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Mechanisms of Change: A Population-Based Perspective on the Roles of Modularity and Pleiotropy in Diversification

机译:变革机制:基于人口的群体对多元化中的模块性和肺炎的作用的视角

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Developmental modularity has long been viewed as a hierarchical organization that facilitates evolution through modification or reuse of preexisting modules. More recently, developmental modularity has been proposed as a mechanism capable of driving rapid evolution of novel color pattern phenotypes between closely related taxa. In this scenario, recombination between modular cis-regulatory elements (CREs) generates novel phenotypes by shuffling genetic variation at preexisting color pattern modules into new arrangements. Recent functional evidence from Drosophila flies and Heliconius butterflies, however, provides a series of examples in which CREs function in multiple developmental contexts and are thus highly pleiotropic. The potential prevalence of pleiotropy in CRE function could be a barrier to the proposed importance of CRE modules as a mechanism for rapid evolutionary change. Here we review the concept of developmental modularity, some examples that suggest developmental modularity underlies pattern evolution, and recent evidence that indicates modular CREs may be less common than previously expected. This leads us to suggest that alternative, non-modular hypotheses should be considered alongside proposals of modular CREs. We then propose the concept of evolutionary modularity as a specific alternative to developmental modularity when discrete, seemingly modular, phenotypes occur in hybridizing taxa. We suggest that evolutionary modularity provides a potentially important pathway for exchange of phenotypic elements between hybridizing taxa independent of the underlying developmental architecture.
机译:发展模块长期以来一直被视为一种分层组织,通过修改或重用预先存在的模块来促进演变。最近,已经提出了发展模块化作为能够在密切相关的分类群之间推动新型颜色模式表型的快速演变的机制。在这种情况下,模块化顺式调节元件(CRES)之间的重组通过将预先存在的彩色图案模块的遗传变异进行了破碎变化来产生新颖的表型。然而,来自果蝇和HelicoNius蝴蝶的最近功能证据提供了一系列实例,其中在多种发育语境中的Cres函数并因此是高度抗脂性的。 CRE函数中肺炎的潜在普遍性可能是CRE模块作为快速进化变化机制的建议重要性的障碍。在这里,我们审查了发展模块化的概念,一些示例提出了发展模块化下层的模式演化,以及最近表示模块化CRE的证据可能比以前预期的常见可能不那么常见。这导致我们建议替代,非模块化假设应考虑与模块化CRES的建议一起考虑。然后,当离散,看似模块化的表型发生杂交的征集时,我们提出了进化模块化的概念作为发育模块化的特定替代品。我们建议进化模块化提供杂交类别与潜在的发展架构之间的杂交类别之间的表型元素的潜在重要途径。

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