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首页> 外文期刊>The ICAC Recorder >Genome-wide Quantitative Trait Loci Reveal the Genetic Basis of Cotton Fibre Quality and Yield-related Traits
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Genome-wide Quantitative Trait Loci Reveal the Genetic Basis of Cotton Fibre Quality and Yield-related Traits

机译:基因组 - 宽的定量特性基因座揭示了棉纤维质量和产量相关性状的遗传基础

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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 cen-timorgans (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 correla-tions had opposite additive effect directions. 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-chrl3-2) 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.
机译:棉花广泛种植,因为它为纺织工业和人类使用提供天然纤维。为了鉴定与纤维质量和产率相关的定量性状基因座(QTLS)/基因,在Upland棉中开发了重组近交系数(RIL)群。覆盖整个基因组的共识图是用三种类型的标记构建(8295个标记,5197.17 Cen-Timorgans(CM))。在17种环境中评估了六种纤维产量和质量性状,并确定了983个QTL,其中198种稳定性,主要分布在染色体4,6,7,13,21和25中。确定了三十七个QTL簇。其中具有显着介质或高正相关的92.8%的成对性状具有相同的QTL添加效果方向,并且具有显着介质或高负相关性的所有成对性状具有相反的添加效果方向。包含纤维质量和产率特征的六种重要QTL簇用相反的添加剂效应方向鉴定,并且13染色体13 [QClu-CHRL3-2)可以提高纤维质量,但降低产量;使用三个标记的自然群体验证了该结果。这些数据可以提供有关棉纤维质量和产量的遗传基础的信息,并帮助棉育植物同时提高纤维质量和产量。

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