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Evolution of covariance in the mammalian skull

机译:哺乳动物头骨中协方差的演变

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The skull Is a developmentally complex and highly integrated structure. Integration, which is manifested as covariance among structures, enables the skull and associated soft tissues to maintain function both across ontogeny within individuals and across the ranges of size and shape variation among individuals. Integration also contributes to evolvability by structuring the phenotypic expression of genetic variation. We argue that the pattern of covariation seen in complex phenotypes such as the skull results from the overlaying of variation introduced by developmental and environmental factors at different stages of development. Much like a palimpsest, the covariation structure of an adult skull represents the summed imprint of a succession of effects, each of which leaves a distinctive covariation signal determined by the specific set of developmental interactions involved. Covariance evolves either by altering the variance of one of these sequential effects or through the introduction of a novel covariance producing effect. Either way is consistent with the notion that evolutionary change occurs through tinkering. We Illustrate these principles through analyses of how genetic perturbations acting at different developmental stages (embryonic, fetal, and postnatal) influence the covariance structure of adult mouse skulls. As predicted by the model, the results illustrate the intimate relatio'nship between the modulation of variance and the expression of covariance. The results also demonstrate that covariance patterns have a complex relationship to the underlying developmental architecture, thus highlighting problems with making inferences about developmental relationships (e.g. modularity) based on covariation.
机译:骷髅是一种发展复杂,高度集成的结构。整合在结构之间表现为协方差,使颅骨和相关的软组织能够在个体内和各个尺寸范围内的组织发生和各个范围内保持功能。整合还通过构建遗传变异的表型表达来有助于进化。我们认为,在复杂的表型中看到的协变量,例如颅骨,由在不同发展阶段的发育和环境因素引入的变化叠加。与Palimpsest一样,成年头骨的协变结构代表了一系列效果的总和印迹,其中每个效果留下了由所涉及的特定发育相互作用确定的独特协变量。协调性通过改变这些顺序效应之一的方差或通过引入新颖的协方差产生效果来发展。无论哪种方式都是符合进化改变通过修补而发生的概念。我们通过分析了在不同发育阶段(胚胎,胎儿和产后)的遗传扰动如何影响成人小鼠颅骨的协方差结构的遗传扰动分析。如模型所预测的,结果说明了方差调制与协方兴表达之间的紧密关系。结果还证明协方差模式与基础发展架构具有复杂的关系,从而突出了基于协变的发育关系(例如模块化)的推断出存在的问题。

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