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Maternal Expression Relaxes Constraint on Innovation of the Anterior Determinant bicoid

机译:产妇的表达放宽对前行列式双曲面的创新的限制。

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摘要

The origin of evolutionary novelty is believed to involve both positive selection and relaxed developmental constraint. In flies, the redesign of anterior patterning during embryogenesis is a major developmental innovation and the rapidly evolving Hox gene, bicoid (bcd), plays a critical role. We report evidence for relaxation of selective constraint acting on bicoid as a result of its maternal pattern of gene expression. Evolutionary theory predicts 2-fold greater sequence diversity for maternal effect genes than for zygotically expressed genes, because natural selection is only half as effective acting on autosomal genes expressed in one sex as it is on genes expressed in both sexes. We sample an individual from ten populations of Drosophila melanogaster and nine populations of D. simulans for polymorphism in the tandem gene duplicates bcd, which is maternally expressed, and zerknüllt (zen), which is zygotically expressed. In both species, we find the ratio of bcd to zen nucleotide diversity to be two or more in the coding regions but one in the noncoding regions, providing the first quantitative support for the theoretical prediction of relaxed selective constraint on maternal-effect genes resulting from sex-limited expression. Our results suggest that the accelerated rate of evolution observed for bcd is owing, at least partly, to variation generated by relaxed selective constraint.
机译:进化新奇的起源被认为涉及积极选择和宽松的发展约束。苍蝇在胚胎发生过程中对前部模式的重新设计是一项重大的开发创新,而迅速发展的Hox基因(类比蛋白(bcd))起着至关重要的作用。我们报告的证据,由于其母体的基因表达模式,作用于双曲线的选择性约束的放松。进化论预测母体效应基因的序列多样性要比合子表达的基因大2倍,因为自然选择对一种性别中表达的常染色体基因的作用仅是对两种性别中表达的基因作用的一半。我们从十个果蝇果蝇和九个D. simulans种群中抽取一个样本,以检测母本表达的串联基因重复的bcd和合子表达的zerknüllt(zen)的多态性。在这两个物种中,我们发现bcd与zen核苷酸多样性的比率在编码区中为两个或两个以上,而在非编码区中为一个或多个,这为从理论上预测由产妇产生的母体效应基因的选择性选择性限制提供了第一定量支持性别限制的表情。我们的结果表明,观察到的bcd进化速度加快,至少部分是由于宽松的选择性约束所产生的变异。

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