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首页> 外文期刊>Evolution: International Journal of Organic Evolution >A new phylogenetic test for comparing multiple high-dimensional evolutionary rates suggests interplay of evolutionary rates and modularity in lanternfishes (Myctophiformes; Myctophidae)
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A new phylogenetic test for comparing multiple high-dimensional evolutionary rates suggests interplay of evolutionary rates and modularity in lanternfishes (Myctophiformes; Myctophidae)

机译:一种用于比较多个高维进化速率的新的系统发育测试表明,灯笼鱼(Myctophiformes; Myctophidae)的进化速率和模块性相互影响。

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摘要

The interplay between evolutionary rates and modularity influences the evolution of organismal body plans by both promoting and constraining the magnitude and direction of trait response to ecological conditions. However, few studies have examined whether the best-fit hypothesis of modularity is the same as the shape subset with the greatest difference in evolutionary rate. Here, we develop a new phylogenetic comparative method for comparing evolutionary rates among high-dimensional traits, and apply this method to analyze body shape evolution in bioluminescent lanternfishes. We frame the study of evolutionary rates and modularity through analysis of three hypotheses derived from the literature on fish development, biomechanics, and bioluminescent communication. We show that a development-informed partitioning of shape exhibits the greatest evolutionary rate differences among modules, but that a hydrodynamically informed partitioning is the best-fit modularity hypothesis. Furthermore, we show that bioluminescent lateral photophores evolve at a similar rate as, and are strongly integrated with, body shape in lanternfishes. These results suggest that overlapping life-history constraints on development and movement define axes of body shape evolution in lanternfishes, and that the positions of their lateral photophore complexes are likely a passive outcome of the interaction of these ecological pressures.
机译:进化速率和模块性之间的相互作用通过促进和限制对生态条件的性状响应的大小和方向来影响机体计划的演化。但是,很少有研究检查模块化的最佳拟合假设是否与进化速率差异最大的形状子集相同。在这里,我们开发了一种新的系统发育比较方法,用于比较高维特征之间的进化速率,并将该方法用于分析生物发光灯笼鱼的体形进化。我们通过对三个假设的分析来构架进化速率和模块化的研究,这些假设来自关于鱼类发育,生物力学和生物发光通信的文献。我们表明形状的发展知的分区展示了模块之间最大的进化速率差异,但是流体动力学知悉的分区是最适合的模块化假设。此外,我们表明,生物发光的横向荧光体以与灯笼鱼的体形相似的速率进化并与之紧密结合。这些结果表明,重叠的生活史限制了其发展和运动,从而确定了灯笼鱼的体形演变轴,而且它们侧向荧光团的位置很可能是这些生态压力相互作用的被动结果。

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