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When should we expect early bursts of trait evolution in comparative data? Predictions from an evolutionary food web model

机译:我们应该什么时候期待比较数据中性状进化的早期爆发?进化食物网模型的预测

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Conceptual models of adaptive radiation predict that competitive interactions among species will result in an early burst of speciation and trait evolution followed by a slowdown in diversification rates. Empirical studies often show early accumulation of lineages in phylogenetic trees, but usually fail to detect early bursts of phenotypic evolution. We use an evolutionary simulation model to assemble food webs through adaptive radiation, and examine patterns in the resulting phylogenetic trees and species' traits (body size and trophic position). We find that when foraging trade-offs result in food webs where all species occupy integer trophic levels, lineage diversity and trait disparity are concentrated early in the tree, consistent with the early burst model. In contrast, in food webs in which many omnivorous species feed at multiple trophic levels, high levels of turnover of species' identities and traits tend to eliminate the early burst signal. These results suggest testable predictions about how the niche structure of ecological communities may be reflected by macroevolutionary patterns.
机译:适应性辐射的概念模型预测,物种之间的竞争性相互作用将导致物种形成和性状进化的早期爆发,然后多样化速度下降。实证研究通常显示谱系在树系中的早期积累,但通常无法检测到表型进化的早期爆发。我们使用进化模拟模型通过自适应辐射组装食物网,并检查所形成的系统发育树和物种特征(体型和营养位置)中的模式。我们发现,当觅食权衡导致所有物种都处于整数营养级的食物网时,谱系多样性和性状差异在树的早期集中,这与早期爆发模型一致。相反,在许多杂食性物种以多种营养水平觅食的食物网中,物种身份和性状的高周转率倾向于消除早期爆发信号。这些结果提出了关于宏观进化模式如何反映生态群落的生态位结构的可预测的预测。

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