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QTL mapping and comparative genome analysis of agronomic traits including grain yield in winter rye

机译:QTL测绘和对比较基因组分析,包括冬季黑麦籽粒产量

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Winter rye (Secale cereale L.) is a multipurpose cereal crop closely related to wheat, which offers the opportunity for a sustainable production of food and feed and which continues to emerge as a renewable energy source for the production of bioethanol and biomethane. Rye contributes to increase agricultural crop species diversity particularly in Central and Eastern Europe. In contrast to other small grain cereals, knowledge on the genetic architecture of complex inherited, agronomic important traits is yet limited for the outbreeding rye. We have performed a QTL analysis based on a F-2:3 design and testcross performance of 258 experimental hybrids in multi-environmental field trials. A genetic linkage map covering 964.9 cM based on SSR, conserved-orthologous set (COS), and mixed-phase dominant DArT markers allowed to describe 22 QTL with significant effects for grain yield, heading date, tiller number, and thousand grain weight across seven environments. Using rye COS markers, orthologous segments for these traits have been identified in the rice genome, which carry cloned and functionally characterized rice genes. The initial genome scan described here together with the existing knowledge on candidate genes provides the basis for subsequent analyses of the genetic and molecular mechanisms underlying agronomic important traits in rye.
机译:冬季黑麦(Secale Cereale L.)是与小麦密切相关的多用途谷物庄稼,为粮食和饲料的可持续生产提供了机会,并继续出现作为生产生物乙醇和生物甲烷的可再生能源。黑麦有助于特别是在中欧和东欧的农业作物物种多样性增加。与其他小谷物谷物相比,关于复杂的遗传遗传建筑的知识,农艺学的重要特征尚未限制偏用黑麦。我们根据F-2:3设计和Testcross性能进行了多环境实地试验中的258个实验杂种的QTL分析。覆盖基于SSR的964.9cm的遗传联系地图,并允许混合相位优势镖标记物描述22 QTL,对谷物产量,标题日,分蘖数和七个七个葡萄粒重量进行了重大影响环境。使用Rye COS标记,在水稻基因组中鉴定了这些性状的直序段,其携带克隆和功能表征的水稻基因。与候选基因的现有知识一起进行了初始基因组扫描为后续分析黑麦农艺学重要性状的遗传和分子机制提供了基础。

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