Integration of Transcriptomics and Metabolomics for Pepper (Capsicum annuum L.) in Response to Heat Stress
文献类型: 外文期刊
第一作者: Wang, Jing
作者: Wang, Jing;Lv, Junheng;Liu, Zhoubin;Liu, Yuhua;Song, Jingshuang;Zou, Xuexiao;Ma, Yanqing;Zhang, Xilu;Liang, Chengliang;Chen, Wenchao;Ou, Lijun;Zou, Xuexiao;Wang, Fei;Jiao, Chunhai;Juntawong, Niran
作者机构:
关键词: transcriptome; metabolome; heat shock protein; heat shock transcription factors; glutathione
期刊名称:INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES ( 影响因子:5.923; 五年影响因子:6.132 )
ISSN:
年卷期: 2019 年 20 卷 20 期
页码:
收录情况: SCI
摘要: Heat stress (HS), caused by extremely high temperatures, is one of the most severe forms of abiotic stress in pepper. In the present study, we studied the transcriptome and metabolome of a heat-tolerant cultivar (17CL30) and a heat-sensitive cultivar (05S180) under HS. Briefly, we identified 5754 and 5756 differentially expressed genes (DEGs) in 17CL30 and 05S180, respectively. Moreover, we also identified 94 and 108 differentially accumulated metabolites (DAMs) in 17CL30 and 05S180, respectively. Interestingly, there were many common HS-responsive genes (approximately 30%) in both pepper cultivars, despite the expression patterns of these HS-responsive genes being different in both cultivars. Notably, the expression changes of the most common HS-responsive genes were typically much more significant in 17CL30, which might explain why 17CL30 was more heat tolerant. Similar results were also obtained from metabolome data, especially amino acids, organic acids, flavonoids, and sugars. The changes in numerous genes and metabolites emphasized the complex response mechanisms involved in HS in pepper. Collectively, our study suggested that the glutathione metabolic pathway played a critical role in pepper response to HS and the higher accumulation ability of related genes and metabolites might be one of the primary reasons contributing to the heat resistance.
分类号:
- 相关文献
作者其他论文 更多>>
-
Heavy rainfall stimulates more N2O emissions from wheat fields during basal and overwintering fertilization phases
作者:Wang, Jing;Liu, Qiang;Liu, Qiang;Zhao, Suya;He, Shiying;Yang, Bei;Wang, Ning;Hou, Pengfu;Xue, Lihong;Yang, Linzhang;Zhao, Suya;He, Shiying;Wang, Ning;Hou, Pengfu;Xue, Lihong
关键词:Rainfall; Nitrous oxide; Nitrogen transformation; Functional microorganisms
-
Soil bacterial diversity and community structure of Suaeda glauca vegetation in the Hetao Irrigation District, Inner Mongolia, China
作者:Dong, Ruixiao;Wang, Xinbo;Li, Yuyi;Zhang, Hongyuan;Li, Xiaobin;Song, Jiashen;Chang, Fangdi;Feng, Wenhao;Pang, Huancheng;Wang, Jing
关键词:Suaeda glauca; saline-alkali soil; rhizosphere; bacteria; community structure
-
Co-incorporation of Chinese milk vetch (Astragalus sinicus L.) and chemical fertilizers alters microbial functional genes supporting short-time scale positive nitrogen priming effects in paddy soils
作者:Wang, Limin;He, Chunmei;Huang, Dongfeng;Liu, Cailing;Li, Qinghua;Huang, Yibin;Li, Juan;Wang, Fei;Yu, Juhua
关键词:green manure; gross priming effect; incorporation practice; microbial mechanism; net priming effect; rice field soil
-
Identification of candidate gene associated with maize northern leaf blight resistance in a multi-parent population
作者:Bi, Yaqi;Jiang, Fuyan;Yin, Xingfu;Shaw, Ranjan K.;Guo, Ruijia;Wang, Jing;Fan, Xingming
关键词:Zea mays; Northern leaf blight; Multi-parent population; Genome-wide association analysis; QTL mapping; CATETO germplasm
-
Genome-wide chromatin accessibility reveals transcriptional regulation of heterosis in inter-subspecific hybrid rice
作者:Wang, Fei;Xi, Zengde;Wang, Mengyao;Wang, Jianbo;Wang, Linyou
关键词:inter-subspecific hybrid rice; chromatin accessibility; heterosis; transcriptional regulation; DNA methylation; allele-specific expression
-
Full-length transcriptome and RNA-Seq analyses reveal the resistance mechanism of sesame in response to Corynespora cassiicola
作者:Jia, Min;Ni, Yunxia;Zhao, Hui;Liu, Xintao;Yan, Wenqing;Zhao, Xinbei;Wang, Jing;He, Bipo;Liu, Hongyan;Jia, Min;Ni, Yunxia;Zhao, Hui;Liu, Hongyan
关键词:Sesame; full-length transcriptome; WGCNA; resistant; susceptible; Corynespora cassiicola
-
Common vetch intercropping with reduced irrigation ensures potato production by optimizing microbial interactions
作者:Che, Ting;Hu, Feng;Zhang, Huijuan;Xu, Li;Jiao, Jiaguo;Che, Ting;Zhang, Xinyue;He, Mingyue;Wang, Fei;Li, Na;Zang, Xiayun;Xiao, Zhuoliang;Xu, Yuanzhou;Hu, Feng;Zhang, Huijuan;Xu, Li;Zhao, Peiyi;Jiao, Jiaguo;Zhao, Peiyi;Jiao, Jiaguo
关键词:Cover crop; Irrigation; Co -occurrence network; Soil microorganism