Top hits in contemporary JAZ: An update on jasmonate signaling

被引:150
作者
Chung, Hoo Sun [1 ]
Niu, Yajie [2 ]
Browse, John [2 ]
Howe, Gregg A. [1 ]
机构
[1] Michigan State Univ, DOE Plant Res Lab, Dept Biochem & Mol Biol, E Lansing, MI 48824 USA
[2] Washington State Univ, Inst Biol Chem, Pullman, WA 99164 USA
基金
美国国家卫生研究院;
关键词
Jasmonate; COI1; JAZ; Ubiquitin; Alternative splicing; Protein-protein interaction; HELIX TRANSCRIPTION FACTOR; BOX PROTEIN TIR1; GENE-EXPRESSION; METHYL JASMONATE; REGULATED DEFENSE; PLANT-RESPONSES; ARABIDOPSIS-ZIM; AUXIN RESPONSE; MALE-STERILE; GENOME-WIDE;
D O I
10.1016/j.phytochem.2009.08.022
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The phytohormone jasmonate (JA) regulates a wide range of growth, developmental, and defense-related processes during the plant life cycle. Identification of the W family of proteins that repress JA responses has facilitated rapid progress in understanding how this lipid-derived hormone controls gene expression. Recent analysis of JAZ proteins has provided insight into the nature of the JA receptor, the chemical specificity of signal perception, and cross-talk between JA and other hormone response pathways. Functional diversification of JAZ proteins by alternative splicing, together with the ability of JAZ proteins to homo- and heterodimerize, provide mechanisms to enhance combinatorial diversity and versatility in gene regulation by JA. (c) 2009 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1547 / 1559
页数:13
相关论文
共 115 条
[1]   Arabidopsis AtMYC2 (bHLH) and AtMYB2 (MYB) function as transcriptional activators in abscisic acid signaling [J].
Abe, H ;
Urao, T ;
Ito, T ;
Seki, M ;
Shinozaki, K ;
Yamaguchi-Shinozaki, K .
PLANT CELL, 2003, 15 (01) :63-78
[2]   Role of Arabidopsis MYC and MYB homologs in drought- and abscisic acid-regulated gene expression [J].
Abe, H ;
YamaguchiShinozaki, K ;
Urao, T ;
Iwasaki, T ;
Hosokawa, D ;
Shinozaki, K .
PLANT CELL, 1997, 9 (10) :1859-1868
[3]   Genome-wide analyses of alternative splicing in plants: Opportunities and challenges [J].
Barbazuk, W. Brad ;
Fu, Yan ;
McGinnis, Karen M. .
GENOME RESEARCH, 2008, 18 (09) :1381-1392
[4]   Two methyl jasmonate-insensitive mutants show altered expression of AtVsp in response to methyl jasmonate and wounding [J].
Berger, S ;
Bell, E ;
Mullet, JE .
PLANT PHYSIOLOGY, 1996, 111 (02) :525-531
[5]   Structure-activity analyses reveal the existence of two separate groups of active octadecanoids in elicitation of the tendril-coiling response of Bryonia dioica Jacq. [J].
Blechert, S ;
Bockelmann, C ;
Füsslein, M ;
Von Schrader, T ;
Stelmach, B ;
Niesel, U ;
Weiler, EW .
PLANTA, 1999, 207 (03) :470-479
[6]   Conserved MYC transcription factors play a key role in jasmonate signaling both in tomato and Arabidopsis [J].
Boter, M ;
Ruíz-Rivero, O ;
Abdeen, A ;
Prat, S .
GENES & DEVELOPMENT, 2004, 18 (13) :1577-1591
[7]   New weapons and a rapid response against insect attack [J].
Browse, John ;
Howe, Gregg A. .
PLANT PHYSIOLOGY, 2008, 146 (03) :832-838
[8]   Jasmonate Passes Muster: A Receptor and Targets for the Defense Hormone [J].
Browse, John .
ANNUAL REVIEW OF PLANT BIOLOGY, 2009, 60 :183-205
[9]   Phytochrome nuclear body: an emerging model to study interphase nuclear dynamics and signaling [J].
Chen, Meng .
CURRENT OPINION IN PLANT BIOLOGY, 2008, 11 (05) :503-508
[10]   JAZ repressors set the rhythm in jasmonate signaling [J].
Chico, Jose M. ;
Chini, Andrea ;
Fonseca, Sandra ;
Solano, Roberto .
CURRENT OPINION IN PLANT BIOLOGY, 2008, 11 (05) :486-494