Transcriptome analysis reveals potential roles of a barley ASR gene that confers stress tolerance in transgenic rice

被引:11
|
作者
Perez-Diaz, Jorge [1 ]
Ricardo Perez-Diaz, J. [1 ]
Medeiros, David B. [2 ]
Zuther, Ellen [3 ]
Hong, Chwan-Yang [4 ]
Nunes-Nesi, Adriano [2 ]
Hincha, Dirk K. [3 ]
Ruiz-Lara, Simon [1 ]
Casaretto, Jose A. [1 ,5 ]
机构
[1] Univ Talca, Inst Ciencias Biol, Talca, Chile
[2] Univ Fed Vicosa, Dept Biol Vegetal, BR-36570900 Vicosa, MG, Brazil
[3] Max Planck Inst Mol Plant Physiol, D-14476 Potsdam, Germany
[4] Natl Taiwan Univ, Dept Agr Chem, Taipei 10617, Taiwan
[5] Univ Guelph, Dept Mol & Cellular Biol, 50 Stone Rd East, Guelph, ON N1G 2W1, Canada
关键词
Arabidopsis thaliana; ASR; Drought; Hordeum vulgare; Oryza sativa; Stress; ABSCISIC-ACID; SIGNAL-TRANSDUCTION; WATER-DEFICIT; LEA PROTEINS; DNA-BINDING; CROSS-TALK; EXPRESSION; ARABIDOPSIS; DROUGHT; TOMATO;
D O I
10.1016/j.jplph.2019.05.005
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Control of gene expression and induction of cellular protection mechanisms are two important processes that plants employ to protect themselves against abiotic stresses. ABA-, stress, and ripening-induced (ASR) proteins have been identified to participate in such responses. Previous studies have proposed that these proteins can act as transcription factors and as molecular chaperones protecting transgenic plants against stresses; however a gene network regulated by ASRs has not been explored. To expand our knowledge on the function of these proteins in cereals, we present the functional characterization of a barley ASR gene. Expression of HvASR5 was almost ubiquitous in different organs and responded to ABA and to different stress treatments. When expressed ectopically, HvASR5 was able to confer drought and salt stress tolerance to Arabidopsis thaliana and to improve growth performance of rice plants under stress conditions. A transcriptomic analysis with two transgenic rice lines overexpressing HvASR5 helped to identify potential downstream targets and understand ASR-regulated cellular processes. HvASR5 up-regulated the expression of a distinct set of genes associated with stress responses, metabolic processes (particularly carbohydrate metabolism), as well as reproduction and development. These data, together with the confirmed nuclear and cytoplasmic localization of HvASR5, further support the hypothesis that HvASR5 can also carry out roles as molecular protector and transcriptional regulator.
引用
收藏
页码:29 / 39
页数:11
相关论文
共 50 条
  • [1] SiMYB19 from Foxtail Millet (Setaria italica) Confers Transgenic Rice Tolerance to High Salt Stress in the Field
    Xu, Chengjie
    Luo, Mingzhao
    Sun, Xianjun
    Yan, Jiji
    Shi, Huawei
    Yan, Huishu
    Yan, Rongyue
    Wang, Shuguang
    Tang, Wensi
    Zhou, Yongbin
    Wang, Chunxiao
    Xu, Zhaoshi
    Chen, Jun
    Ma, Youzhi
    Jiang, Qiyan
    Chen, Ming
    Sun, Daizhen
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2022, 23 (02)
  • [2] Ectopic Overexpression of Maize Heat Stress Transcription Factor ZmHsf05 Confers Drought Tolerance in Transgenic Rice
    Si, Weina
    Liang, Qizhi
    Chen, Li
    Song, Feiyang
    Chen, You
    Jiang, Haiyang
    GENES, 2021, 12 (10)
  • [3] Expression of ZmHDZ4, a Maize Homeodomain-Leucine Zipper I Gene, Confers Tolerance to Drought Stress in Transgenic Rice
    Wu, Jiandong
    Zhou, Wei
    Gong, Xuefeng
    Cheng, Beijiu
    PLANT MOLECULAR BIOLOGY REPORTER, 2016, 34 (04) : 845 - 853
  • [4] Constitutive expression of a grape aspartic protease gene in transgenic Arabidopsis confers osmotic stress tolerance
    Guo, Rongrong
    Zhao, Jiao
    Wang, Xianhang
    Guo, Chunlei
    Li, Zhi
    Wang, Yuejin
    Wang, Xiping
    PLANT CELL TISSUE AND ORGAN CULTURE, 2015, 121 (02) : 275 - 287
  • [5] TaASR1, a transcription factor gene in wheat, confers drought stress tolerance in transgenic tobacco
    Hu, Wei
    Huang, Chao
    Deng, Xiaomin
    Zhou, Shiyi
    Chen, Lihong
    Li, Yin
    Wang, Cheng
    Ma, Zhanbing
    Yuan, Qianqian
    Wang, Yan
    Cai, Rui
    Liang, Xiaoyu
    Yang, Guangxiao
    He, Guangyuan
    PLANT CELL AND ENVIRONMENT, 2013, 36 (08) : 1449 - 1464
  • [6] Comparative Transcriptome Analysis Reveals Potential Gene Modules Associated with Cold Tolerance in Sugarcane (Saccharum officinarum L.)
    Huang, Xing
    Liang, Yongsheng
    Zhang, Baoqing
    Song, Xiupeng
    Li, Yangrui
    Li, Changning
    Qin, Zhengqiang
    Li, Dewei
    Wei, Jiguang
    Wu, Jianming
    JOURNAL OF PLANT GROWTH REGULATION, 2022, 41 (07) : 2614 - 2628
  • [7] Thellungiella halophila ThPIP1 gene enhances the tolerance of the transgenic rice to salt stress
    Qiang Xiao-jing
    Yu Guo-hong
    Jiang Lin-lin
    Sun Lin-lin
    Zhang Shu-hui
    Li Wei
    Cheng Xian-guo
    JOURNAL OF INTEGRATIVE AGRICULTURE, 2015, 14 (10) : 1911 - 1922
  • [8] Overexpression of a Barley Aquaporin Gene, HvPIP2;5 Confers Salt and Osmotic Stress Tolerance in Yeast and Plants
    Alavilli, Hemasundar
    Awasthi, Jay Prakash
    Rout, Gyana R.
    Sahoo, Lingaraj
    Lee, Byeong-ha
    Panda, Sanjib Kumar
    FRONTIERS IN PLANT SCIENCE, 2016, 7
  • [9] Whole transcriptome analysis of transgenic barley with altered cytokinin homeostasis and increased tolerance to drought stress
    Vojta, Petr
    Kokas, Filip
    Husickova, Alexandra
    Gruz, Jiri
    Bergougnoux, Veronique
    Marchetti, Cintia F.
    Jiskrova, Eva
    Jezilova, Eliska
    Mik, Vaclav
    Ikeda, Yoshihisa
    Galuszka, Petr
    NEW BIOTECHNOLOGY, 2016, 33 (05) : 676 - 691
  • [10] Heterology expression of the sweet pepper CBF3 gene confers elevated tolerance to chilling stress in transgenic tobacco
    Yang, Sha
    Tang, Xian-Feng
    Ma, Na-Na
    Wang, Li-Yan
    Meng, Qing-Wei
    JOURNAL OF PLANT PHYSIOLOGY, 2011, 168 (15) : 1804 - 1812