数字农科院2.0

Jasmonate perception: Ligand-receptor interaction, regulation, and evolution

文献类型: 外文期刊

作者: Hu, Shuai;Yu, Kaiming;Yan, Jianbin;Shan, Xiaoyi;Xie, Daoxin

作者机构:

关键词: jasmonate;COI1;hormone perception;ligand-receptor interaction;ligand-receptor binding tech-niques;evolution

期刊名称: MOLECULAR PLANT

ISSN: 1674-2052

年卷期: 2023 年 16 卷 1 期

页码:

收录情况: SCIE(2023版) ; ; CSCD(2023-2024年度) ; ; 科技核心(2023版)

摘要: Phytohormones integrate external environmental and developmental signals with internal cellular responses for plant survival and multiplication in changing surroundings. Jasmonate (JA), which might originate from prokaryotes and benefit plant terrestrial adaptation, is a vital phytohormone that regulates diverse developmental processes and defense responses against various environmental stresses. In this review, we first provide an overview of ligand-receptor binding techniques used for the characterization of phytohormone-receptor interactions, then introduce the identification of the receptor COI1 and active JA molecules, and finally summarize recent advances on the regulation of JA perception and its evolution.

分类号:

  • 相关文献

[1]The F-box protein COI1 functions upstream of MYB305 to regulate primary carbohydrate metabolism in tobacco (Nicotiana tabacum L. cv. TN90). Wang, Wenjing,Niu, Haixia,Zhang, Hongbo,Liu, Guanshan,Timko, Michael P.. 2014

[2]烟草茉莉素信号途径相关基因. 王文静,陈德鑫,张洁. 2016

[3]拟南芥ASK1与COI1形成蛋白复合体并调控雄性不育. 戴良英,李栒,罗宽,官春云,徐领会,黄大昉. 2002

[4]ASK1 physically interacts with COI1 and is required for male fertility in Arabidopsis. Dai, LY,Xu, LH,Huang, DF,Li, X,Luo, K,Guan, CY. 2002

[5]Genome-wide identification and comprehensive analysis of the COI1 gene family in Medicago sativa. 陈方淇,王露然,贾瑞芳,赵君,林克剑,赵清,陈正强,张园园. 2025

[6]Jasmonate-responsive transcription factors regulating plant secondary metabolism. Zhou, Meiliang,Zhou, Meiliang,Memelink, Johan.

[7]Alternative splicing of basic chitinase gene PR3b in the low-nicotine mutants of Nicotiana tabacum L. cv. Burley 21. Ma, Haoran,Wang, Wenjing,Zhang, Dingyu,Ding, Yongqiang,Zhang, Hongbo,Ma, Haoran,Wang, Feng,Yin, Guoying,Zhang, Dingyu,Ding, Yongqiang,Timko, Michael P..

[8]MdMYB9 and MdMYB11 are Involved in the Regulation of the JA-Induced Biosynthesis of Anthocyanin and Proanthocyanidin in Apples. An, Xiu-Hong,Tian, Yi,Chen, Ke-Qin,Liu, Xiao-Juan,Liu, Dan-Dan,Xie, Xing-Bin,Hao, Yu-Jin,An, Xiu-Hong,Tian, Yi,Chen, Ke-Qin,Liu, Xiao-Juan,Liu, Dan-Dan,Xie, Xing-Bin,Hao, Yu-Jin,An, Xiu-Hong,Tian, Yi,Chen, Ke-Qin,Liu, Xiao-Juan,Liu, Dan-Dan,Xie, Xing-Bin,Hao, Yu-Jin,An, Xiu-Hong,Tian, Yi,Cheng, Cun-Gang,Cong, Pei-Hua.

[9]Molecular regulation of terpenoid indole alkaloids pathway in the medicinal plant, Catharanthus roseus. Zhou, Mei-Liang,Wu, Yan-Min,Tang, Yi-Xiong,Zhou, Mei-Liang,Shao, Ji-Rong,Hou, Hong-Li,Zhu, Xue-Mei. 2010

[10]Molecular regulation of terpenoid indole alkaloids pathway in the medicinal plant, Catharanthus roseus. Zhou, Mei-Liang,Shao, Ji-Rong,Zhou, Mei-Liang,Wu, Yan-Min,Tang, Yi-Xiong,Hou, Hong-Li,Zhu, Xue-Mei. 2011

[11]An Arabidopsis mutant cex1 exhibits constant accumulation of jasmonate-regulated ArVSP, Thi2.1 and PDF1.2. Xu, LH,Liu, FQ,Wang, ZL,Peng, W,Huang, RF,Huang, DF,Xie, DX. 2001

[12]Identification of JAZ1-MYC2 Complex in Lotus corniculatus. Zhou, Meiliang,Sun, Zhanmin,Li, Jinbo,Wang, Dan,Tang, Yixiong,Wu, Yanmin,Zhou, Meiliang,Wu, Yanmin.

[13]The ethylene-, jasmonate-, abscisic acid- and NaCl-responsive tomato transcription factor JERF1 modulates expression of GCC box-containing genes and salt tolerance in tobacco. Zhang, HW,Huang, ZJ,Xie, BY,Chen, Q,Tian, X,Zhang, XL,Zhang, HB,Lu, XY,Huang, DF,Huang, RF. 2004

[14]The maize transcription factor EREB58 mediates the jasmonate-induced production of sesquiterpene volatiles. Wang, Hai,Chen, Zhongliang,Li, Xiuying,Zhu, Li,Huang, Dafang,Lang, Zhihong,Li, Shengyan,Yu, Jingjuan,Li, Fengqi,Wang, Guirong.

[15]Jasmonate-based warfare between the pathogenic intruder and host plant: who wins?. Li, Rui,Yang, Yongfang,Lou, Hao,Wang, Weicheng,Yan, Jianbin,Shan, Xiaoyi,Xie, Daoxin. 2022

[16]The Jasmine (Jasminum sambac) Genome Provides Insight into the Biosynthesis of Flower Fragrances and Jasmonates. Chen, Gang,Mostafa, Salma,Lu, Zhaogeng,Du, Ran,Cui, Jiawen,Wang, Yun,Liao, Qinggang,Lu, Jinkai,Mao, Xinyu,Chang, Bang,Gan, Quan,Wang, Li,Jia, Zhichao,Yang, Xiulian,Zhu, Yingfang,Yan, Jianbin,Jin, Biao. 2023

[17]Revealing the Roles of the JAZ Family in Defense Signaling and the Agarwood Formation Process in Aquilaria sinensis. Yimian Ma,Jiadong Ran,Guoqiong Li,Mengchen Wang,Chengmin Yang,Xin Wen,Xin Geng,Liping Zhang,Yuan Li,Zheng Zhang. 2023

[18]Insights into Gene Regulation of Jasmonate-Induced Whole-Plant Senescence of Tobacco under Non-Starvation Conditions. Chunkai Wang,Yongqiang Ding,Wenjing Wang,Xue Zhao,Yanhua Liu,Michael P. Timko,Zhongfeng Zhang,Hongbo Zhang. 2022

[19]Molecular Dissection of the Gene OsGA2ox8 Conferring Osmotic Stress Tolerance in Rice. Yinxiao Wang,Fengping Du,Juan Wang,Yingbo Li,Yue Zhang,Xiuqin Zhao,Tianqing Zheng,Zhikang Li,Jianlong Xu,Wensheng Wang,Binying Fu. 2021

[20]The Cytosolic Acetoacetyl-CoA Thiolase TaAACT1 Is Required for Defense against Fusarium pseudograminearum in Wheat. Feng Xiong,Xiuliang Zhu,Changsha Luo,Zhixiang Liu,Zengyan Zhang. 2023

作者其他论文 更多>>