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The evolution of gene regulation underlies a morphological difference between two Drosophila sister species

机译:基因调控的进化是两个果蝇姐妹物种之间形态差异的基础

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Understanding the mechanisms underlying the morphological divergence of species is one of the central goals of evolutionary biology. Here, we analyze the genetic and molecular bases of the divergence of body pigmentation patterns between Drosophila yakuba and its sister species Drosophila santomea. We found that loss of pigmentation in D. santomea involved the selective loss of expression of the tan and yellow pigmentation genes. We demonstrate that tan gene expression was eliminated through the mutational inactivation of one specific tan cis-regulatory element (CRE) whereas the Tan protein sequence remained unchanged. Surprisingly, we identify three independent loss-of-function alleles of the tan CRE in the young D. santomea lineage. We submit that there is sufficient empirical evidence to support the general prediction that functional evolutionary changes at pleiotropic loci will most often involve mutations in their discrete, modular cis-regulatory elements.
机译:理解物种形态差异的潜在机制是进化生物学的主要目标之一。在这里,我们分析了果蝇雅库巴和其姊妹物种果蝇果蝇之间的身体色素沉着模式差异的遗传和分子基础。我们发现在D. santomea中色素沉着的丧失涉及棕褐色和黄色色素沉着基因表达的选择性丧失。我们证明,通过一种特定的tan顺式调节元件(CRE)的突变失活消除了tan基因表达,而Tan蛋白序列保持不变。出人意料的是,我们在年轻的D. santomea血统中发现了tan CRE的三个独立的功能丧失等位基因。我们认为,有足够的经验证据来支持一般预测,即多效性基因座的功能进化变化最常涉及其离散的模块化顺式调控元件中的突变。

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