数字农科院2.0

GhERF.B4-15D: A Member of ERF Subfamily B4 Group Positively Regulates the Resistance against Verticillium dahliae in Upland Cotton

文献类型: 外文期刊

作者: Panpan Wang;Yanpeng Zhao;Na Wu;Muhammad Tehseen Azhar;Yuxia Hou;Haihong Shang

作者机构:

关键词: ethylene response factor;GhDREB1B;GhERF.B4-15D;upland cotton;Verticillium dahliae

期刊名称: Biomolecules

ISSN: 2218-273X

年卷期: 2023 年 13 卷 9 期

页码:

收录情况: SCIE(2023版)

摘要: Verticillium wilt is a fungal disease in upland cotton and exerts a significant effect on growth and potential productivity. This disease is mainly caused by V. dahliae Kleb. Ethylene response factor (ERF) is one of the superfamilies of transcription factors that is involved in the development and environmental adaption of crops. A total of 30 ERF.B4 group members were detected in upland cotton and divided into 6 subgroups. Gene structures, conserved motifs, and domain analysis revealed that members in each subgroup are highly conserved. Further, the 30 GhERF.B4 group members were distributed on 18 chromosomes, and 36 gene synteny relationships were found among them. GhERF.B4 genes were ubiquitously expressed in various tissues and developmental stages of cotton. Amongst them, GhERF.B4-15D was predominantly expressed in roots, and its expression was induced by V. dahliae infection. In addition, GhERF.B4-15D responded to methyl jasmonate (MeJA), methyl salicylate (MeSA), and ethylene (ET) phytohormones. It was also found that the V. dahliae resistance was enhanced due to overexpression of GhERF.B4-15D in Arabidopsis thaliana. On the contrary, interference of GhERF.B4-15D by virus-induced gene silencing (VIGS) technology decreased the V. dahliae resistance level in upland cotton. The subcellular localization experiment showed that GhERF.B4-15D was located in the nucleus. Yeast two-hybrid (Y2H) and luciferase complementation (LUC) approaches demonstrated that GhERF.B4-15D interacted with GhDREB1B. Additionally, the V. dahliae resistance was significantly decreased in GhDREB1B knockdowns. Our results showed that GhERF.B4-15D plays a role during V. dahliae infection in cotton.

分类号:

  • 相关文献

[1]Identification and expression analysis of arabinogalactan protein genes in cotton reveal the function of GhAGP15 in Verticillium dahliae resistance. Wen Jie Li,Na Wu,Chen Chen,Yan Peng Zhao,Yu Xia Hou. 2022

[2]Analysis of the PRA1 Genes in Cotton Identifies the Role of GhPRA1.B1-1A in Verticillium dahliae Resistance. Na Wu,Wen Jie Li,Chen Chen,Yan Peng Zhao,Yu Xia Hou. 2022

[3]Analysis of PAT1 subfamily members in the GRAS family of upland cotton and functional characterization of GhSCL13-2A in Verticillium dahliae resistance. Chen, Chen,Lu, Li-Li,Ma, Shu-Ya,Zhao, Yan-Peng,Wu, Na,Li, Wen-Jie,Ma, Li,Kong, Xian-Hui,Xie, Zong-Ming,Hou, Yu-Xia. 2023

[4]Flagellin C decreases the expression of the Gossypium hirsutum cation/proton exchanger 3 gene to promote calcium ion, hydrogen peroxide, and nitric oxide and synergistically regulate the resistance of cotton to Verticillium wilt. Zhou, Heng,Wang, Yi,Zhang, Yihao,Xie, Yijing,Nadeem, Hasan,Tang, Canming. 2022

[5]Promotion of apoplastic oxidative burst by artificially selected GhCBSX3A enhances Verticillium dahliae resistance in upland cotton. Zhang, Yihao,Yuan, Yuan,Xi, Hongfang,Zhang, Yaning,Gao, Chenxu,Ma, Meng,Huang, Qian,Li, Fuguang,Yang, Zhaoen. 2024

[6]Integrative GWAS and transcriptomics reveal GhAMT2 as a key regulator of cotton resistance to Verticillium wilt. Long Wang,Yonglin Yang,Jianghong Qin,Qifeng Ma,Kaikai Qiao,Shuli Fan,Yanying Qu. 2025

[7]Identification of Candidate Genes Controlling Resistance to Verticillium dahliae Using CCRI70 Recombinant Inbred Line Population in Gossypium hirsutum. Zhao, Yanpeng,Li, Tongyi,Hu, Fuxin,Wang, Panpan,Azhar, Muhammad Tehseen,Yan, Haoliang,Gong, Juwu,Yuan, Youlu,Shang, Haihong. 2025

[8]Elevation of GhDREB1B transcription by a copy number variant significantly improves chilling tolerance in cotton. Yanan Wang,Yuan Wang,Zhigang Meng,Yunxiao Wei,Xiongming Du,Chengzhen Liang,Rui Zhang. 2021

[9]Overexpression of the soybean GmERF3 gene, an AP2/ERF type transcription factor for increased tolerances to salt, drought, and diseases in transgenic tobacco. Zhang, Gaiyun,Chen, Ming,Li, Liancheng,Xu, Zhaoshi,Ma, Youzhi,Zhang, Gaiyun,Chen, Xueping,Guo, Jiaming. 2009

[10]A novel activator-type ERF of Thinopyrum intermedium, TiERF1, positively regulates defence responses. Liang, HongXia,Lu, Yan,Liu, HongXia,Wang, FengDe,Xin, ZhiYong,Zhang, ZengYan. 2008

[11]Argonaute 1 and 5 proteins play crucial roles in the defence against cucumber green mottle mosaic virus in watermelon. Liu, Mei,Wu, Huijie,Hong, Ni,Kang, Baoshan,Peng, Bin,Liu, Liming,Gu, Qinsheng. 2023

[12]Comparative transcriptome analysis reveals nicotine metabolism is a critical component for enhancing stress response intensity of innate immunity system in tobacco. Zhongbang Song,Ruixue Wang,Hongbo Zhang,Zhijun Tong,Cheng Yuan,Yong Li,Changjun Huang,Lu Zhao,Yuehu Wang,Yingtong Di,Xueyi Sui. 2024

[13]Identification Of Tpx2 Gene Family I.n Upland Cotton And I ts Functional Analysis In Cotton Fiber Development. Zhang, Shuya,Zhang, Lipeng,Shi, Yuzhen,Jiang, Xiao,Ge, Qun,Gong, Wankui,Jia, Tingting,Li, Junwen,Shang, Haihong,Fan, Liqiang,Lei, Kang,Zhang, Zhibin,Zhen, Zhang,Deng, Xiaoying,Peng, Huo,Fan, Senmiao,Huang, Jinyong,Liu, Aiying,Shang, Haihong,Yuan, Youlu,Yuan, Youlu,Gong, Juwu,Zou, Xianyan. 2019

[14]Quantitative Trait Locus Mapping For P.lant Height And Branch N umber In An Upland Cotton Recombinant Inbred Line With An Snp-Based High-Density Genetic Map. Shi, Yuzhen,Xu, Aixia,Shang, Haihong,Liu, Aiying,Shang, Haihong,Yuan, Youlu,Zhang, Zhibin,Zou, Xianyan,Zhang, Zhen,Yuan, Youlu,Zhang, Zhen,Gong, Wankui,Gong, Juwu,Jiang, Xiao,Huang, Zhen,Fan, Senmiao,Ge, Qun,Deng, Xiaoying,Fan, Liqiang,Li, Junwen,Lei, Kang. 2019

[15]Genome Resequencing Reveals Genetic Variation B.etween The Parents Of A n Elite Hybrid Upland Cotton. Ma, Xiongfeng,He, Kunlun,Li, Wei,Pei, Xiaoyu,Ren, Zhongying,Song, Chengxiang,Liu, Yangai,Yang, Daigang,Sun, Kuan,Wang, Zhenyu,Song, Chengxiang,Zhang, Fei,Zhou, Xiaojian. 2018

[16]Association Mapping Analysis Of Fiber Y.ield And Quality Traits I n Upland Cotton (Gossypium Hirsutum L.). Ademe, Mulugeta Seyoum,Du, Xiongming,Li, Lin,Ma, Zhiying,Sun, Junling,Cai, Zhongmin,Wang, Liru,Zhu, Haiyong,Jia, Yinhua,He, Shoupu,Wang, Qinglian,Yang, Jinlong,Zhang, Jinbiao,Pang, Baoyin,Zhang, Xin,Liu, Jinhai,Qin, Hongde,Zhang, Xuelin,Zhou, Guanyin,Li, Zhikun,Huang, Aifen,Pan, Zhaoe,Yang, Jun,Liu, Hui,Yi, Xianda. 2017

[17]Genome-Wide Comparative Transcriptome Analysis Of C.ms-D2 And Its Maintainer A nd Restorer Lines In Upland Cotton. Zhang, Bingbing,Xing, Chaozhu,Zhang, Meng,Zhang, Jinfa,Zhang, Xuexian,Qi, Tingxiang,Guo, Liping,Wang, Hailin,Wu, Jianyong,Wu, Jianyong. 2017

[18]A High Density Slaf-Seq Snp G.enetic Map And Qtl F or Seed Size, Oil And Protein Content In Upland Cotton. Yang, Le,Wang, Wenwen,Teng, Zhonghua,Yang, Peng,Ali, Iftikhar,Zhang, Zhengsheng,Zhang, Jian,Sun, Ying,Liu, Dexin,Liu, Dajun,Guo, Kai,Liu, Fang,Ou, Yuncan,Ma, Junrui,Liu, Tianpeng,Cai, Xiaoyan. 2019

[19]Multi-Locus Genome-Wide Association Studies Of F.iber-Quality Related Traits In C hinese Early-Maturity Upland Cotton. Su, Junji,Su, Junji,Su, Junji,Ma, Qi,Wang, Caixiang,Su, Junji,Hao, Fushun,Li, Mei. 2018

[20]Gwas Analysis And Qtl Identification O.f Fiber Quality Traits A nd Yield Components In Upland Cotton Using Enriched High-Density Snp Markers. Pan, Jingtao,Xiao, Xianghui,Gong, Juwu,Deng, Xiaoying,Zhang, Qi,Jiang, Xiao,Duan, Li,Liu, Aiying,Zou, Xianyan,Hafeez, Abdul,Liu, Ruixian,Zhang, Zhen,Lu, Quanwei,Li, Junwen,Gong, Juwu,Yuan, Youlu,Wankui Gong,Lu, Quanwei,Liu, Ruixian,Xiao, Xianghui,Chen, Quanjia,Shi, Yuzhen,Shang, Haihong,Li, Shaoqi,Iqbal, Muhammad S.,Geng, Hongwei,Yuan, Youlu,Ge, Qun. 2018

作者其他论文 更多>>