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High-density genetic linkage map construction by F2 populations and QTL analysis of early-maturity traits in upland cotton (Gossypium hirsutum L.)

机译:陆地棉F2群体高密度遗传连锁图谱构建及早熟性状的QTL分析

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摘要

Due to China’s rapidly increasing population, the total arable land area has dramatically decreased; as a consequence, the competition for farming land allocated for grain and cotton production has become fierce. Therefore, to overcome the existing contradiction between cotton grain and fiber production and the limited farming land, development of early-maturing cultivars is necessary. In this research, a high-density linkage map of upland cotton was constructed using genotyping by sequencing (GBS) to discover single nucleotide polymorphism (SNP) markers associated with early maturity in 170 F2 individuals derived from a cross between LU28 and ZHONG213. The high-density genetic map, which was composed of 3978 SNP markers across the 26 cotton chromosomes, spanned 2480 cM with an average genetic distance of 0.62 cM. Collinearity analysis showed that the genetic map was of high quality and accurate and agreed well with the Gossypium hirsutum reference genome. Based on this high-density linkage map, QTL analysis was performed on cotton early-maturity traits, including FT, FBP, WGP, NFFB, HNFFB and PH. A total 47 QTLs for the six traits were detected; each of these QTLs explained between 2.61% and 32.57% of the observed phenotypic variation. A major region controlling early-maturity traits in Gossypium hirsutum was identified for FT, FBP, WGP, NFFB and HNFFB on chromosome D03. QTL analyses revealed that phenotypic variation explained (PVE) ranged from 10.42% to 32.57%. Two potential candidate genes, Gh_D03G0885 and Gh_D03G0922, were predicted in a stable QTL region and had higher expression levels in the early-maturity variety ZHONG213 than in the late-maturity variety LU28. However, further evidence is required for functional validation. This study could provide useful information for the dissection of early-maturity traits and guide valuable genetic loci for molecular-assisted selection (MAS) in cotton breeding.
机译:由于中国人口的快速增长,耕地总面积急剧减少;结果,争夺分配用于谷物和棉花生产的耕地的竞争变得激烈。因此,为了克服棉花籽粒和纤维生产之间的矛盾以及有限的耕地,必须发展早熟品种。在这项研究中,利用测序基因分型(GBS)构建了陆地棉的高密度连锁图谱,以发现与LU28和ZHONG213杂交的170名F2个体的早期成熟相关的单核苷酸多态性(SNP)标记。高密度遗传图谱由跨越26个棉染色体的3978个SNP标记组成,跨度为2480 cM,平均遗传距离为0.62 cM。共线性分析表明,该遗传图谱质量高,准确,与陆地棉参考基因组吻合良好。基于此高密度连锁图谱,对棉花的早熟性状(包括FT,FBP,WGP,NFFB,HNFFB和PH)进行了QTL分析。共检测到这六个性状的47个QTL。这些QTL中的每个解释了所观察到的表型变异的2.61%至32.57%。确定了控制陆地棉早期成熟性状的主要区域,用于D03号染色体上的FT,FBP,WGP,NFFB和HNFFB。 QTL分析表明,表型变异解释(PVE)的范围从10.42%到32.57%。在稳定的QTL区域预测了两个潜在的候选基因Gh_D03G0885和Gh_D03G0922,它们在早熟品种ZHONG213中的表达水平高于晚熟品种LU28。但是,功能验证需要进一步的证据。该研究可为解剖早熟性状提供有用的信息,并为棉花育种中分子辅助选择(MAS)的有价值的遗传位点提供指导。

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