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对爪的系统发育信号进行测试表明,生态对加勒比潮间带节肢动物(螨类,Oribatida)具有重大影响。

Testing for phylogenetic signal in claws suggests great influence of ecology on Caribbean intertidal arthropods (Acari, Oribatida).

机构信息

Institute of Biology, University of Graz, Universitaetsplatz 2, 8010, Graz, Austria.

出版信息

Sci Rep. 2021 Feb 23;11(1):4398. doi: 10.1038/s41598-021-83747-3.

Abstract

Claws are common biological attachment devices that can be found in a wide variety of animal groups. Their curvature and size are supposed to be parameters related to ecological aspects. Mites, known as very small arthropods, occupy a wide range of ecological niches and are a perfect model system to investigate correlations of claw morphology with ecology. There is only one study regarding this question in littoral mites but the phylogenetic impact, which plays an important role in the evolution of morphological traits, was not tested. We investigated claw shapes of different Caribbean populations of five species showing different substrate/habitat preferences. We used geometric morphometrics to quantify claw shape and tested for phylogenetic signal within this morphological trait. Even in closely related populations, we found clear claw shapes for hard versus soft substrate, confirming previous findings. Surprisingly, we found no phylogenetic signal within the trait, which demonstrates that ecology (different surfaces and substrates) has acted as one of the primary selective forces in the diversification of claw shapes. Considering that the basic claw design may be the same in the majority of arthropods, our results have important implications for further investigations of claw morphology and its ecological relevance within this phylum.

摘要

爪是一种常见的生物附着装置,可以在各种动物群体中找到。它们的弯曲度和大小被认为是与生态方面相关的参数。螨,又称非常小的节肢动物,占据了广泛的生态位,是研究爪形态与生态相关性的理想模型系统。只有一项关于滨海螨的相关研究,但在形态特征的进化中起重要作用的系统发育影响因素尚未得到检验。我们研究了五个物种的不同加勒比种群的爪形,这些物种表现出不同的基质/生境偏好。我们使用几何形态测量法来量化爪形,并在该形态特征内测试系统发育信号。即使在亲缘关系密切的种群中,我们也发现了坚硬和柔软基质之间明显的爪形,这证实了之前的发现。令人惊讶的是,我们在该特征中没有发现系统发育信号,这表明生态(不同的表面和基质)是爪形多样化的主要选择力之一。考虑到大多数节肢动物的基本爪设计可能相同,我们的研究结果对进一步研究该门的爪形态及其生态相关性具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c856/7902647/321aa9941f87/41598_2021_83747_Fig1_HTML.jpg

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