Transcriptome Analysis of H2O2-Treated Wheat Seedlings Reveals a H2O2-Responsive Fatty Acid Desaturase Gene Participating in Powdery Mildew Resistance
文献类型: 外文期刊
第一作者: Li, Aili
作者: Li, Aili;Zhang, Rongzhi;Pan, Lei;Tang, Lichuan;Zhao, Guangyao;Zhu, Mingzhu;Jia, Jizeng;Mao, Long;Chu, Jinfang;Sun, Xiaohong;Wei, Bo;Zhang, Xiangqi
作者机构:
期刊名称:PLOS ONE ( 影响因子:3.24; 五年影响因子:3.788 )
ISSN: 1932-6203
年卷期: 2011 年 6 卷 12 期
页码:
收录情况: SCI
摘要: Hydrogen peroxide (H2O2) plays important roles in plant biotic and abiotic stress responses. However, the effect of H2O2 stress on the bread wheat transcriptome is still lacking. To investigate the cellular and metabolic responses triggered by H2O2, we performed an mRNA tag analysis of wheat seedlings under 10 mM H2O2 treatment for 6 hour in one powdery mildew (PM) resistant (PmA) and two susceptible (Cha and Han) lines. In total, 6,156, 6,875 and 3,276 transcripts were found to be differentially expressed in PmA, Han and Cha respectively. Among them, 260 genes exhibited consistent expression patterns in all three wheat lines and may represent a subset of basal H2O2 responsive genes that were associated with cell defense, signal transduction, photosynthesis, carbohydrate metabolism, lipid metabolism, redox homeostasis, and transport. Among genes specific to PmA, 'transport' activity was significantly enriched in Gene Ontology analysis. MapMan classification showed that, while both up-and down-regulations were observed for auxin, abscisic acid, and brassinolides signaling genes, the jasmonic acid and ethylene signaling pathway genes were all up-regulated, suggesting H2O2-enhanced JA/Et functions in PmA. To further study whether any of these genes were involved in wheat PM response, 19 H2O2-responsive putative defense related genes were assayed in wheat seedlings infected with Blumeria graminis f. sp. tritici (Bgt). Eight of these genes were found to be co-regulated by H2O2 and Bgt, among which a fatty acid desaturase gene TaFAD was then confirmed by virus induced gene silencing (VIGS) to be required for the PM resistance. Together, our data presents the first global picture of the wheat transcriptome under H2O2 stress and uncovers potential links between H2O2 and Bgt responses, hence providing important candidate genes for the PM resistance in wheat.
分类号:
- 相关文献
作者其他论文 更多>>
-
Pan-genome bridges wheat structural variations with habitat and breeding
作者:Jiao, Chengzhi;Hao, Chenyang;Xie, Yuxin;Zhao, Li;Li, Tian;Fu, Junjie;Hou, Jian;Liu, Hongxia;Liu, Xu;Jia, Jizeng;Mao, Long;Zhang, Xueyong;Jiao, Chengzhi;Wang, Xiue;Xie, Xiaoming;Wang, Zihao;Zhang, Yuqi;Guo, Weilong;Chen, Liyang;Garg, Vanika;Chitikineni, Annapurna;Appels, Rudi;Varshney, Rajeev K.;Dwivedi, Girish;Dwivedi, Girish;Appels, Rudi
关键词:
-
A wheat phytohormone atlas spanning major tissues across the entire life cycle provides novel insights into cytokinin and jasmonic acid interplay
作者:Yin, Huanran;Liu, Wei;Hu, Xin;Jia, Jingqi;Liu, Mengmeng;Wei, Jiaqi;Cheng, Yikeng;Gong, Xin;Li, Qiang;Yan, Wenhao;Chen, Wei;Jia, Jizeng;Gao, Lifeng;Fernie, Alisdair R.
关键词:wheat; phytohormones; metabolic regulatory network; DOF
-
FGSE02, a Novel Secreted Protein in Fusarium graminearum FG-12, Leads to Cell Death in Plant Tissues and Modulates Fungal Virulence
作者:Hao, Zhigang;Xu, Jiaqing;Yu, Chengxuan;Li, Jianqiang;Luo, Laixin;Hao, Zhigang;Hao, Zhigang;Li, Jianqiang;Luo, Laixin;Hao, Zhigang;Pan, Lei
关键词:transcriptome;
Fusarium graminearum ; virulence-associated genes; effector protein -
Integrated multi-omics reveals contrasting epigenetic patterns in leaf and root morphogenesis in Aegilops speltoides
作者:Miao, Lingfeng;Gao, Lifeng;Jia, Jizeng;Zhao, Guangyao;Miao, Lingfeng;Chen, Zhe;Guo, Weilong
关键词:Aegilops speltoides; DNA methylation; Histone modification; Transcriptional regulatory network
-
Identification and Validation of Novel Quantitative Trait Loci for Grain Hardness in Bread Wheat (Triticum aestivum L.)
作者:Hu, Wenjing;Wang, Zunjie;You, Junchao;Yong, Rui;Li, Dongshen;Gao, Zhifu;Lu, Chengbin;Hu, Wenjing;Lu, Chengbin;Jia, Jizeng
关键词:grain hardness; kompetitive allele-specific PCR; molecular breeding; quantitative trait loci; wheat
-
A pathogen effector HaRxL10 hijacks the circadian clock component CHE to perturb both plant development and immunity
作者:Fu, Mengyao;Zhou, Yaoyu;Zhang, Xin;Yang, Keyi;Xu, Yufeng;Wang, Yu;Ma, Lin;Liu, Hanguang;Zhou, Mian;Fu, Mengyao;Zhou, Yaoyu;Zhang, Xin;Yang, Keyi;Xu, Yufeng;Wang, Yu;Ma, Lin;Liu, Hanguang;Zhou, Mian;Wang, Xingwei;Shi, Yabo;Deng, Yuhua;Wang, Wei;Wang, Xingwei;Shi, Yabo;Deng, Yuhua;Wang, Wei;Chen, Zhaodan;Wang, Yuanchao;Cheng, Shujing;Chu, Jinfang;Chu, Jinfang;Song, Jingyi;Sun, Tongjun
关键词:
-
The wheat transcription factor Q functions in gibberellin biosynthesis and signaling and regulates height and spike length
作者:Liu, Pan;Jia, Jizeng;Zhao, Guangyao;Hu, Yanzhen;Kong, Cuizheng;Yan, Dong;Liu, Xu;Lu, Zefu;Gao, Lifeng;Xue, Shulin;Wang, Huan;Liu, Jie;Liu, Jie;Liu, Jie
关键词: