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Two genomic regions associated with fiber quality traits in Chinese upland cotton under apparent breeding selection

机译:在明显的育种选择下,中国高地棉花中纤维品质性状相关的两个基因组区域

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Fiber quality is one of the most important agronomic traits of cotton, and understanding the genetic basis of its target traits will accelerate improvements to cotton fiber quality. In this study, a panel comprising 355 upland cotton accessions was used to perform genome-wide association studies (GWASs) of five fiber quality traits in four environments. A total of 16, 10 and 7 SNPs were associated with fiber length (FL), fiber strength (FS) and fiber uniformity (FU), respectively, based on the mixed linear model (MLM). Most importantly, two major genomic regions (MGR1 and MGR2) on chromosome Dt7 and four potential candidate genes for FL were identified. Analyzing the geographical distribution of favorable haplotypes (FHs) among these lines revealed that two favorable haplotype frequencies (FHFs) were higher in accessions from low-latitude regions than in accessions from high-latitude regions. However, the genetic diversity of lines from the low-latitude regions was lower than the diversity of lines from the high-latitude regions in China. Furthermore, the FHFs differed among cultivars developed during different breeding periods. These results indicate that FHs have undergone artificial selection during upland cotton breeding in recent decades in China and provide a foundation for the further improvement of fiber quality traits.
机译:纤维质量是棉花最重要的农艺性状之一,了解其目标性状的遗传基础将加速棉花纤维质量的改善。在该研究中,使用包含355升起的棉花释放的面板在四个环境中进行五种纤维质量性状的基因组 - 宽协会研究(GWASS)。基于混合线性模型(MLM),总共16,10和7个SNP与纤维长度(FL),纤维强度(FS)和纤维均匀性(FU)相关联。最重要的是,鉴定了染色体DT7上的两个主要基因组(MGR1和MGR2)和FL的四个潜在候选基因。这些系列中有利单型(FHS)的地理分布揭示了两种有利的单倍型频率(FHFS)在低纬度地区的锯齿中比来自高纬度地区的拆查更高。然而,来自低纬度地区的线的遗传多样性低于中国高纬度地区的数量的多样性。此外,在不同育种期间开发的品种中的FHF不同。这些结果表明,在近几十年来,FHS在中国高地棉花繁殖期间经过人工选择,为进一步提高纤维品质性状提供了基础。

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