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Identification of candidate genes controlling fiber quality traits in upland cotton through integration of meta-QTL, significant SNP and transcriptomic data

机译:通过整合Meta-QTL,重要的SNP和转录组数据来鉴定旱麻棉中纤维质量性状的候选基因

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摘要

Abstract Background Meta-analysis of quantitative trait locus (QTL) is a computational technique to identify consensus QTL and refine QTL positions on the consensus map from multiple mapping studies. The combination of meta-QTL intervals, significant SNPs and transcriptome analysis has been widely used to identify candidate genes in various plants. Results In our study, 884 QTLs associated with cotton fiber quality traits from 12 studies were used for meta-QTL analysis based on reference genome TM-1, as a result, 74 meta-QTLs were identified, including 19 meta-QTLs for fiber length; 18 meta-QTLs for fiber strength; 11 meta-QTLs for fiber uniformity; 11 meta-QTLs for fiber elongation; and 15 meta-QTLs for micronaire. Combined with 8 589 significant single nucleotide polymorphisms associated with fiber quality traits collected from 15 studies, 297 candidate genes were identified in the meta-QTL intervals, 20 of which showed high expression levels specifically in the developing fibers. According to the function annotations, some of the 20 key candidate genes are associated with the fiber development. Conclusions This study provides not only stable QTLs used for marker-assisted selection, but also candidate genes to uncover the molecular mechanisms for cotton fiber development.
机译:摘要背景,数量特质基因座(QTL)的元分析是一种计算QTL共识和优化QTL位置的计算技术,从多重映射研究中达到共识图。 Meta-QTL间隔,显着的SNP和转录组分析的组合已被广泛用于识别各种植物中的候选基因。结果我们的研究中,基于参考基因组TM-1的12项研究中的884例与棉花纤维质量特征相关的QTL分析,结果,确定了74个Meta-QTL,包括19个Meta-QTL用于纤维长度; 18个META-QTL用于纤维强度; 11个META-QTL用于纤维均匀性; 11个META-QTL用于纤维伸长率;和15个Meta-QTL用于Micronaire。结合8 589个与来自15项研究中收集的纤维质量性状相关的显着单核苷酸多态性,在Meta-QTL间隔中鉴定了297个候选基因,其中20个在显影纤维中显示出高表达水平。根据功能注释,20个关键候选基因中的一些与光纤发育相关联。结论本研究不仅提供用于标记辅助选择的稳定QTL,而且还提供候选基因,以发现棉纤维发育的分子机制。

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