首页 | 本学科首页   官方微博 | 高级检索  
   检索      


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
Authors:Zhen Zhang  Junwen Li  Muhammad Jamshed  Yuzhen Shi  Aiying Liu  Juwu Gong  Shufang Wang  Jianhong Zhang  Fuding Sun  Fei Jia  Qun Ge  Liqiang Fan  Zhibin Zhang  Jingtao Pan  Senmiao Fan  Yanling Wang  Quanwei Lu  Ruixian Liu  Xiaoying Deng  Xianyan Zou  Xiao Jiang  Ping Liu  Pengtao Li  Muhammad Sajid Iqbal  Chuanyun Zhang  Juan Zou  Hong Chen  Qin Tian  Xinhe Jia  Baoqin Wang  Nijiang Ai  Guoli Feng  Yumei Wang  Mei Hong  Shilin Li  Wenming Lian  Bo Wu  Jinping Hua  Chaojun Zhang  Jinyong Huang  Aixia Xu  Haihong Shang  Wankui Gong  Youlu Yuan
Abstract:Cotton is widely cultivated globally because it provides natural fibre for the textile industry and human use. To identify quantitative trait loci (QTLs)/genes associated with fibre quality and yield, a recombinant inbred line (RIL) population was developed in upland cotton. A consensus map covering the whole genome was constructed with three types of markers (8295 markers, 5197.17 centimorgans (cM)). Six fibre yield and quality traits were evaluated in 17 environments, and 983 QTLs were identified, 198 of which were stable and mainly distributed on chromosomes 4, 6, 7, 13, 21 and 25. Thirty‐seven QTL clusters were identified, in which 92.8% of paired traits with significant medium or high positive correlations had the same QTL additive effect directions, and all of the paired traits with significant medium or high negative correlations had opposite additive effect directions. In total, 1297 genes were discovered in the QTL clusters, 414 of which were expressed in two RNA‐Seq data sets. Many genes were discovered, 23 of which were promising candidates. Six important QTL clusters that included both fibre quality and yield traits were identified with opposite additive effect directions, and those on chromosome 13 (qClu‐chr13‐2) could increase fibre quality but reduce yield; this result was validated in a natural population using three markers. These data could provide information about the genetic basis of cotton fibre quality and yield and help cotton breeders to improve fibre quality and yield simultaneously.
Keywords:upland cotton  consensus genetic map  fibre quality  fibre yield  QTL clusters  genetic correlation  gene expression level
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号