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首页> 外文期刊>Scientific reports. >A high-density consensus linkage map of white lupin highlights synteny with narrow-leafed lupin and provides markers tagging key agronomic traits
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A high-density consensus linkage map of white lupin highlights synteny with narrow-leafed lupin and provides markers tagging key agronomic traits

机译:高密度的白色羽扇豆共有连锁图谱突出显示了与阔叶羽扇豆的并存,并提供了标记关键农艺性状的标记

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White lupin (Lupinus albus L.) is a valuable source of seed protein, carbohydrates and oil, but requires genetic improvement to attain its agronomic potential. This study aimed to (i) develop a new high-density consensus linkage map based on new, transcriptome-anchored markers; (ii) map four important agronomic traits, namely, vernalization requirement, seed alkaloid content, and resistance to anthracnose and Phomopsis stem blight; and, (iii) define regions of synteny between the L. albus and narrow-leafed lupin (L. angustifolius L.) genomes. Mapping of white lupin quantitative trait loci (QTLs) revealed polygenic control of vernalization responsiveness and anthracnose resistance, as well as a single locus regulating seed alkaloid content. We found high sequence collinearity between white and narrow-leafed lupin genomes. Interestingly, the white lupin QTLs did not correspond to previously mapped narrow-leafed lupin loci conferring vernalization independence, anthracnose resistance, low alkaloids and Phomopsis stem blight resistance, highlighting different genetic control of these traits. Our suite of allele-sequenced and PCR validated markers tagging these QTLs is immediately applicable for marker-assisted selection in white lupin breeding. The consensus map constitutes a platform for synteny-based gene cloning approaches and can support the forthcoming white lupin genome sequencing efforts.
机译:白羽扇豆(Lupinus albus L.)是种子蛋白,碳水化合物和油的重要来源,但需要遗传改良才能获得其农艺潜力。这项研究旨在(i)基于新的转录组锚定标记,开发新的高密度共有连锁图谱; (ii)绘制四个重要的农艺性状,即春化要求,种子生物碱含量以及对炭疽病和拟南芥枯萎病的抗性; (iii)定义了白bus和窄叶羽扇豆(L. angustifolius L.)基因组之间的同调区域。白色羽扇豆数量性状基因座(QTL)的地图显示春化响应性和炭疽病抗性的多基因控制,以及调节种子生物碱含量的单个基因座。我们发现白羽扇豆羽扇豆基因组之间的高序列共线性。有趣的是,白色羽扇豆QTL与先前定位的赋予春化独立性,炭疽病抗性,低生物碱和拟南芥茎叶枯萎病抗性的窄叶羽扇豆基因座不符,突显了这些性状的不同遗传控制。我们标记这些QTL的等位基因测序和PCR验证标记套件可立即用于白羽扇豆育种中的标记辅助选择。共有图谱构成了基于同义基因克隆方法的平台,可以支持即将到来的白羽扇豆基因组测序工作。

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