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Evidence for determinism in species diversification and contingency in phenotypic evolution during adaptive radiation

机译:适应性辐射过程中物种多样性的决定论和表型演化的偶然性的证据

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摘要

Adaptive radiation (AR) theory predicts that groups sharing the same source of ecological opportunity (EO) will experience deterministic species diversification and morphological evolution. Thus, deterministic ecological and morphological evolution should be correlated with deterministic patterns in the tempo and mode of speciation for groups in similar habitats and time periods. We test this hypothesis using well-sampled phylogenies of four squamate groups that colonized the New World (NW) in the Late Oligocene. We use both standard and coalescent models to assess species diversification, as well as likelihood models to examine morphological evolution. All squamate groups show similar early pulses of speciation, as well as diversity-dependent ecological limits on clade size at a continental scale. In contrast, processes of morphological evolution are not easily predictable and do not show similar pulses of early and rapid change. Patterns of morphological and species diversification thus appear uncoupled across these groups. This indicates that the processes that drive diversification and disparification are not mechanistically linked, even among similar groups of taxa experiencing the same sources of EO. It also suggests that processes of phenotypic diversification cannot be predicted solely from the existence of an AR or knowledge of the process of diversification.
机译:自适应辐射(AR)理论预测,共享同一生态机会(EO)来源的群体将经历确定性物种多样化和形态演变。因此,在相似的生境和时间段内,确定性的生态和形态演化应与物种形成的速度和模式的确定性模式相关。我们使用在渐新世晚期定居在新世界(NW)的四个鳞状细胞群体的系统抽样系统来检验该假设。我们同时使用标准模型和合并模型来评估物种多样化,并使用似然模型来检查形态演变。所有的鳞茎类群都显示出相似的物种形成早期脉动,并且在大陆范围内对进化枝的大小也表现出与生物多样性有关的限制。相反,形态演变的过程不容易预测,也没有显示相似的早期和快速变化脉动。因此,形态和物种多样化的模式在这些群体之间似乎是不相关的。这表明,即使在经历相同EO来源的相似类群之间,驱动多样化和分散化的过程也没有机械联系。这也表明,不能仅从AR的存在或多样化过程的知识来预测表型多样化的过程。

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