QTL mapping and genetic effect of chromosome segment substitution lines with excellent fiber quality from Gossypium hirsutum × Gossypium barbadense

Chromosome segment substitution lines (CSSLs) are ideal materials for identifying genetic effects. In this study, CSSL MBI7561 with excellent fiber quality that was selected from BC 4 F 3:5 of CCRI45 ( Gossypium hirsutum ) × Hai1 ( Gossypium barbadense ) was used to construct 3 secondary segregating...

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Veröffentlicht in:Molecular genetics and genomics : MGG 2019-10, Vol.294 (5), p.1123-1136
Hauptverfasser: Li, Shao-qi, Liu, Ai-ying, Kong, Ling-lei, Gong, Ju-wu, Li, Jun-wen, Gong, Wan-kui, Lu, Quan-wei, Li, Peng-tao, Ge, Qun, Shang, Hai-hong, Xiao, Xiang-hui, Liu, Rui-xian, Zhang, Qi, Shi, Yu-zhen, Yuan, You-lu
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Sprache:eng
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Zusammenfassung:Chromosome segment substitution lines (CSSLs) are ideal materials for identifying genetic effects. In this study, CSSL MBI7561 with excellent fiber quality that was selected from BC 4 F 3:5 of CCRI45 ( Gossypium hirsutum ) × Hai1 ( Gossypium barbadense ) was used to construct 3 secondary segregating populations with 2 generations (BC 5 F 2 and BC 5 F 2:3 ). Eighty-one polymorphic markers related to 33 chromosome introgressive segments on 18 chromosomes were finally screened using 2292 SSR markers which covered the whole tetraploid cotton genome. A total of 129 quantitative trait loci (QTL) associated with fiber quality (103) and yield-related traits (26) were detected on 17 chromosomes, explaining 0.85–30.35% of the phenotypic variation; 39 were stable (30.2%), 53 were common (41.1%), 76 were new (58.9%), and 86 had favorable effects on the related traits. More QTL were distributed in the Dt subgenome than in the At subgenome. Twenty-five stable QTL clusters (with stable or common QTL) were detected on 22 chromosome introgressed segments. Finally, the 6 important chromosome introgressed segments ( Seg-A02-1, Seg-A06-1, Seg-A07-2, Seg-A07-3, Seg-D07-3 , and Seg-D06-2 ) were identified as candidate chromosome regions for fiber quality, which should be given more attention in future QTL fine mapping, gene cloning, and marker-assisted selection (MAS) breeding.
ISSN:1617-4615
1617-4623
DOI:10.1007/s00438-019-01566-8