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Genetic dissection of the introgressive genomic components from Gossypium barbadense L. that contribute to improved fiber quality in Gossypium hirsutum L.

机译:棉(Gossypium barbadense L.)渐渗基因组成分的遗传解剖,有助于提高陆地棉(Gossypium hirsutum L)的纤维质量。

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We crossed Luyuan343, containing the Gossypium barbadense (GB) genomic component, with Lumianyan22, a high-yielding Gossypium hirsutum (GH) variety, to evaluate the introgressive exogenous genomic components that contribute to fiber quality in upland cotton. A total of 158 of 334 mapping simple sequence repeats (SSR) loci screened from 18,467 SSR primer pairs were identified as putative GB introgression loci. Twenty-four quantitative trait loci (QTLs) for fiber quality and lint percentage were detected by WinQTLCart 2.5 based on three phenotypic datasets collected over 2 years in two different locations. Of these QTLs, 20 were mapped in the introgression chromosomal regions; the GB alleles contributed to improved fiber quality at eight loci, which were located in the introgression segments of chromosome (Chr.) 3, Chr.7 and Chr.25. A total of eight digenic epistasis and nine significant QTL x environment (QE) interactions were identified by QTLNetwork-2.2. Fiber elongation was found to be most easily influenced by environment since all QTLs for this trait showed significant QE interaction with large effects. Fiber length, fiber strength, and lint percentage were scarcely affected by environment as no or minor QE interaction effects for these traits were detected. Genome-wide identification of the introgressive GB components and mapping of the fiber-related QTLs indentified in this study will be beneficial for the simultaneous marker-assistant selection of improved fiber quality and lint yield in upland cotton breeding.
机译:我们将包含Barbarense(GB)基因组成分的Luyuan343与高产陆地棉(GH)品种Lumianyan22进行了杂交,以评估有助于陆地棉纤维质量的外源基因组。从18,467个SSR引物对中筛选出的334个作图简单序列重复(SSR)基因座中,共有158个被鉴定为推定的GB基因渗入基因座。 WinQTLCart 2.5基于两年来在两个不同地点收集的三个表型数据集,通过WinQTLCart 2.5检测了24个纤维质量和皮棉百分比的定量性状位点(QTL)。在这些QTL中,有20个位于基因渗入染色体区域。 GB等位基因在位于8号染色体(Chr。),Chr.7和Chr.25的渐渗区段中的八个基因座上有助于改善纤维质量。通过QTLNetwork-2.2总共确定了8个双基因上位性和9个重要的QTL x环境(QE)相互作用。发现纤维伸长率最容易受到环境的影响,因为针对此性状的所有QTL均显示出显着的QE相互作用,且效果显着。纤维长度,纤维强度和皮棉百分比几乎不受环境的影响,因为未检测到这些性状的QE交互作用或对它们的影响较小。本研究中确定的全基因组渗入性GB成分的全基因组鉴定和与纤维相关的QTL定位将有利于陆地棉育种同时进行标记辅助选择,以提高纤维质量和皮棉产量。

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