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非退化进化:营养特化驱动加那利群岛红魔鬼蜘蛛(蜘蛛目:盗蛛科)辐射中的趋同进化。

The Non-Dereliction in Evolution: Trophic Specialisation Drives Convergence in the Radiation of Red Devil Spiders (Araneae: Dysderidae) in the Canary Islands.

机构信息

Departament de Biologia Evolutiva, Ecologia i Ciències Ambientals, Universitat de Barcelona (UB), Av. Diagonal, 643, 08028 Barcelona, Spain.

Institut de Recerca de la Biodiversitat (IRBio), Universitat de Barcelona (UB), Barcelona, Spain.

出版信息

Syst Biol. 2023 Nov 1;72(5):998-1012. doi: 10.1093/sysbio/syad046.

DOI:10.1093/sysbio/syad046
PMID:37474131
Abstract

Natural selection plays a key role in deterministic evolution, as clearly illustrated by the multiple cases of repeated evolution of ecomorphological characters observed in adaptive radiations. Unlike most spiders, Dysdera species display a high variability of cheliceral morphologies, which has been suggested to reflect different levels of specialization to feed on isopods. In this study, we integrate geometric morphometrics and experimental trials with a fully resolved phylogeny of the highly diverse endemic species from the Canary Islands to 1) quantitatively delimit the different cheliceral morphotypes present in the archipelago, 2) test their association with trophic specialization, as reported for continental species, 3) reconstruct the evolution of these ecomorphs throughout the diversification of the group, 4) test the hypothesis of convergent evolution of the different morphotypes, and 5) examine whether specialization constitutes a case of evolutionary irreversibility in this group. We show the existence of 9 cheliceral morphotypes and uncovered their significance for trophic ecology. Further, we demonstrate that similar ecomorphs evolved multiple times in the archipelago, providing a novel study system to explain how convergent evolution and irreversibility due to specialization may be combined to shape phenotypic diversification in adaptive radiations.

摘要

自然选择在确定性进化中起着关键作用,这在适应性辐射中观察到的多个生态形态特征的重复进化案例中得到了清晰的说明。与大多数蜘蛛不同,Dysdera 物种的螯肢形态表现出高度的可变性,这被认为反映了它们在以等足类为食方面的不同专业化程度。在这项研究中,我们整合了几何形态测量学和实验试验,以及对来自加那利群岛的高度多样化的特有物种的完全解析的系统发育,以 1)定量界定群岛上存在的不同螯肢形态类型,2)测试它们与营养专业化的关联,就像大陆物种所报告的那样,3)在组内多样化过程中重建这些生态形态的进化,4)测试不同形态类型的趋同进化假说,以及 5)检查专业化是否构成该组中进化不可逆转的一个案例。我们展示了 9 种螯肢形态类型的存在,并揭示了它们对营养生态的意义。此外,我们证明了相似的生态形态在群岛上多次进化,为解释由于专业化导致的趋同进化和不可逆转性如何结合起来塑造适应性辐射中的表型多样化提供了一个新的研究系统。

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