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首页> 外文期刊>Heredity: An International Journal of Genetics >The genetic architecture of adaptation: convergence and pleiotropy in Heliconius wing pattern evolution
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The genetic architecture of adaptation: convergence and pleiotropy in Heliconius wing pattern evolution

机译:适应的遗传建筑:Heliconius Wing模式演化中的收敛与肺炎

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Unravelling the genetic basis of adaptive traits is a major challenge in evolutionary biology. Doing so informs our understanding of evolution towards an adaptive optimum, the distribution of locus effect sizes, and the influence of genetic architecture on the evolvability of a trait. In the Miillerian co-mimics Heliconius melpomene and Heliconius erato some Mendelian loci affecting mimicry shifts are well known. However, several phenotypes in H. melpomene remain to be mapped, and the quantitative genetics of colour pattern variation has rarely been analysed. Here we use quantitative trait loci (QTL) analyses of crosses between H melpomene races from Peru and Suriname to map, for the first time, the control of the broken band phenotype to WntA and identify a ~100kb region controlling this variation. Additionally, we map variation in basal forewing red-orange pigmentation to a locus centred around the gene ventral veins lacking (vvl). The locus also appears to affect medial band shape variation as it was previously known to do in H. erato. This adds to the list of homologous regions controlling convergent phenotypes between these two species. Finally we show that Heliconius wing-patterning genes are strikingly pleiotropic among wing pattern traits. Our results demonstrate how genetic architecture can shape, aid and constrain adaptive evolution.
机译:解开自适应特征的遗传基础是进化生物学中的主要挑战。这样做就可以了解对进化到自适应最佳,基因座效应大小的分布以及遗传建筑对特征的进化性的影响。在Miillerian共同模仿Heliconius Melpomene和Heliconius Erato一些影响Mimicry Shifts的孟德利座是众所周知的。然而,H. melpomene的几种表型仍然被映射,并且很少分析颜色模式变异的定量遗传学。在这里,我们使用来自秘鲁和苏里南的H Melpomene种族之间的数量特质基因座(QTL)分析,从秘鲁和苏里南到Map,第一次控制破碎的带表型对WnTa并识别控制该变化的〜100kb区域。此外,我们将基部的变异映射到以缺乏(VVL)的基因腹侧静脉围绕基因腹侧静脉为中心的基因座。轨迹还会影响内侧带状变化,因为它以前已知在H. Erato中进行。这增加到控制这两个物种之间的收敛表型的同源区域列表。最后,我们表明HelicoNius Wind-Patterning基因在翼状图案性状中具有惊人的脂肪阶。我们的结果表明了遗传建筑如何塑造,援助和约束适应性的进化。

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