首页> 外文期刊>Frontiers in Plant Science >QTL Analysis of Spike Morphological Traits and Plant Height in Winter Wheat ( Triticum aestivum L.) Using a High-Density SNP and SSR-Based Linkage Map
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QTL Analysis of Spike Morphological Traits and Plant Height in Winter Wheat ( Triticum aestivum L.) Using a High-Density SNP and SSR-Based Linkage Map

机译:基于高密度SNP和SSR的连锁图谱分析冬小麦穗形态特征和株高的QTL分析( Triticum aestivum L。)

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Wheat yield can be enhanced by modifying the spike morphology and the plant height. In this study, a population of 191 F_(9)recombinant inbred lines (RILs) was developed from a cross between two winter cultivars Yumai 8679 and Jing 411. A dense genetic linkage map with 10,816 markers was constructed by incorporating single nucleotide polymorphism (SNP) and simple sequence repeat (SSR) marker information. Five spike morphological traits and plant height were evaluated under nine environments for the RILs and parental lines, and the number of detected environmentally stable QTLs were 18 and three, respectively. The 1RS/1BL (rye) translocation increased both spike length and spikelet number with constant spikelet compactness. The QPht.cau-2D.1 was identical to gene Rht8 , which decreased spike length without modifying spikelet number. Notably, four novel QTLs locating on chromosomes 1AS ( QSc.cau-1A.1 ), 2DS ( QSc.cau-2D.1 ), and 7BS ( QSl.cau-7B.1 and QSl.cau-7B.2 ) were firstly identified in this study, which provide further insights into the genetic factors that shaped the spike morphology in wheat. Moreover, SNP markers tightly linked to previously reported QTLs will eventually facilitate future studies including their positional cloning or marker-assisted selection.
机译:可以通过改变穗状形态和株高来提高小麦产量。在这项研究中,从两个冬季品种豫麦8679和京411的杂交中发展了191个F_(9)重组自交系(RILs)。通过结合单核苷酸多态性(SNP)构建了具有10,816个标记的密集遗传连锁图谱)和简单序列重复(SSR)标记信息。在9个环境下对RIL和亲本进行了5个穗形态特征和株高的评估,检测到的环境稳定QTL分别为18个和3个。 1RS / 1BL(黑麦)易位增加了穗长度和穗数量,同时具有恒定的穗密度。 QPht.cau-2D.1与基因Rht8相同,后者在不改变小穗数目的情况下减少了穗长。值得注意的是,位于染色体1AS(QSc.cau-1A.1),2DS(QSc.cau-2D.1)和7BS(QS1.cau-7B.1和QS1.cau-7B.2)上的四个新QTL分别为。本研究首次鉴定,这为形成小麦穗形态的遗传因素提供了进一步的见识。此外,与先前报道的QTL紧密相连的SNP标记最终将促进未来的研究,包括其位置克隆或标记辅助选择。

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