首页> 外文期刊>Evolution: International Journal of Organic Evolution >QTL linkage mapping of zebra finch beak color shows an oligogenic control of a sexually selected trait
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QTL linkage mapping of zebra finch beak color shows an oligogenic control of a sexually selected trait

机译:斑马雀科喙颜色的QTL连锁图显示了性选择特征的寡聚控制

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Mate choice based on sexual ornaments can impose strong selection, which raises the question of how genetic variation in ornaments is maintained. One mechanism that has been proposed is genic capture. If ornament expression is influenced by general condition and condition is under polygenic control, selection will be inefficient in removing genetic variation. Here we analyze whether the genetic architecture of beak color in a population of zebra finches supports this hypothesis. Zebra finch beak color is commonly assumed to be under strong selection by mate choice, although some of the evidence is ambiguous. We show that beak redness has a heritability of 34% in our population and that it is strongly genetically correlated between the sexes, suggesting that it is largely controlled by the same genes in males and females. We mapped variation in beak redness based on 1404 single-nucleotide polymorphism (SNP) markers genotyped in a large pedigree. We find evidence for linkage on four chromosomes (Tgu1, Tgu5, Tgu13, Tgu21), which together explain a large part of the additive genetic variance. Our finding of genomic regions with major additive effects is not consistent with directional selection and genic capture, but rather suggests a role of antagonistic pleiotropy in maintaining genetic variation.
机译:基于性装饰品的伴侣选择会强加选择,这提出了如何保持装饰品遗传变异的问题。已经提出的一种机制是基因捕获。如果装饰物的表达受到一般条件的影响,并且条件处于多基因控制之下,那么选择将无法有效去除遗传变异。在这里,我们分析斑马雀科鸟喙颜色的遗传结构是否支持这一假设。斑马雀科喙的颜色通常被认为是由配偶选择强烈选择的,尽管有些证据是模棱两可的。我们表明,喙发红在我们的人群中具有34%的遗传力,并且在性别之间有很强的遗传相关性,这表明它在很大程度上受到男性和女性相同基因的控制。我们基于在大型谱系中进行基因分型的1404个单核苷酸多态性(SNP)标记,绘制了喙红色的变化。我们发现在四个染色体(Tgu1,Tgu5,Tgu13,Tgu21)上连锁的证据,它们共同解释了很大一部分累加遗传变异。我们发现具有主要累加效应的基因组区域与方向选择和基因捕获并不相符,而是表明拮抗多效性在维持遗传变异中的作用。

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