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Linkage Analysis and Map Construction in Genetic Populations of Clonal F1 and Double Cross

机译:克隆F1和双交遗传群体的连锁分析和图谱构建。

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In this study, we considered four categories of molecular markers based on the number of distinguishable alleles at the marker locus and the number of distinguishable genotypes in clonal F1 progenies. For two marker loci, there are nine scenarios that allow the estimation of female, male, and/or combined recombination frequencies. In a double cross population derived from four inbred lines, five categories of markers are classified and another five scenarios are present for recombination frequency estimation. Theoretical frequencies of identifiable genotypes were given for each scenario, from which the maximum likelihood estimates of one or more of the three recombination frequencies could be estimated. If there was no analytic solution, then Newton-Raphson method was used to acquire a numerical solution. We then proposed to use an algorithm in Traveling Salesman Problem to determine the marker order. Finally, we proposed a procedure to build the two haploids of the female parent and the two haploids of the male parent in clonal F1. Once the four haploids were built, clonal F1 hybrids could be exactly regarded as a double cross population. Efficiency of the proposed methods was demonstrated in simulated clonal F1 populations and one actual maize double cross. Extensive comparisons with software JoinMap4.1, OneMap, and R/qtl show that the methodology proposed in this article can build more accurate linkage maps in less time.
机译:在这项研究中,我们根据标记位点上可区分的等位基因数量和克隆F1后代中可区分的基因型数量,考虑了四种分子标记。对于两个标记基因座,有九种情况可以估算雌性,雄性和/或组合重组频率。在来自四个自交系的双杂交种群中,对五类标记物进行了分类,并提出了另外五种用于重组频率估计的方案。给出了每种情况下可识别基因型的理论频率,从中可以估算出三个重组频率中一个或多个重组基因的最大似然估计。如果没有解析解,则使用牛顿-拉夫森法获得数值解。然后,我们提出在旅行商问题中使用一种算法来确定标记顺序。最后,我们提出了在克隆F1中构建雌性亲本的两个单倍体和雄性亲本的两个单倍体的程序。一旦构建了四个单倍体,就可以将克隆的F1杂种完全视为双重杂交种群。在模拟的克隆F1种群和一个实际的玉米双杂交中证明了所提出方法的效率。与软件JoinMap4.1,OneMap和R / qtl的广泛比较表明,本文提出的方法可以在更短的时间内构建更准确的链接映射。

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