A novel ABA functional analogue B2 enhances drought tolerance in wheat

被引:0
|
作者
Yuyi Zhou
Rui He
Yuling Guo
Keke Liu
Guanmin Huang
Chuanxi Peng
Yiguo Liu
Mingcai Zhang
Zhaohu Li
Liusheng Duan
机构
[1] China Agricultural University,State Key Laboratory of Plant Physiology and Biochemistry, Engineering Research Center of Plant Growth Regulator, Ministry of Education & College of Agronomy and Biotechnology
[2] Qingdao Agricultural University,College of Agronomy
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Drought stress negatively affects wheat growth and yield. Application of drought agent is an effective way to improve crop drought tolerance, therefore increasing crop yield. Based on the structure of abscisic acid (ABA), Pyrabactin and coronatine (COR), we designed the target compound B2. To investigate the function of B2 in alleviating drought stress on wheat, the drought-resistant variety ND212 and drought-sensitive variety LX99 were used under hydroponic conditions. The results showed that B2 had a similar function with ABA, especially 0.01 μmol·L−1 B2. Under drought stress conditions, 0.01 μmol·L−1 B2 increased the water content of wheat, enhanced the osmotic adjustment ability of leaves, and reduced the toxicity of reactive oxygen species on cells. What’s more, 0.01 μmol·L−1 B2 improved the expression level of ABA-responsive genes TaSnRK2.4 and TaMYB3R1. It also improved the expression level of drought-responsive genes TaSRHP and TaERF3. Taken together, B2 enhanced drought tolerance in wheat by activating ABA signaling pathway.
引用
收藏
相关论文
共 50 条
  • [1] A novel ABA functional analogue B2 enhances drought tolerance in wheat
    Zhou, Yuyi
    He, Rui
    Guo, Yuling
    Liu, Keke
    Huang, Guanmin
    Peng, Chuanxi
    Liu, Yiguo
    Zhang, Mingcai
    Li, Zhaohu
    Duan, Liusheng
    SCIENTIFIC REPORTS, 2019, 9 (1)
  • [2] A NOVEL ABA FUNCTIONAL ANALOGUE B2 ENHANCES SALINITY TOLERANCE IN WHEAT
    Gaber, A.
    Feng, T.
    Wang, X.
    Huang, G.
    Guo, Y.
    Zhang, M.
    Li, Z.
    Zhou, Y.
    Duan, L.
    APPLIED ECOLOGY AND ENVIRONMENTAL RESEARCH, 2020, 18 (05): : 7139 - 7157
  • [3] An ABA Functional Analogue B2 Enhanced Salt Tolerance by Inducing the Root Elongation and Reducing Peroxidation Damage in Maize Seedlings
    Geng, Shiying
    Ren, Zhaobin
    Liang, Lijun
    Zhang, Yumei
    Li, Zhaohu
    Zhou, Yuyi
    Duan, Liusheng
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2021, 22 (23)
  • [4] A novel wheat ASR gene, TaASR2D, enhances drought tolerance in Brachypodium distachyon
    Yoon, Jin Seok
    Kim, Jae Yoon
    Kim, Dae Yeon
    Seo, Yong Weon
    PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2021, 159 : 400 - 414
  • [5] Vitamin B2 (riboflavin) increases drought tolerance of Agaricus bisporus
    Guhr, Alexander
    Horn, Marcus A.
    Weig, Alfons R.
    MYCOLOGIA, 2017, 109 (06) : 860 - 873
  • [6] ABA regulation of post-germination desiccation tolerance in wheat cultivars contrasting in drought tolerance
    Kour, Satinder
    Zhawar, Vikramjit K.
    ANAIS DA ACADEMIA BRASILEIRA DE CIENCIAS, 2018, 90 (02): : 1493 - 1501
  • [7] A novel rice calmodulin-like gene, OsMSR2, enhances drought and salt tolerance and increases ABA sensitivity in Arabidopsis
    Guo-Yun Xu
    Pedro S. C. F. Rocha
    Man-Ling Wang
    Meng-Liang Xu
    Yan-Chun Cui
    Luo-Ye Li
    Yu-Xing Zhu
    Xinjie Xia
    Planta, 2011, 234 : 47 - 59
  • [8] A novel rice calmodulin-like gene, OsMSR2, enhances drought and salt tolerance and increases ABA sensitivity in Arabidopsis
    Xu, Guo-Yun
    Rocha, Pedro S. C. F.
    Wang, Man-Ling
    Xu, Meng-Liang
    Cui, Yan-Chun
    Li, Luo-Ye
    Zhu, Yu-Xing
    Xia, Xinjie
    PLANTA, 2011, 234 (01) : 47 - 59
  • [9] Molecular and Functional Characterization of a Wheat B2 Protein Imparting Adverse Temperature Tolerance and Influencing Plant Growth
    Singh, Akanksha
    Khurana, Paramjit
    FRONTIERS IN PLANT SCIENCE, 2016, 7
  • [10] TaFDL2-1A confers drought stress tolerance by promoting ABA biosynthesis, ABA responses, and ROS scavenging in transgenic wheat
    Wang, Bingxin
    Li, Liqun
    Liu, Mingliu
    Peng, De
    Wei, Aosong
    Hou, Beiyuan
    Lei, Yanhong
    Li, Xuejun
    PLANT JOURNAL, 2022, 112 (03): : 722 - 737