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Species diversity vs. morphological disparity in the light of evolutionary developmental biology

机译:从进化发育生物学的角度看物种多样性与形态差异

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摘要

>Background Two indicators of a clade’s success are its diversity (number of included species) and its disparity (extent of morphospace occupied by its members). Many large genera show high diversity with low disparity, while others such as Euphorbia and Drosophila are highly diverse but also exhibit high disparity. The largest genera are often characterized by key innovations that often, but not necessarily, coincide with their diagnostic apomorphies. In terms of their contribution to speciation, apomorphies are either permissive (e.g. flightlessness) or generative (e.g. nectariferous spurs).>Scope Except for Drosophila, virtually no genus among those with the highest diversity or disparity includes species currently studied as model species in developmental genetics or evolutionary developmental biology (evo-devo). An evo-devo approach is, however, potentially important to understand how diversity and disparity could rapidly increase in the largest genera currently accepted by taxonomists. The most promising directions for future research and a set of key questions to be addressed are presented in this review.>Conclusions From an evo-devo perspective, the evolution of clades with high diversity and/or disparity can be addressed from three main perspectives: (1) evolvability, in terms of release from previous constraints and of the presence of genetic or developmental conditions favouring multiple parallel occurrences of a given evolutionary transition and its reversal; (2) phenotypic plasticity as a facilitator of speciation; and (3) modularity, heterochrony and a coupling between the complexity of the life cycle and the evolution of diversity and disparity in a clade. This simple preliminary analysis suggests a set of topics that deserve priority for scrutiny, including the possible role of saltational evolution in the origination of high diversity and/or disparity, the predictability of morphological evolution following release from a former constraint, and the extent and the possible causes of a positive correlation between diversity and disparity and the complexity of the life cycle.
机译:>背景进化枝成功的两个指标是其多样性(包括物种的数量)和差异(成员所占据的形态空间的程度)。许多大属显示出高度的多样性而差异很小,而其他诸如大戟属和果蝇的多样性很高,但也表现出很高的差异性。最大的属通常以关键创新为特征,这些创新通常但不一定与它们的诊断性阿朴相吻合。就其对物种形成的贡献而言,无性生殖是允许的(例如,不能飞行)或生殖的(例如,油桃刺)。>范围除了果蝇以外,在多样性或差异最大的物种中,几乎没有属包括当前的物种。在发育遗传学或进化发育生物学(evo-devo)中作为模型物种进行研究。但是,对于理解分类学家目前所接受的最大属种中的多样性和差异性如何迅速增加而言,evo-devo方法可能具有重要意义。这篇综述介绍了未来研究的最有希望的方向和需要解决的一系列关键问题。>结论从evo-devo的角度来看,可以进化出具有高度多样性和/或差异的进化枝。从三个主要角度进行了论述:(1)可进化性,从先前的限制条件的释放以及遗传或发育条件的存在,这些条件有利于给定的进化过渡及其逆转多次平行发生; (2)表型可塑性作为物种形成的促进剂; (3)模块化,异时性以及生命周期的复杂性与进化枝多样性和差异的演变之间的耦合。这个简单的初步分析提出了一组值得研究的主题,其中包括盐分进化在高度多样性和/或差异性的起源中的可能作用,从先前的约束释放后形态演变的可预测性,程度和多样性和差异与生命周期复杂性之间正相关的可能原因。

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