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Unifying host-associated diversification processes using butterfly–plant networks

机译:使用蝴蝶工厂网络统一与主机相关的多元化过程

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Explaining the exceptional diversity of herbivorous insects is an old problem in evolutionary ecology. Here we focus on the two prominent hypothesised drivers of their diversification, radiations after major host switch or variability in host use due to continuous probing of new hosts. Unfortunately, current methods cannot distinguish between these hypotheses, causing controversy in the literature. Here we present an approach combining network and phylogenetic analyses, which directly quantifies support for these opposing hypotheses. After demonstrating that each hypothesis produces divergent network structures, we then investigate the contribution of each to diversification in two butterfly families: Pieridae and Nymphalidae. Overall, we find that variability in host use is essential for butterfly diversification, while radiations following colonisation of a new host are rare but can produce high diversity. Beyond providing an important reconciliation of alternative hypotheses for butterfly diversification, our approach has potential to test many other hypotheses in evolutionary biology.
机译:解释草食性昆虫的特殊多样性是进化生态学中的一个老问题。在这里,我们集中讨论两个主要的假设驱动因素,即它们的多样化,主要宿主切换后的辐射或由于不断探测新宿主而导致宿主使用的可变性。不幸的是,当前的方法无法区分这些假设,从而引起了文献争议。在这里,我们提出了一种结合网络分析和系统发育分析的方法,该方法直接量化了对这些相反假设的支持。在证明每个假设产生不同的网络结构后,我们随后研究了每个假设对两个蝴蝶科(Pieridae和Nymphalidae)的多样化贡献。总体而言,我们发现寄主使用的多样性对于蝴蝶的多样化至关重要,而新寄主定居后的辐射很少见,但会产生很高的多样性。除了为蝴蝶多样化提供其他假设的重要调和之外,我们的方法还具有检验进化生物学中许多其他假设的潜力。

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