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Discovery and transmission of functional QTL in the pedigree of an elite soybean cultivar Suinong14

机译:优良大豆品种遂农14谱系中功能性QTL的发现和传递

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P>In this study, we extended in silico mapping for single trait to analyse data from multiple environments by calculating intraclass correlations and to mapping pleiotropic QTL for multiple traits by defining new statistic to measure the correlation between multiple traits and the marker. Data sets include phenotypes of eight agronomic traits obtained from six different ecologic environments and years, and genotypic information from 477 polymorphic markers on 14 ancestral lines in the pedigree of 'Suinong14'. With in silico mapping, a total of 39 markers distributed on 14 linkage groups are detected as QTL responsible for eight agronomic traits and 10 QTL are identified as having pleiotropic effects. Tracing transmission of functional QTL in the pedigree indicated that certain QTL, such as Sat_036 on linkage group D1a, Satt182 on linkage group L, and Satt726 on linkage group B2 may be responsible for the contribution of exotic germplasm to the improved cultivars.
机译:在本研究中,我们扩展了单性状的计算机制图,以通过计算类内相关性来分析来自多个环境的数据,并通过定义新的统计数据以测量多个性状与标记之间的相关性来映射多性状的多效性QTL。数据集包括从六个不同的生态环境和年份获得的八个农艺性状的表型,以及来自“ Suinong14”谱系中14条祖先系上的477个多态性标记的基因型信息。通过计算机绘图,共检测到39个标记分布在14个连锁组上,作为负责8个农艺性状的QTL,并鉴定了10个具有多效性的QTL。在谱系中追踪功能性QTL的传播表明,某些QTL,例如连锁群D1a上的Sat_036,连锁群L上的Satt182和连锁群B2上的Satt726,可能是外来种质对改良品种的贡献。

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