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归属之地:寄生在慈鲷鱼类体表的一类多样性丰富的扁形动物的系统发育和形态演化。

Somewhere I belong: phylogeny and morphological evolution in a species-rich lineage of ectoparasitic flatworms infecting cichlid fishes.

机构信息

Faculty of Sciences, Centre for Environmental Sciences, Research Group Zoology: Biodiversity and Toxicology, UHasselt - Hasselt University, Agoralaan Gebouw D, Diepenbeek, 3590, Belgium.

ISEM, Université de Montpellier, CNRS, IRD, Montpellier, France.

出版信息

Cladistics. 2022 Aug;38(4):465-512. doi: 10.1111/cla.12506. Epub 2022 Apr 30.

Abstract

A substantial portion of biodiversity has evolved through adaptive radiation. However, the effects of explosive speciation on species interactions remain poorly understood. Metazoan parasites infecting radiating host lineages could improve our knowledge because of their intimate host relationships. Yet limited molecular, phenotypic and ecological data discourage multivariate analyses of evolutionary patterns and encourage the use of discrete characters. Here, we assemble new molecular, morphological and host range data widely inferred from a species-rich lineage of parasites (Cichlidogyrus, Platyhelminthes: Monogenea) infecting cichlid fishes to address data scarcity. We infer a multimarker (28S/18S rDNA, ITS1, COI mtDNA) phylogeny of 58 of 137 species and characterize major lineages through synapomorphies inferred from mapping morphological characters. We predict the phylogenetic position of species without DNA data through shared character states, a morphological phylogenetic analysis, and a classification analysis with support vector machines. Based on these predictions and a cluster analysis, we assess the systematic informativeness of continuous characters, search for continuous equivalents for discrete characters, and suggest new characters for morphological traits not analysed to date. We also model the attachment/reproductive organ and host range evolution using the data for 136 of 137 described species and multivariate phylogenetic comparative methods (PCMs). We show that discrete characters not only can mask phylogenetic signals, but also are key for characterizing species groups. Regarding the attachment organ morphology, a divergent evolutionary regime for at least one lineage was detected and a limited morphological variation indicates host and environmental parameters affecting its evolution. However, moderate success in predicting phylogenetic positions, and a low systematic informativeness and high multicollinearity of morphological characters call for a revaluation of characters included in species characterizations.

摘要

生物多样性的很大一部分是通过适应性辐射进化而来的。然而,爆发式物种形成对物种相互作用的影响仍知之甚少。感染辐射宿主谱系的后生动物寄生虫可以通过它们与宿主的密切关系来提高我们的认识。然而,有限的分子、表型和生态数据阻碍了对进化模式的多元分析,并鼓励使用离散特征。在这里,我们收集了新的分子、形态和宿主范围数据,这些数据广泛来自感染慈鲷鱼类的寄生虫(Cichlidogyrus,扁形动物:单殖吸虫)的一个丰富物种谱系,以解决数据匮乏的问题。我们推断了 137 种中的 58 种的多标记(28S/18S rDNA、ITS1、COI mtDNA)系统发育,并通过从形态特征映射推断出的同形特征来描述主要谱系。我们通过共享特征状态、形态系统发育分析和支持向量机的分类分析来预测没有 DNA 数据的物种的系统发育位置。基于这些预测和聚类分析,我们评估了连续特征的系统信息量,为离散特征寻找连续等价特征,并为迄今未分析的形态特征提出新特征。我们还使用 136 种描述物种的数据和多元系统发育比较方法(PCMs)来模拟附着/生殖器官和宿主范围的进化。我们表明,离散特征不仅可以掩盖系统发育信号,而且是描述物种群的关键。关于附着器官形态,至少一个谱系检测到了一个不同的进化模式,并且形态变异有限表明了影响其进化的宿主和环境参数。然而,对系统发育位置进行预测的成功率较低,以及形态特征的系统信息量低和多线性高,这呼吁对物种特征中包含的特征进行重新评估。

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