文献类型: 外文期刊
作者: Xu, Jianwen 1 ; Zhao, Jun 1 ; Liu, Jianguang 1 ; Dong, Chengguang 2 ; Zhao, Liang 1 ; Ai, Nijiang 3 ; Xu, Peng 1 ; Feng, Guoli 3 ; Xu, Zhenzhen 1 ; Guo, Qi 1 ; Cheng, Junling 4 ; Wang, Yueping 4 ; Wang, Xin 2 ; Wang, Ningshan 3 ; Xiao, Songhua 1 ;
作者机构: 1.Jiangsu Acad Agr Sci, Inst Ind Crops, Key Lab Cotton & Rapeseed, Minist Agr, Nanjing 210014, Peoples R China
2.Xinjiang Acad Agr & Reclamat Sci, Cotton Res Inst, Shihezi 832000, Peoples R China
3.Shihezi Agr Sci Res Inst, Shihezi 832000, Peoples R China
4.Xinjiang Agr Univ, Coll Agr, Urumqi 830052, Peoples R China
关键词: biological stress; cotton; cytochrome P450; Verticillium dahliae; Verticillium wilt
期刊名称:PLANT DISEASE ( 影响因子:4.5; 五年影响因子:5.0 )
ISSN: 0191-2917
年卷期: 2023 年
页码:
收录情况: SCI
摘要: Verticillium dahliae is a fungal pathogen that causes Verticillium wilt (VW), which seriously reduces the yield of cotton owing to biological stress. The mechanism underlying the resistance of cotton to VW is highly complex, and the resistance breeding of cotton is consequently limited by the lack of in-depth research. Using quantitative trait loci (QTL) mapping, we previously identified a novel cytochrome P450 (CYP) gene on chromosome D4 of Gossypium barbadense that is associated with resistance to the nondefoliated strain of V. dahliae. In this study, the CYP gene on chromosome D4 was cloned together with its homologous gene on chromosome A4 and were denoted as GbCYP72A1d and GbCYP72A1a, respectively, according to their genomic location and protein subfamily classification. The two GbCYP72A1 genes were induced by V. dahliae and phytohormone treatment, and the findings revealed that the VW resistance of the lines with silenced GbCYP72A1 genes decreased significantly. Transcriptome sequencing and pathway enrichment analyses revealed that the GbCYP72A1 genes primarily affected disease resistance via the plant hormone signal transduction, plant-pathogen interaction, and mitogen-activated protein kinase (MAPK) signaling pathways. Interestingly, the findings revealed that although GbCYP72A1d and GbCYP72A1a had high sequence similarity and both genes enhanced the disease resistance of transgenic Arabidopsis, there was a difference between their disease resistance abilities. Protein structure analysis revealed that this difference was potentially attributed to the presence of a synaptic structure in the GbCYP72A1d protein. Altogether, the findings suggested that the GbCYP72A1 genes play an important role in plant response and resistance to VW.
- 相关文献
作者其他论文 更多>>
-
Oil candidate genes in seeds of cotton (Gossypium hirsutum L.) and functional validation of GhPXN1
作者:Gao, Chenxu;Yang, Zhaoen;Zhang, Yihao;Yu, Hang;Liu, Renju;Hu, Wei;Yang, Jiaxiang;Yu, Jiwen;Zhang, Zhibin;Han, Xiao;Yang, Zhaoen;Yan, Qingdi;Zhang, Yihao;Song, Jikun;Yang, Lan;Wu, Man;Liu, Jisheng;Yu, Jiwen;Zhang, Zhibin;Xie, Zongming;Han, Xiao;Xu, Zhenzhen
关键词:Gossypium hirsutum L.; Cottonseed oil content; Comparative transcriptome; Fatty acid biosynthesis; Gene introgression
-
Identification of superior parents with high fiber quality using molecular markers and phenotypes based on a core collection of upland cotton (Gossypium hirsutum L.)
作者:Li, Chengqi;Zhao, Haihong;Du, Lei;Dong, Chengguang;Wang, Juan;Ai, Nijiang
关键词:Core collection; Fiber quality; Molecular marker; Phenotype; Superior parents; Upland cotton
-
Membrane Localized GbTMEM214s Participate in Modulating Cotton Resistance to Verticillium Wilt
作者:Zhao, Jun;Xu, Jianwen;Wang, Yueping;Liu, Jianguang;Zhao, Liang;Xu, Zhenzhen;Guo, Qi;Xu, Peng;Cheng, Junling;Xiao, Songhua;Wang, Yueping;Cheng, Junling;Dong, Chengguang;Wang, Xin;Wang, Juan;Ai, Nijiang;Feng, Guoli
关键词:Verticillium wilt; cotton; transmembrane protein; resistance; plant immunity
-
Identification of elite fiber quality loci in upland cotton based on the genotyping-by-target-sequencing technology
作者:Chen, Hong;Ma, Qi;Dong, Chengguang;Ning, Xinzhu;Li, Jilian;Lin, Hai;Xu, Shouzhen;Song, Qingping;Han, Zegang;Li, Yiqian;Hu, Yan;Si, Zhanfeng
关键词:genotyping-by-target-sequencing (GBTS); upland cotton; fiber quality; association studies; single nucleotide polymorphism (SNP)
-
Genome-wide quantitative trait loci reveal the genetic basis of cotton fibre quality and yield-related traits in a Gossypium hirsutum recombinant inbred line population
作者:Zhang, Zhen;Li, Junwen;Jamshed, Muhammad;Shi, Yuzhen;Liu, Aiying;Gong, Juwu;Wang, Shufang;Zhang, Jianhong;Sun, Fuding;Jia, Fei;Ge, Qun;Fan, Liqiang;Zhang, Zhibin;Pan, Jingtao;Fan, Senmiao;Wang, Yanling;Liu, Ruixian;Deng, Xiaoying;Zou, Xianyan;Jiang, Xiao;Liu, Ping;Iqbal, Muhammad Sajid;Zhang, Chaojun;Shang, Haihong;Gong, Wankui;Yuan, Youlu;Xu, Aixia;Huang, Jinyong;Lu, Quanwei;Li, Pengtao;Zhang, Chuanyun;Zou, Juan;Chen, Hong;Tian, Qin;Jia, Xinhe;Wang, Baoqin;Ai, Nijiang;Feng, Guoli;Wang, Yumei;Hong, Mei;Li, Shilin;Lian, Wenming;Wu, Bo;Hua, Jinping
关键词:upland cotton; consensus genetic map; fibre quality; fibre yield; QTL clusters; genetic correlation; gene expression level
-
Genome-wide quantitative trait loci reveal the genetic basis of cotton fibre quality and yield-related traits in a Gossypium hirsutum recombinant inbred line population
作者:Zhang, Zhen;Li, Junwen;Jamshed, Muhammad;Shi, Yuzhen;Liu, Aiying;Gong, Juwu;Wang, Shufang;Zhang, Jianhong;Sun, Fuding;Jia, Fei;Ge, Qun;Fan, Liqiang;Zhang, Zhibin;Pan, Jingtao;Fan, Senmiao;Wang, Yanling;Liu, Ruixian;Deng, Xiaoying;Zou, Xianyan;Jiang, Xiao;Liu, Ping;Iqbal, Muhammad Sajid;Zhang, Chaojun;Shang, Haihong;Gong, Wankui;Yuan, Youlu;Xu, Aixia;Huang, Jinyong;Lu, Quanwei;Li, Pengtao;Zhang, Chuanyun;Zou, Juan;Chen, Hong;Tian, Qin;Jia, Xinhe;Wang, Baoqin;Ai, Nijiang;Feng, Guoli;Wang, Yumei;Hong, Mei;Li, Shilin;Lian, Wenming;Wu, Bo;Hua, Jinping
关键词:upland cotton; consensus genetic map; fibre quality; fibre yield; QTL clusters; genetic correlation; gene expression level
-
Genome-wide association study reveals the genetic control underlying node of the first fruiting branch and its height in upland cotton (Gossypium hirsutum L.)
作者:Fu, Yuanzhi;Wang, Yuanyuan;Li, Chengqi;Dong, Chengguang;Wang, Juan
关键词:Upland cotton; Genome-wide association study; Node of the first fruiting branch; Height of node of the first fruiting branch; Single nucleotide polymorphism; Candidate gene