OsWRKY5 Promotes Rice Leaf Senescence via Senescence-Associated NAC and Abscisic Acid Biosynthesis Pathway

被引:51
作者
Kim, Taehoon [1 ]
Kang, Kiyoon [1 ]
Kim, Suk-Hwan [1 ]
An, Gynheung [2 ,3 ]
Paek, Nam-Chon [1 ]
机构
[1] Seoul Natl Univ, Res Inst Agr & Life Sci, Plant Genom & Breeding Inst, Dept Plant Sci, Seoul 08826, South Korea
[2] Kyung Hee Univ, Crop Biotech Inst, Yongin 17104, South Korea
[3] Kyung Hee Univ, Grad Sch Biotechnol, Yongin 17104, South Korea
基金
新加坡国家研究基金会;
关键词
rice; leaf senescence; abscisic acid (ABA); OsWRKY; NAC; GREEN COTYLEDON GENE; TRANSCRIPTION FACTOR; CHLOROPHYLL DEGRADATION; STAY-GREEN; ABA BIOSYNTHESIS; PROTEIN; STRESS; IDENTIFICATION; ACTIVATION; TOLERANCE;
D O I
10.3390/ijms20184437
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 onset of leaf senescence is triggered by external cues and internal factors such as phytohormones and signaling pathways involving transcription factors (TFs). Abscisic acid (ABA) strongly induces senescence and endogenous ABA levels are finely tuned by many senescence-associated TFs. Here, we report on the regulatory function of the senescence-induced TF OsWRKY5 TF in rice (Oryza sativa). OsWRKY5 expression was rapidly upregulated in senescing leaves, especially in yellowing sectors initiated by aging or dark treatment. A T-DNA insertion activation-tagged OsWRKY5-overexpressing mutant (termed oswrky5-D) promoted leaf senescence under natural and dark-induced senescence (DIS) conditions. By contrast, a T-DNA insertion oswrky5-knockdown mutant (termed oswrky5) retained leaf greenness during DIS. Reverse-transcription quantitative PCR (RT-qPCR) showed that OsWRKY5 upregulates the expression of genes controlling chlorophyll degradation and leaf senescence. Furthermore, RT-qPCR and yeast one-hybrid analysis demonstrated that OsWRKY5 indirectly upregulates the expression of senescence-associated NAM/ATAF1/2/CUC2 (NAC) genes including OsNAP and OsNAC2. Precocious leaf yellowing in the oswrky5-D mutant might be caused by elevated endogenous ABA concentrations resulting from upregulated expression of ABA biosynthesis genes OsNCED3, OsNCED4, and OsNCED5, indicating that OsWRKY is a positive regulator of ABA biosynthesis during leaf senescence. Furthermore, OsWRKY5 expression was suppressed by ABA treatment. Taken together, OsWRKY5 is a positive regulator of leaf senescence that upregulates senescence-induced NAC, ABA biosynthesis, and chlorophyll degradation genes.
引用
收藏
页数:18
相关论文
共 59 条
[1]   Amino acid substitutions in homologs of the STAY-GREEN protein are responsible for the green-flesh and chlorophyll retainer mutations of tomato and pepper [J].
Barry, Cornelius S. ;
McQuinn, Ryan P. ;
Chung, Mi-Young ;
Besuden, Anna ;
Giovannoni, James J. .
PLANT PHYSIOLOGY, 2008, 147 (01) :179-187
[2]   WRKY54 and WRKY70 co-operate as negative regulators of leaf senescence in Arabidopsis thaliana [J].
Besseau, Sebastien ;
Li, Jing ;
Palva, E. Tapio .
JOURNAL OF EXPERIMENTAL BOTANY, 2012, 63 (07) :2667-2679
[3]   High-Resolution Temporal Profiling of Transcripts during Arabidopsis Leaf Senescence Reveals a Distinct Chronology of Processes and Regulation [J].
Breeze, Emily ;
Harrison, Elizabeth ;
McHattie, Stuart ;
Hughes, Linda ;
Hickman, Richard ;
Hill, Claire ;
Kiddle, Steven ;
Kim, Youn-sung ;
Penfold, Christopher A. ;
Jenkins, Dafyd ;
Zhang, Cunjin ;
Morris, Karl ;
Jenner, Carol ;
Jackson, Stephen ;
Thomas, Brian ;
Tabrett, Alexandra ;
Legaie, Roxane ;
Moore, Jonathan D. ;
Wild, David L. ;
Ott, Sascha ;
Rand, David ;
Beynon, Jim ;
Denby, Katherine ;
Mead, Andrew ;
Buchanan-Wollaston, Vicky .
PLANT CELL, 2011, 23 (03) :873-894
[4]   Comparative transcriptome analysis reveals significant differences in gene expression and signalling pathways between developmental and dark/starvation-induced senescence in Arabidopsis [J].
Buchanan-Wollaston, V ;
Page, T ;
Harrison, E ;
Breeze, E ;
Lim, PO ;
Nam, HG ;
Lin, JF ;
Wu, SH ;
Swidzinski, J ;
Ishizaki, K ;
Leaver, CJ .
PLANT JOURNAL, 2005, 42 (04) :567-585
[5]   GENE-EXPRESSION REGULATED BY ABSCISIC-ACID AND ITS RELATION TO STRESS TOLERANCE [J].
CHANDLER, PM ;
ROBERTSON, M .
ANNUAL REVIEW OF PLANT PHYSIOLOGY AND PLANT MOLECULAR BIOLOGY, 1994, 45 :113-141
[6]   Arabidopsis WRKY45 Interacts with the DELLA Protein RGL1 to Positively Regulate Age-Triggered Leaf Senescence [J].
Chen, Ligang ;
Xiang, Shengyuan ;
Chen, Yanli ;
Li, Daibo ;
Yu, Diqiu .
MOLECULAR PLANT, 2017, 10 (09) :1174-1189
[7]   Studies on DNA-binding selectivity of WRKY transcription factors lend structural clues into WRKY-domain function [J].
Ciolkowski, Ingo ;
Wanke, Dierk ;
Birkenbihl, Rainer P. ;
Somssich, Imre E. .
PLANT MOLECULAR BIOLOGY, 2008, 68 (1-2) :81-92
[8]   Abscisic Acid: Emergence of a Core Signaling Network [J].
Cutler, Sean R. ;
Rodriguez, Pedro L. ;
Finkelstein, Ruth R. ;
Abrams, Suzanne R. .
ANNUAL REVIEW OF PLANT BIOLOGY, VOL 61, 2010, 61 :651-679
[9]   The WRKY superfamily of plant transcription factors [J].
Eulgem, T ;
Rushton, PJ ;
Robatzek, S ;
Somssich, IE .
TRENDS IN PLANT SCIENCE, 2000, 5 (05) :199-206
[10]   Concerted evolution of D1 and D2 to regulate chlorophyll degradation in soybean [J].
Fang, Chao ;
Li, Congcong ;
Li, Weiyu ;
Wang, Zheng ;
Zhou, Zhengkui ;
Shen, Yanting ;
Wu, Mian ;
Wu, Yunshuai ;
Li, Guiquan ;
Kong, Ling-An ;
Liu, Cuimin ;
Jackson, Scott A. ;
Tian, Zhixi .
PLANT JOURNAL, 2014, 77 (05) :700-712