses, such as high salinity and drought. Earlier, we reported the isolation of topoisomerase 6 homologs from rice and showed that over expression of OsTOP6A3 and OsTOP6B confers abiotic stress tolerance in transgenic Arabidopsis plants. In this study, we have assessed the function of nuclear-localized topoisomerase 6 subunit A homolog, OsTOP6A1, in transgenic Arabidopsis plants. The over expression of OsTOP6A1 in transgenic Arabidopsis plants driven by cauliflower mosaic virus-35S promoter resulted in pleiotropic effects on plant growth and development. The transgenic Arabidopsis plants showed reduced sensitivity to stress hormone, abscisic acid (ABA), and tolerance to high salinity and dehydration at the seed germination; seedling and adult stages as reflected by the percentage of germination, fresh weight of seedlings and leaf senescence assay, respectively. Concomitantly, the expression of many stress-responsive genes was enhanced under various stress conditions in transgenic Arabidopsis plants. Moreover, microarray analysis revealed that the expression of a large number of genes involved in various processes of plant growth and development and stress responses was altered in transgenic plants. Although AtSPO11-1, the homolog of OsTOP6A1 in Arabidopsis, has been implicated in meiotic recombination; the present study demonstrates possible additional role of OsTOP6A1 and provides an effective tool for engineering crop plants for tolerance to different environmental stresses.
引用
收藏
页码:767 / 778
页数:11
相关论文
共 50 条
  • [21] Heterologous expression of the metallothionein PpMT2 gene from Physcomitrella patens confers enhanced tolerance to heavy metal stress on transgenic Arabidopsis plants
    Yue Liu
    Tao Kang
    Jie-shan Cheng
    Yan-jun Yi
    Jun-jie Han
    Hai-long Cheng
    Qi Li
    Na Tang
    Mei-xia Liang
    Plant Growth Regulation, 2020, 90 : 63 - 72
  • [22] Heterologous expression of the metallothionein PpMT2 gene from Physcomitrella patens confers enhanced tolerance to heavy metal stress on transgenic Arabidopsis plants
    Liu, Yue
    Kang, Tao
    Cheng, Jie-shan
    Yi, Yan-jun
    Han, Jun-jie
    Cheng, Hai-long
    Li, Qi
    Tang, Na
    Liang, Mei-xia
    PLANT GROWTH REGULATION, 2020, 90 (01) : 63 - 72
  • [23] Heterologous expression of a chloroplast outer envelope protein from Suaeda salsa confers oxidative stress tolerance and induces chloroplast aggregation in transgenic Arabidopsis plants
    Wang, Fang
    Yang, Chun-Lin
    Wang, Li-Li
    Zhong, Nai-Qin
    Wu, Xiao-Min
    Han, Li-Bo
    Xia, Gui-Xian
    PLANT CELL AND ENVIRONMENT, 2012, 35 (03): : 588 - 600
  • [24] Constitutive over-expression of rice chymotrypsin protease inhibitor gene OCPI2 results in enhanced growth, salinity and osmotic stress tolerance of the transgenic Arabidopsis plants
    Tiwari, Lalit Dev
    Mittal, Dheeraj
    Mishra, Ratnesh Chandra
    Grover, Anil
    PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2015, 92 : 48 - 55
  • [25] Medicago truncatula stress associated protein 1 gene (MtSAP1) overexpression confers tolerance to abiotic stress and impacts proline accumulation in transgenic tobacco
    Charrier, Aurelie
    Lelievre, Eric
    Limami, Anis M.
    Planchet, Elisabeth
    JOURNAL OF PLANT PHYSIOLOGY, 2013, 170 (09) : 874 - 877
  • [26] OsLEA3, a late embryogenesis abundant protein gene from rice, confers tolerance to water deficit and salt stress to transgenic rice
    T. Zh. Hu
    Russian Journal of Plant Physiology, 2008, 55 : 530 - 537
  • [27] Over-expression of a glutamate dehydrogenase gene, MgGDH, from Magnaporthe grisea confers tolerance to dehydration stress in transgenic rice
    Yanbiao Zhou
    Caisheng Zhang
    Jianzhong Lin
    Yuanzhu Yang
    Yuchong Peng
    Dongying Tang
    Xiaoying Zhao
    Yonghua Zhu
    Xuanming Liu
    Planta, 2015, 241 : 727 - 740
  • [28] Over-expression of a glutamate dehydrogenase gene, MgGDH, from Magnaporthe grisea confers tolerance to dehydration stress in transgenic rice
    Zhou, Yanbiao
    Zhang, Caisheng
    Lin, Jianzhong
    Yang, Yuanzhu
    Peng, Yuchong
    Tang, Dongying
    Zhao, Xiaoying
    Zhu, Yonghua
    Liu, Xuanming
    PLANTA, 2015, 241 (03) : 727 - 740
  • [29] OsLEA3, a late embryogenesis abundant protein gene from rice, confers tolerance to water deficit and salt stress to transgenic rice
    Hu, T. Zh.
    RUSSIAN JOURNAL OF PLANT PHYSIOLOGY, 2008, 55 (04) : 530 - 537
  • [30] Constitutive expression of GmF6′H1 from soybean improves salt tolerance in transgenic Arabidopsis
    Duan, Chunli
    Mao, Tingting
    Sun, Shenqing
    Guo, Xianjun
    Guo, Laixian
    Huang, Lilong
    Wang, Zixuan
    Zhang, Yan
    Li, Miao
    Sheng, Yuting
    Yi, Yanjun
    Liu, Jiayao
    Zhang, Hongxia
    Zhang, Juan
    PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2019, 141 : 446 - 455