Quantitative trait locus mapping and identification of candidate genes for resistance to Verticillium wilt in four recombinant inbred line populations of Gossypium hirsutum
文献类型: 外文期刊
第一作者: Wang, Yuxiang
作者: Wang, Yuxiang;Zhao, Jieyin;Chen, Qin;Zheng, Kai;Deng, Xiaojuan;Gao, Wenju;Geng, Shiwei;Deng, Yahui;Chen, Quanjia;Qu, Yanying;Li, Chunping;Pei, Wenfeng
作者机构:
关键词: Gossypium hirsutum; Verticillium wilt; QTL; Gh_CPR30
期刊名称:PLANT SCIENCE ( 影响因子:5.363; 五年影响因子:5.454 )
ISSN: 0168-9452
年卷期: 2023 年 327 卷
页码:
收录情况: SCI
摘要: Improving resistance to Verticillium wilt is of great significance for achieving high and stable yields of Upland cotton (Gossypium hirsutum). To deeply understand the genetic basis of cotton resistance to Verticillium wilt, Verticillium wilt-resistant Upland Lumianyan 28 and four Verticillium wilt-susceptible Acala cotton cultivars were used to create four recombinant inbred line (RIL) populations of 469 families through nested hybridization. Phenotypic data collected in five stressful environments were used to select resistant and sensitive lines and create a mixed pool of extreme phenotypes for BSA-seq. A total of 8 QTLs associated with Verticillium wilt resistance were identified on 4 chromosomes, of which qVW-A12-5 was detected simultaneously in the RIL populations and in one of the RIL populations and was identified for the first time. According to the sequence comparison and transcriptome analysis of candidate genes in the QTL interval between parents and pools, 4 genes were identified in the qVW-A12-5 interval. qRT-PCR of parental and phenotypically extreme lines revealed that Gh_CPR30 was induced by and may be a candidate gene for resistance to Verticillium wilt in G. hirsutum. Furthermore, VIGS technology revealed that the disease severity index (DSI) of the Gh_CPR30silenced plants was significantly higher than that of the control. These results indicate that the Gh_CPR30 gene plays an important role in the resistance of G. hirsutum to Verticillium wilt, and the study provides a molecular basis for analyzing the molecular mechanism underlying G. hirsutum resistance to Verticillium wilt.
分类号:
- 相关文献
作者其他论文 更多>>
-
Genome-wide analysis of HACD family genes and functional characterization of GhHACD2 for very long chain fatty acids biosynthesis in Gossypium hirsutum
作者:Yan, Minwen;Xi, Hongyuan;Hu, Shoulin;Hu, Shiyin;Song, Jikun;Jia, Bing;Feng, Pan;Yang, Liupeng;Ma, Jianjiang;Wang, Li;Pei, Wenfeng;Zhang, Bingbing;Yu, Jiwen;Wu, Man
关键词:VLCFA; 3-hydroxyacyl-CoA dehydratase; phylogenetic analysis; co-expression; pathway; qRT-PCR
-
Combined genome and transcriptome analysis of elite fiber quality in Gossypium barbadense
作者:Song, Xiaohui;Zhu, Guozhong;Su, Xiujuan;Yu, Yujia;Duan, Yujia;Wang, Haitang;Shang, Xiaoguang;Guo, Wangzhen;Song, Xiaohui;Zhu, Guozhong;Su, Xiujuan;Yu, Yujia;Duan, Yujia;Wang, Haitang;Shang, Xiaoguang;Guo, Wangzhen;Su, Xiujuan;Chen, Quanjia;Xu, Haijiang
关键词:
-
Genome-Wide and Expression Pattern Analysis of the HIT4 Gene Family Uncovers the Involvement of GHHIT4_4 in Response to Verticillium Wilt in Gossypium hirsutum
作者:Zhang, Guoli;Wang, Zhijun;Zhu, Jincheng;Zhang, Guoli;Jiao, Yang;Chen, Quanjia;Zhang, Guoli;Jiao, Yang;Zhao, Zengqiang;Wang, Zhijun;Zhu, Jincheng;Jiao, Yang;Zhao, Zengqiang;Lv, Ning;Sun, Guoqing
关键词:G. hirsutum; HIT4; Verticillium wilt; phylogenetic analysis; multiple synteny; expression pattern; WGCNA; VIGS; transgenic tobacco
-
Functional Analysis of the GhIQD1 Gene in Cotton Resistance to Verticillium Wilt
作者:Xu, Jianglin;Wang, Yongqiang;Chen, Quanjia;Zheng, Kai;Xu, Jianglin;Zhou, Ting;Wang, Yongqiang;Yang, Yejun;Sun, Guoqing;Zhou, Ting;Yang, Yejun;Pu, Yuanchun
关键词:cotton; chlorosis; plant hormones; calmodulin-binding protein
-
InDel variations and gene expression analysis related to Fusarium wilt resistance in Gossypium barbadense
作者:Liu, Baojun;Qu, Yanying;Gu, Aixing;Han, Wanli;Yu, Yu;Wang, Xuwen;Bai, Jianyu
关键词:
-
GRU-Transformer: A Novel Hybrid Model for Predicting Soil Moisture Content in Root Zones
作者:Zheng, Wengang;Zheng, Kai;Zheng, Wengang;Zhangzhong, Lili;Lan, Renping;Yu, Jingxin;Gao, Lutao;Zhangzhong, Lili;Yu, Jingxin;Xu, Linlin
关键词:GRU; transformer; soil moisture content; deep learning
-
Co-localization and analysis of miR477b with fiber length quantitative trait loci in cotton
作者:Song, Jikun;Jin, Changyin;Pei, Wenfeng;Zhang, Bingbing;Jia, Bing;Wu, Man;Ma, Jianjiang;Liu, Ji;Yu, Jiwen;Liu, Guoyuan;Jin, Changyin;Zhang, Jinfa
关键词:Gossypium; miR477b; QTL co-localization; RNA-Seq; VIGS