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家门口的敌人:蜥蜴适应性辐射中快速的防御性特征多样化

Enemy at the gates: Rapid defensive trait diversification in an adaptive radiation of lizards.

作者信息

Broeckhoven Chris, Diedericks Genevieve, Hui Cang, Makhubo Buyisile G, Mouton P le Fras N

机构信息

Department of Botany & Zoology, Stellenbosch University, Private Bag X1, Matieland, 7602, Stellenbosch, South Africa.

Theoretical Ecology Group, Department of Mathematical Sciences, Stellenbosch University, Private Bag X1, Matieland, 7602, Stellenbosch, South Africa.

出版信息

Evolution. 2016 Nov;70(11):2647-2656. doi: 10.1111/evo.13062. Epub 2016 Sep 20.

Abstract

Adaptive radiation (AR), the product of rapid diversification of an ancestral species into novel adaptive zones, has become pivotal in our understanding of biodiversity. Although it has widely been accepted that predators may drive the process of AR by creating ecological opportunity (e.g., enemy-free space), the role of predators as selective agents in defensive trait diversification remains controversial. Using phylogenetic comparative methods, we provide evidence for an "early burst" in the diversification of antipredator phenotypes in Cordylinae, a relatively small AR of morphologically diverse southern African lizards. The evolution of body armor appears to have been initially rapid, but slowed down over time, consistent with the ecological niche-filling model. We suggest that the observed "early burst" pattern could be attributed to shifts in vulnerability to different types of predators (i.e., aerial versus terrestrial) associated with thermal habitat partitioning. These results provide empirical evidence supporting the hypothesis that predators or the interaction therewith might be key components of ecological opportunity, although the way in which predators influence morphological diversification requires further study.

摘要

适应性辐射(AR),即一个祖先物种迅速分化进入新的适应区的产物,已成为我们理解生物多样性的关键。尽管人们普遍认为捕食者可能通过创造生态机会(例如,无天敌空间)推动适应性辐射过程,但捕食者作为防御性状多样化的选择因子的作用仍存在争议。我们运用系统发育比较方法,为非洲南部形态多样的小型蜥蜴类群环尾蜥科(Cordylinae)中反捕食者表型的多样化“早期爆发”提供了证据。体甲的进化最初似乎很快,但随着时间推移而减缓,这与生态位填充模型一致。我们认为,观察到的“早期爆发”模式可能归因于与热栖息地划分相关的对不同类型捕食者(即空中与陆地捕食者)易感性的变化。这些结果提供了实证证据,支持了捕食者或其相互作用可能是生态机会的关键组成部分这一假设,尽管捕食者影响形态多样化的方式仍需进一步研究。

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