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Maternal expression increases the rate of bicoid evolution by relaxing selective constraint

机译:母体表达通过放宽选择约束来增加二类生物的进化速率

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摘要

Population genetic theory predicts that maternal effect genes will evolve differently than genes expressed in both sexes because selection is only half as effective on autosomal genes expressed in one sex but not the other. Here, we use sequences of the tandem gene duplicates, bicoid (bcd) and zerknüllt (zen), to test the prediction that, with similar coefficients of purifying selection, a maternal effect gene evolves more rapidly than a zygotic gene because of this reduction in selective constraint. We find that the maternal effect gene, bcd, is evolving more rapidly than zygotically expressed, zen, providing the first direct confirmation of this prediction of maternal effect theory from molecular evidence. Our results extend current explanations for the accelerated rate of bcd evolution by providing an evolutionary mechanism, relaxed selective constraint, that allows bcd the evolutionary flexibility to escape the typical functional constraints of early developmental genes. We discuss general implications of our findings for the role of maternal effect genes in early developmental patterning.
机译:群体遗传理论预测,产妇效应基因的进化将不同于在两种性别中表达的基因,因为选择仅对一种性别中表达的常染色体基因有效,而对另一种性别则没有作用。在这里,我们使用串联基因重复序列(二倍体(bcd)和zerknüllt(zen))来测试预测,即在具有相似的纯化选择系数的情况下,母体效应基因比合子基因进化得更快,因为这种减少选择约束。我们发现母体效应基因bcd比合子表达的zen进化得更快,这从分子证据上首次证实了对母体效应理论的这种预测。我们的结果通过提供一种进化机制,宽松的选择性约束,使bcd的进化灵活性得以逃避早期发育基因的典型功能性约束,从而扩展了bcd进化速率的当前解释。我们讨论了我们的发现对母体效应基因在早期发育模式中的作用的一般含义。

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