趋同、半成型和相关进化影响双爪蜘蛛无网生活方式的形态多样性

IF 3.2 1区 农林科学 Q1 ENTOMOLOGY
Guilherme H F Azevedo, T. Bougie, Martín E Carboni, M. Hedin, M. Ramírez
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引用次数: 2

摘要

摘要多次独立进化的特征对于检验相关进化的假设和理解塑造生物多样性的力量很重要。然而,群体遗传学过程可能导致异发育(由拓扑结构与物种树不匹配的基因决定的特征),导致趋同的错误印象(同源性),并可能误导相关进化的推断。在快速辐射和具有许多基因树不一致的分支的情况下,区分同源性和半异源性可能很重要。在这里,我们以双爪蜘蛛(Dionycha)和近亲为研究对象,评估观察到的与无网生活方式相关的特征分布是否可以更好地解释为突触形态、同质化或半异变。我们发现,尽管有几种收敛,但有时也可能出现偏侧发育。我们讨论了这些异生现象如何影响关于性状相关性和因果关系的推断。了解生命树中偏瘫发生的时间和地点很重要,可以防止趋同进化的错误推断。此外,这种理解可以提供可以用独立数据检验的替代假设。利用与蜘蛛攀爬能力相关的特征,我们表明,当不太可能出现偏瘫时,可以使用适当的模型测试来更好地理解相关进化,并提出假设,通过受控的行为和机械实验进行测试。图形摘要
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Convergence, Hemiplasy, and Correlated Evolution Impact Morphological Diversity Related to a Web-Less Lifestyle in the Two-Clawed Spiders
Abstract Traits that independently evolve many times are important for testing hypotheses about correlated evolution and understanding the forces shaping biodiversity. However, population genetics processes can cause hemiplasies (traits determined by genes whose topologies do not match the species tree), leading to a false impression of convergence (homoplasy) and potentially misleading inferences of correlated evolution. Discerning between homoplasies and hemiplasies can be important in cases of rapid radiations and clades with many gene tree incongruences. Here, focusing on two-clawed spiders (Dionycha) and close relatives, we evaluate if the observed distribution of characters related to a web-less lifestyle could be better explained as synapomorphies, homoplasies, or hemiplasies. We find that, although there are several convergences, hemiplasies are also sometimes probable. We discuss how these hemiplasies could affect inferences about correlation and causal relationship of traits. Understanding when and where in the tree of life hemiplasy could have happened is important, preventing false inference of convergent evolution. Furthermore, this understanding can provide alternative hypotheses that can be tested with independent data. Using traits related to the climbing ability of spiders we show that, when hemiplasy is unlikely, adequate model testing can be used to better understand correlated evolution, and propose hypotheses to be tested using controlled behavioral and mechanical experiments. Graphical Abstract
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来源期刊
CiteScore
5.30
自引率
8.80%
发文量
34
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