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通过选择性基因分型导入 的纤维品质 QTL 的验证。

Validation of QTLs for Fiber Quality Introgressed from by Selective Genotyping.

机构信息

School of Life Sciences, Nantong University, Nantong, Jiangsu 226019, P.R. China.

Agricultural Science Institute of Coastal Region of Jiangsu, Yancheng, Jiangsu 224002, P.R. China.

出版信息

G3 (Bethesda). 2020 Jul 7;10(7):2377-2384. doi: 10.1534/g3.120.401125.

Abstract

Gene introgression from wild species has been shown to be a feasible approach for fiber quality improvement in Upland cotton. Previously, we developed an interspecific × advanced-backcross population and mapped over one hundred QTL for fiber quality traits. In the current study, a trait-based selective genotyping approach was utilized to prioritize a small subset of introgression lines with high phenotypic values for different fiber quality traits, to simultaneously validate multiple fiber quality QTL in a single experiment. A total of 75 QTL were detected by CIM and/or single-marker analysis, including 11 significant marker-trait associations ( < 0.001) and three putative associations ( < 0.005) also reported in earlier studies. The QTL that have been validated include three each for fiber length, micronaire, and elongation, and one each for fiber strength and uniformity. Collectively, about 10% of the QTL previously reported have been validated here, indicating that selective genotyping has the potential to validate multiple marker-trait associations for different traits, especially those with a moderate to large-effect detected simultaneously in one experimental population. The alleles contributed to improved fiber quality for all validated loci. The results from this study will lay the foundation for further fine mapping, marker-assisted selection and map-based gene cloning.

摘要

从野生种中导入基因已被证明是提高陆地棉纤维品质的一种可行方法。以前,我们开发了一个种间杂种×高级回交群体,并对一百多个纤维品质性状的 QTL 进行了作图。在本研究中,采用基于性状的选择性基因分型方法,优先选择一小部分具有高表型值的导入系,用于同时在单个实验中验证多个纤维品质 QTL。通过 CIM 和/或单标记分析共检测到 75 个 QTL,包括 11 个显著的标记-性状关联(<0.001)和 3 个假定的关联(<0.005),这些关联也在早期研究中报道过。已验证的 QTL 包括纤维长度、马克隆值和伸长率各 3 个,纤维强度和均匀度各 1 个。总的来说,大约 10%的先前报道的 QTL 在这里得到了验证,这表明选择性基因分型具有验证不同性状的多个标记-性状关联的潜力,特别是在一个实验群体中同时检测到具有中等至较大效应的关联。所有已验证的位点的等位基因都有助于提高纤维品质。本研究的结果将为进一步的精细作图、标记辅助选择和基于图谱的基因克隆奠定基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6530/7341125/ec0d3b3f1a33/2377f1.jpg

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