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Integration of lodging resistance QTL in soybean

机译:大豆抗倒伏性QTL的整合

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Poor lodging resistance could limit increases in soybean yield. Previously, a considerable number of observations of quantitative trait loci (QTL) for lodging resistance have been reported by independent studies. The integration of these QTL into a consensus map will provide further evidence of their usefulness in soybean improvement. To improve informative QTL in soybean, a mapping population from a cross between the Harosoy and Clark cultivars, which inherit major U.S. soybean genetic backgrounds, was used along with previous mapping populations to identify QTL for lodging resistance. Together with 78 QTL for lodging collected from eighteen independent studies, a total of 88 QTL were projected onto the soybean consensus map. A total of 16 significant QTL clusters were observed; fourteen of them were confirmed in either two or more mapping populations or a single population subjected to different environmental conditions. Four QTL (one on chromosome 7 and three on 10) were newly identified in the present study. Further, meta-analysis was used to integrate QTL across different studies, resulting in two significant meta-QTL each on chromosomes 6 and 19. Our results provide deeper knowledge of valuable lodging resistance QTL in soybean, and these QTL could be used to increase lodging resistance.
机译:抗倒伏能力差可能会限制大豆单产的增加。以前,独立研究已经报道了许多有关倒伏抗性的数量性状基因座(QTL)的观察结果。将这些QTL整合到共识图谱中将进一步证明它们在大豆改良中的有用性。为了改善大豆中的信息QTL,使用了Harosoy和Clark品种之间的杂交种群,这些种群继承了美国大豆的主要遗传背景,并与以前的作图种群一起鉴定了抗倒伏的QTL。连同从18项独立研究中收集的78个QTL一起,将总共88个QTL投影到大豆共识图上。总共观察到16个重要的QTL簇;其中有14个在两个或两个以上的作图种群中或一个在不同环境条件下的单一种群中得到确认。在本研究中新鉴定了四个QTL(一个位于7号染色体上,三个位于10号染色体上)。此外,通过荟萃分析将QTL整合到不同研究中,从而在6号和19号染色体上分别产生两个重要的meta-QTL。抵抗性。

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