Fine mapping of clustered quantitative trait loci for fiber quality on chromosome 7 using a Gossypium barbadense introgressed line
文献类型: 外文期刊
作者: Cao, Zhibin 1 ; Zhu, Xiefei 1 ; Chen, Hong 2 ; Zhang, Tianzhen 1 ;
作者机构: 1.Nanjing Agr Univ, Cotton Res Inst, Natl Key Lab Crop Genet & Germplasm Enhancement, Nanjing 210095, Jiangsu, Peoples R China
2.Xinjiang Acad Agr & Reclamat Sci, Cotton Res Inst, Xinjiang 832000, Peoples R China
关键词: Cotton;CSIL;QTL;Fiber quality;Fine mapping
期刊名称:MOLECULAR BREEDING ( 影响因子:2.589; 五年影响因子:2.75 )
ISSN:
年卷期:
页码:
收录情况: SCI
摘要: By backcrossing and self-pollinating twice, a series of improved lines (BC2F3) of cotton derived from super-quality fiber property chromosome segment introgression lines were developed by molecular marker-assisted selection (MAS). One of these improved lines, 3326-7, in the background of Xinluzao (XLZ) 41, was transferred from an introgression line (IL088-A7-3) derived from a cross between Gossypium hirsutum acc. TM-1 and G. barbadense cv. Hai7124. This line has consistently demonstrated super-quality fiber properties including fiber length, strength, and fineness. To fine-map the clustered fiber quality quantitative trait loci (QTLs), we further crossed the homozygous line 3326-7 with its recurrent parent XLZ41 to produce BC3F2, BC3F3, and BC3F4 populations. A linkage group was constructed using 1248 BC3F2 plants, and QTL analysis using the fiber qualities of 229 recombinants confirmed the existence of qFL-chr. 7 for fiber length, qFS-chr. 7 for fiber strength, and qFM-chr. 7 for micronaire value within the introgressed region, with R-2 values of 18.6, 29.4, and 26.3 %, respectively. The presence of qFL-chr. 7, qFS-chr. 7, and qFM-chr. 7 led to an increase in fiber length and strength of approximately 2.0 mm and 3.0 cN/tex, respectively, and a decrease in micronaire of 0.8. Using substitution mapping with 229 BC3F2 recombinants and 207 BC3F3 and BC3F4 lines with informative recombination breakpoints in the target region, we anchored qFL-chr. 7 for fiber length and qFS-chr. 7 for strength to the same position, with a 0.36-cM interval between the two simple sequence repeat markers, NAU3735 and NAU845. Another QTL, qFM-chr. 7, was mapped to the 0.44-cM interval between MGHES75 and NAU7445. These tightly linked QTLs may explain their positive relationship and have the potential to improve cotton fiber qualities through MAS.
- 相关文献
作者其他论文 更多>>
-
Genomic insights into the genetic basis of cotton breeding in China
作者:Li, Yiqian;Si, Zhanfeng;Shi, Zhuolin;Chen, Jinwen;Qi, Guoan;Jin, Shangkun;Han, Zegang;Gao, Wenhao;Tian, Yue;Fang, Lei;Hu, Yan;Zhang, Tianzhen;Wang, Guoping;Tian, Yue;Mao, Yun;Zhu, Xiefei;Tian, Yue;Chen, Hong
关键词:cotton; MAGIC population; GWAS; whole-genome sequencing; pleiotropic loci; breeding history
-
Genome-wide artificial introgressions of Gossypium barbadense into G. hirsutum reveal superior loci for simultaneous improvement of cotton fiber quality and yield traits
作者:Li, Shaoqi;Kong, Linglei;Xiao, Xianghui;Liu, Aiying;Li, Junwen;Gong, Juwu;Gong, Wankui;Ge, Qun;Shang, Haihong;Pan, Jingtao;Lu, Quanwei;Shi, Yuzhen;Yuan, Youlu;Li, Shaoqi;Zhang, Yuanming;Yuan, Youlu;Li, Pengtao;Lu, Quanwei;Chen, Hong;Peng, Yan
关键词:Interspecific introgression; Cotton CSSLs; Kmer bin; Fiber quality and yield; Simultaneous improvement; Superior loci
-
Genomic insights into genetic improvement of upland cotton in the world's largest growing region
作者:Han, Zegang;Cao, Yiwen;He, Lu;Si, Zhanfeng;Hu, Yan;Liu, Fengjun;Zang, Yihao;Zhao, Ting;Fang, Lei;Zhang, Tianzhen;Chen, Hong;Lin, Hai;Ning, Xinzhu;Li, Jilian;Ma, Qi;Cao, Yiwen;Hu, Yan;Fang, Lei;Zhang, Tianzhen;Zhu, Xiefei
关键词:Genetic improvement; Population genomics; Gossypium hirsutum; Northwest Inland Region
-
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
-
Identifying Functional Genes Influencing Gossypium hirsutum Fiber Quality
作者:Dong, Chengguang;Wang, Juan;Yu, Yu;Zhou, Xiaofeng;Ma, Xiaomei;Li, Baocheng;Chen, Hong;Ju, Longzhen;Mei, Gaofu;Han, Zegang;Si, Zhanfeng;Zhang, Tianzhen
关键词:upland cotton; fiber quality; genome-wide association study; SNP genotyping array; candidate genes