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Inclusive Composite Interval Mapping of QTL by Environment Interactions in Biparental Populations

机译:双亲群体中环境相互作用对QTL的包容性复合区间映射

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摘要

Identification of environment-specific QTL and stable QTL having consistent genetic effects across a wide range of environments is of great importance in plant breeding. Inclusive Composite Interval Mapping (ICIM) has been proposed for additive, dominant and epistatic QTL mapping in biparental populations for single environment. In this study, ICIM was extended to QTL by environment interaction (QEI) mapping for multi-environmental trials, where the QTL average effect and QEI effects could be properly estimated. Stepwise regression was firstly applied in each environment to identify the most significant marker variables which were then used to adjust the phenotypic values. One-dimensional scanning was then conducted on the adjusted phenotypic values across the environments in order to detect QTL with either average effect or QEI effects, or both average effect and QEI effects. In this way, the genetic background could be well controlled while the conventional interval mapping was applied. An empirical method to determine the threshold of logarithm of odds was developed, and the efficiency of the ICIM QEI mapping was demonstrated in simulated populations under different genetic models. One actual recombinant inbred line population was used to compare mapping results between QEI mapping and single-environment analysis.
机译:鉴定在各种环境中具有一致遗传效应的环境特异性QTL和稳定QTL在植物育种中非常重要。已提出包容性复合间隔映射(ICIM),用于在单一环境中双亲群体中的加性,显性和上位性QTL映射。在这项研究中,ICIM通过环境交互(QEI)映射扩展到QTL,以进行多环境试验,在该试验中可以正确估计QTL的平均效应和QEI效应。首先在每个环境中应用逐步回归,以识别最重要的标记变量,然后将其用于调整表型值。然后在整个环境中对调整后的表型值进行一维扫描,以检测具有平均效应或QEI效应或平均效应和QEI效应的QTL。这样,当应用常规间隔作图时,可以很好地控制遗传背景。建立了确定对数对数阈值的经验方法,并在不同遗传模型下的模拟人群中证明了ICIM QEI定位的效率。使用一个实际的重组自交系种群来比较QEI定位和单环境分析之间的定位结果。

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  • 年(卷),期 -1(10),7
  • 年度 -1
  • 页码 e0132414
  • 总页数 22
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