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QTLs for agronomic traits detected in recombinant inbred lines derived from a bread wheat × spelt cross

机译:面包小麦重组杂种自交系中检测到的农艺性状的QTL×拼写杂交

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Spelt wheat ( Triticum aestivum subsp. spelta ), a subspecies of common wheat, is a genetic resource for the breeding of bread wheat ( T. aestivum subsp. aestivum ); however, genetic analyses of agronomic traits in bread wheat × spelt crosses are insufficient. Here, we conducted QTL analysis in the recombinant inbred lines from a bread wheat × spelt cross. In addition to the major Q locus, QSpd.obu-4D was detected with the spelt allele conferring a higher spikelet density than the bread wheat allele. The effect of QSpd.obu-4D was evident in the presence of the Q allele of bread wheat, suggesting that this variation might be cryptic in spelt wheat with the q allele. Two QTLs with stable effects were identified for grain length, one of which ( QGl.obu-1A ) has never been detected in a bread wheat × spelt cross. The spelt wheat allele at QHt.obu-7B conferring later heading was identified in the Vrn-B3 region and could be a novel gene source for modifying heading time. Furthermore, QGi.obu-2B , responsible for low grain dormancy of spelt wheat, was detected. Further exploration and identification of useful QTLs could accelerate the utilization of spelt wheat as a genetic resource for bread wheat breeding programs.
机译:普通小麦的一个亚种,即拼小麦(Triticum aestivum subsp。spelta spelta)是育种面包小麦(T. aestivum subsp。aestivum)的遗传资源。但是,对面包小麦×拼写杂交的农艺性状的遗传分析不足。在这里,我们对面包小麦×拼写杂交的重组自交系进行了QTL分析。除了主要的Q基因座,还检测到QSpd.obu-4D的拼写等位基因比面包小麦等位基因具有更高的小穗密度。 QSpd.obu-4D的作用在面包小麦的Q等位基因存在时很明显,表明这种变异可能在带有q等位基因的拼写小麦中是隐秘的。确定了两个对籽粒长度具有稳定作用的QTL,其中一个(QGl.obu-1A)在面包小麦×拼写杂交中从未发现。在Vrn-B3区域鉴定到了QHt.obu-7B处的小麦等位基因,可赋予后来的抽穗期,这可能是改变抽穗期的新基因来源。此外,还检测到QGi.obu-2B(造成拼写小麦的低谷休眠)。进一步探索和鉴定有用的QTL可以加快将拼写小麦作为面包小麦育种计划的遗传资源的利用。

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