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The developmental genetics of micr oevolution

机译:微型发展的发育遗传学

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What is the relationship between variation that segregates within natural populations and the differences that distinguish species? Many studies over the past century have demonstrated that most of the genetic variation within natural populations that contributes to quantitative traits causes relatively small phenotypic effects. In contrast, the genetic causes of quantitative differences between species are at least sometimes caused by few loci of relatively large effect. In addition, most of the results from evolutionary developmental biology are often discussed as though changes at just a few important 'molecular toolbox' genes provide the key clues to morphological evolution. On the face of it, these divergent results seem incompatibie and call into question the neo-Darwinian view that differences between species emerge from precisely the same kinds of variants that segregate much of the time in natural populations. One prediction from the classical model is that many different genes can evolve to generate similar phenotypes. I discuss our studies that demonstrate that similar phenotypes have evolved in multiple lineages of Drosopbila by evolution of the same gene, sbavenbaby/ovo. This evidence for parallel evolution suggests that svb occupies a privileged position in the developmental network patterning larval trichomes that makes it a favourable target of evolutionary change.
机译:在自然群体中分离的变化与区分物种的差异是什么?过去世纪的许多研究表明,有助于定量性状的天然群体内的大多数遗传变异导致相对较小的表型效应。相反,物种之间的定量差异的遗传原因至少有时甚至几个相对较大的效果的基因率。此外,通常讨论进化发育生物学的大多数结果,因为只有一些重要的“分子工具箱”基因的变化提供了形态学的关键线索。面对它,这些不同的结果似乎是不可能的,并呼吁质疑新达尔文观点,这些观点中的差异从精确相同种类的变体中出现,这些变体大部分时间都在自然群体中分离了大部分时间。来自古典模型的一个预测是许多不同的基因可以演化以产生类似的表型。我讨论了我们的研究表明,通过同一基因,Sbavenbaby / Ovo的演变,在Droosopbila的多个谱系中已经进化了类似的表型。这种平行进化的证据表明,SVB在发育网络图案中占据了幼虫奶酪的特权位置,使其成为进化变革的有利目标。

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