An ethylene response factor OsWR1 responsive to drought stress transcriptionally activates wax synthesis related genes and increases wax production in rice

被引:157
|
作者
Wang, Youhua [1 ,2 ,3 ]
Wan, Liyun [1 ]
Zhang, Lixia [1 ]
Zhang, Zhijin [1 ,2 ,3 ]
Zhang, Haiwen [1 ,2 ,3 ]
Quan, Ruidang [1 ,2 ,3 ]
Zhou, Shirong [1 ,2 ,3 ]
Huang, Rongfeng [1 ,2 ,3 ]
机构
[1] Chinese Acad Agr Sci, Biotechnol Res Inst, Beijing 100081, Peoples R China
[2] Natl Key Facil Crop Gene Resources & Genet Improv, Beijing 100081, Peoples R China
[3] Natl Ctr Plant Gene Res Beijing, Beijing 100081, Peoples R China
基金
美国国家科学基金会;
关键词
Rice; Ethylene response factor OsWR1; Wax synthesis; Cuticle; Drought tolerance; CUTICULAR WAX; ARABIDOPSIS-THALIANA; REGULATORY NETWORKS; CELL-INTERACTIONS; POLLEN FERTILITY; CUTICLE MEMBRANE; FATTY-ACIDS; BIOSYNTHESIS; ACCUMULATION; TOLERANCE;
D O I
10.1007/s11103-011-9861-2
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
Increasing evidence has revealed the major enzymes-involved in Arabidopsis and maize wax/cutin synthesis; however, there is limited information about the genes-associated with wax/cutin synthesis in rice. Here we report the characterization of an ethylene response factor gene in rice. This rice wax synthesis regulatory gene 1 (OsWR1) is a homolog of Arabidopsis wax/cutin synthesis regulatory gene WIN1/SHN1. Transcript analysis showed that OsWR1 is induced by drought, abscisic acid and salt, and is predominantly expressed in leaves. Functional analyses indicated that overexpressing OsWR1 (Ox-WR1) improved while RNA interference OsWR1 rice (RI-WR1) decreased drought tolerance, consistent with water loss and cuticular permeability, suggesting that OsWR1-triggered drought response might be associated with cuticular characteristics. In addition, OsWR1 activated the expression of the genes-related to oxidative stress response and membrane stability. Gas chromatograph-mass spectrometry analysis further showed that OsWR1 modulated the wax synthesis through alteration of long chain fatty acids and alkanes, evidencing the regulation of OsWR1 in wax synthesis. Detection with real-time PCR amplification indicated that Ox-WR1 enhanced while RI-WR1 decreased the expression of wax/cutin synthesis related genes. Furthermore, OsWR1 physically interacted with the DRE and GCC box in the promoters of wax related genes OsLACS2 and OsFAE1'-L, indicating that OsWR1 at least directly modulates the expression of these genes. Thus our results indicate that OsWR1 is a positive regulator of wax synthesis related genes in rice, and this regulation, distinct from its homology regulator of WIN1/SHN1 in cutin synthesis, subsequently contributes to reduced water loss and enhanced drought tolerance.
引用
收藏
页码:275 / 288
页数:14
相关论文
共 8 条
  • [1] An ethylene response factor OsWR1 responsive to drought stress transcriptionally activates wax synthesis related genes and increases wax production in rice
    Youhua Wang
    Liyun Wan
    Lixia Zhang
    Zhijin Zhang
    Haiwen Zhang
    Ruidang Quan
    Shirong Zhou
    Rongfeng Huang
    Plant Molecular Biology, 2012, 78 : 275 - 288
  • [2] The APETALA2/ethylene-responsive factor transcription factor OsDERF2 negatively modulates drought stress in rice by repressing abscisic acid responsive genes
    Guo, Y.
    Huang, R.
    Duan, L.
    Wang, J.
    JOURNAL OF AGRICULTURAL SCIENCE, 2017, 155 (06): : 966 - 977
  • [3] OsGRAS23, a rice GRAS transcription factor gene, is involved in drought stress response through regulating expression of stress-responsive genes
    Xu, Kai
    Chen, Shoujun
    Li, Tianfei
    Ma, Xiaosong
    Liang, Xiaohua
    Ding, Xuefeng
    Liu, Hongyan
    Luo, Lijun
    BMC PLANT BIOLOGY, 2015, 15
  • [4] OsGRAS23, a rice GRAS transcription factor gene, is involved in drought stress response through regulating expression of stress-responsive genes
    Kai Xu
    Shoujun Chen
    Tianfei Li
    Xiaosong Ma
    Xiaohua Liang
    Xuefeng Ding
    Hongyan Liu
    Lijun Luo
    BMC Plant Biology, 15
  • [5] Heterologous expression of two Medicago truncatula putative ERF transcription factor genes, WXP1 and WXP2, in Arabidopsis led to increased leaf wax accumulation and improved drought tolerance, but differential response in freezing tolerance
    Ji-Yi Zhang
    Corey D. Broeckling
    Lloyd W. Sumner
    Zeng-Yu Wang
    Plant Molecular Biology, 2007, 64 : 265 - 278
  • [6] Heterologous expression of two Medicago truncatula putative ERF transcription factor genes, WXP1 and WXP2, in Arabidopsis led to increased leaf wax accumulation and improved drought tolerance, but differential response in freezing tolerance
    Zhang, Ji-Yi
    Broeckling, Corey D.
    Sumner, Lloyd W.
    Wang, Zeng-Yu
    PLANT MOLECULAR BIOLOGY, 2007, 64 (03) : 265 - 278
  • [7] Genome-wide data ( ChIP-seq) enabled identification of cell wall-related and aquaporin genes as targets of tomato ASR1, a drought stress-responsive transcription factor
    Ricardi, Martiniano M.
    Gonazlez, Rodrigo M.
    Zhong, Silin
    Dominguez, Pia G.
    Duffy, Tomas
    Turjanski, Pablo G.
    Salter, Juan D. Salgado
    Alleva, Karina
    Carrari, Fernando
    Giovannoni, James J.
    Estevez, Jose M.
    Iusem, Norberto D.
    BMC PLANT BIOLOGY, 2014, 14
  • [8] Genome-wide data (ChIP-seq) enabled identification of cell wall-related and aquaporin genes as targets of tomato ASR1, a drought stress-responsive transcription factor
    Martiniano M Ricardi
    Rodrigo M González
    Silin Zhong
    Pía G Domínguez
    Tomas Duffy
    Pablo G Turjanski
    Juan D Salgado Salter
    Karina Alleva
    Fernando Carrari
    James J Giovannoni
    José M Estévez
    Norberto D Iusem
    BMC Plant Biology, 14