Genomic, evolutionary and expression profile analysis of Hsp70 superfamily in A and D genome of cotton (Gossypium spp.) under the challenge of Verticillium dahliae

文献类型: 外文期刊

第一作者: Xiao, Songhua

作者: Xiao, Songhua;Yu, Jingzhong;Yu, Deyue;Xiao, Songhua;Xu, Jianwen;Zhao, Jun;Liu, Jianguang;Wu, Qiaojuan

作者机构:

关键词: Cotton;Expression analysis;Genomic analysis;Heat shock protein 70;Verticillium wilt

期刊名称:JOURNAL OF PLANT BIOLOGY ( 影响因子:2.434; 五年影响因子:2.455 )

ISSN: 1226-9239

年卷期: 2017 年 60 卷 1 期

页码:

收录情况: SCI

摘要: In this study, we comparatively analyzed the 115 Hsp70 genes identified in Gossypium raimondii, Gossypium hirsutum and Gossypium arboreum genomes. Those Hsp70 genes unequally distributed among chromosomes in A and D genome of cotton (Gossypium spp.), and were classified into 29 groups according to the homology of them. Based on the localization information of the orthologs in Arabidopsis, the Hsp70 proteins were predicted to locate in cytosol, endoplasmic reticulum, mitochondrion or chloroplast. Homologous analysis indicated the evolutionary conservation of Hsp70 in cotton. In addition, those Hsp70 genes were differently expressed in Suyuan-045, Hai-7124 and TM-1, which were highly resistant, resistant, and sensitive to Verticillium dahliae respectively. The expressions of 26 Hsp70 genes were induced by Verticillium dahliae except for Hsp70-07/16/25/26, and the result suggested the potential involvement of them in responding to Verticillium wilt. Hsp70-08/30/31 was highly expressed in both Suyuan-045 and Hai-7124, and it was hypothesized that they might be involved in the resistance to the invasion of Verticillium dahliae. 144h after inoculation with Verticillium dahliae, the expression of Hsp70-13/14/15 was only up-regulated in Suyuan-045, and it was assumed that they might be involved in resistance to the extension of Verticillium dahliae. Further study on those Hsp70 genes would be valuable to reveal the role of them in Verticillium wilt resistance.

分类号:

  • 相关文献

[1]Identification, cloning and characterization of a novel Gossypium hirsutum L. GhMYBantiV transcription factor in response to biotic and abiotic stresses. Li Fei,Chen Xiaoyan,He Xiaohong,Tang Ming,Hong Kun,Yang Zhengting,Yi Yin,Liu Zhanji,Fu Mingchuan. 2017

[2]Molecular characterisation and functional analysis of a cytochrome P450 gene in cotton. Zhou, Kexue,Long, Lu,Sun, Quan,Wang, Weina,Gao, Wei,Cai, Chaowei,Mo, Jianchuan,Cheng, Jieru,Zhang, Xiangrui,Liu, Yujia,Miao, Chen,Zhang, Xiao,Cai, Yingfan,Du, Xiongming,Shi, Yuzhen,Yuan, Youlu,Chu, Zongyan.

[3]Regional association analysis-based fine mapping of three clustered QTL for verticillium wilt resistance in cotton (G. hirsutum. L). Yunlei Zhao,Wang, Hongmei,Hongmei Wang,Wei Chen,Pei Zhao,Haiyan Gong,Xiaohui Sang,Yanli Cui. 2017

[4]Diversity of Endophytic Fungi from Different Verticillium-Wilt-Resistant Gossypium hirsutum and Evaluation of Antifungal Activity Against Verticillium dahliae In Vitro. Li, Zhi-Fang,Wang, Ling-Fei,Feng, Zi-Li,Zhao, Li-Hong,Shi, Yong-Qiang,Zhu, He-Qin.

[5]Characterization, Expression, and Functional Analysis of a Novel NAC Gene Associated with Resistance to Verticillium Wilt and Abiotic Stress in Cotton. Wang, Weina,Geng, Shuaipeng,Sun, Quan,Long, Lu,Cai, Chaowei,Liu, Xin,Wang, Guanghao,Miao, Chen,Zhang, Xiao,Cai, Yingfan,Wang, Weina,Yang, Can,Yuan, Youlu,Du, Xiongming,Chu, Zongyan. 2016

[6]Isolation and Characterization of an ERF Transcription Factor Gene from Cotton (Gossypium barbadense L.). Xianpeng Meng,Fuguang Li,Chuanliang Liu,Chaojun Zhang,Zhixia Wu,Yajuan Chen.

[7]Genome-wide association study discovered candidate genes of Verticillium wilt resistance in upland cotton (Gossypium hirsutum L.). Li, Tinggang,Ma, Xuefeng,Li, Nanyang,Zhou, Lei,Gui, Yuejing,Bao, Yuming,Chen, Jieyin,Dai, Xiaofeng,Liu, Zheng,Han, Huanyong. 2017

[8]Spectrum characteristics of cotton canopy infected with verticillium wilt and inversion of severity level. Wang, Keru,Li, Shaokun,Bai, Junhua,Chen, Bing,Wang, Keru,Li, Shaokun,Bai, Junhua,Xiao, Chunhua,Lai, Junchen,Wang, Jing. 2008

[9]Salicylic acid-related cotton (Gossypium arboreum) ribosomal protein GaRPL18 contributes to resistance to Verticillium dahliae. Qian Gong,Zhaoen Yang,Li, Fuguang,Xiaoqian Wang,Hamama Islam Butt,Eryong Chen,Shoupu He,Chaojun Zhang,Xueyan Zhang,Fuguang Li. 2017

[10]Genetic analysis of Verticillium wilt resistance in a backcross inbred line population and a meta-analysis of quantitative trait loci for disease resistance in cotton. Jinfa Zhang,Jiwen Yu,Wenfeng Pei,Xingli Li,Joseph Said,Mingzhou Song,Soum Sanogo. 2015

[11]The Ectopic Overexpression of the Cotton Ve1 and Ve2-Homolog Sequences Leads to Resistance Response to Verticillium Wilt in Arabidopsis. Chen, Jieyin,Li, Nanyang,Ma, Xuefeng,Zhang, Dandan,Li, Tinggang,Dai, Xiaofeng,Gupta, Vijai K.. 2017

[12]Estimating Severity Level of Cotton Infected Verticillium Wilt Based on Spectral Indices of TM Image. Chen, Bing,Wang, Keru,Li, Shaokun,Xiao, Chunhua,Chen, Jianglu,Jin, Xiulinag,Wang, Keru,Li, Shaokun,Chen, Bing.

[13]Cloning, characterization and expression analysis of interleukin-10 from the zebrarish (Danio rerion). Zhang, DC,Shao, YQ,Huang, YQ,Jiang, SG. 2005

[14]Molecular cloning and characterization of Bombyx mori CREB gene. Song, Hongsheng,Sun, Yue,Zhang, Yang,Li, Muwang.

[15]Characterization of a virulent dog-originated rabies virus affecting more than twenty fallow deer (Dama dama) in Inner Mongolia, China. Zhu, Hongwei,Shao, Xiqun,Ba, Hengxing,Wang, Fengxue,Yang, Yong,Sun, Na,Ren, Jingqiang,Cheng, Shipeng,Wen, Yongjun,Chen, Xiaoyun,Wang, Hualei.

[16]Identification and genomic analysis of antifungal property of a tomato root endophyte Pseudomonas sp p21. Ma, Rongqin,Cheng, Zhiqiang,Lei, Shaonan,Li, Xin,Tian, Baoyu,Ma, Rongqin,Cheng, Zhiqiang,Lei, Shaonan,Li, Xin,Tian, Baoyu,Cao, Yi,Huang, Wei,Song, Yongkang.

[17]Histological and Ultrastructural Observation Reveals Significant Cellular Differences between Agrobacterium Transformed Embryogenic and Non-embryogenic Calli of Cotton. Shang, Hai-Hong,Liu, Chuan-Liang,Zhang, Chao-Jun,Li, Feng-Lian,Hong, Wei-Dong,Li, Fu-Guang.

[18]Expression of heat shock protein 70 in transport-stressed broiler pectoralis major muscle and its relationship with meat quality. Xing, T.,Han, M. Y.,Xu, X. L.,Zhou, G. H.,Wang, M. F.,Zhu, X. S.. 2017

[19]Transcript analysis and expression profiling of three heat shock protein 70 genes in the ectoparasitoid Habrobracon hebetor (Hymenoptera: Braconidae). Chen, Hao-Liang,Zhangl, Hong-Yu,Chen, Hao-Liang,Chen, Hao-Liang,Throne, James E.,Chen, Hao-Liang,Zhu, Kun Yan. 2014

[20]Overexpression of heat shock protein 70 and its relationship to intestine under acute heat stress in broilers: 2. Intestinal oxidative stress. Gu, X. H.,Hao, Y.,Wang, X. L.. 2012

作者其他论文 更多>>