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Dissection of evolutionary networks to assess their role in the evolution of robustness, function, and diversification

机译:解剖进化网络以评估其在健壮性,功能和多元化发展中的作用

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Biological systems are remarkably robust in the face of environmental, mutational, and developmental perturbations. Analyses of molecular networks reveal recurrent features, such as modularity, that have been implicated in robustness and evolvability. Multiple theoretical models account for these features, yet few empirical tests of these models exist. Here I develop a set of broadly applicable methodologies to enable expanded empirical evaluation of model predictions. The methodologies focus on the inference and analysis of networks that depict evolutionary correlations among characters. I apply these methodologies to analyze an evolutionary network at a larger scale of organization among 42 stem anatomical and morphological characters of 52 species in the genus Adenia (Passifloraceae). I evaluate a model predicting that modular evolutionary networks will evolve in response to environmental change. The evolutionary network of Adenia is modular and "small-world," and the three diagnosed modules correspond roughly to functions of transport, storage, and mechanical support. The phylogenetically informed analyses suggest that the storage module is more impacted by environmental change than expected by chance. These results corroborate the hypothesis that modularity reduces the impact of environmental change, but this result requires further empirical evaluation that can be aided by the proposed methods in additional study systems.
机译:面对环境,突变和发育扰动,生物系统非常强大。分子网络分析揭示了递归特征,例如模块化,这些特征与鲁棒性和可进化性有关。多个理论模型解释了这些特征,但是很少有这些模型的经验检验。在这里,我开发了一套广泛适用的方法,可以对模型预测进行扩展的经验评估。该方法论着重于对描述角色间进化相关性的网络进行推理和分析。我应用这些方法来分析Adenia(Passifloraceae)属52个物种的42个茎的解剖和形态特征中的更大规模的进化网络。我评估了一个模型,该模型预测模块化进化网络将响应环境变化而进化。 Adenia的进化网络是模块化的“小世界”,并且三个经过诊断的模块大致对应于运输,存储和机械支持的功能。系统发育学分析表明,存储模块受环境变化的影响比偶然预期的要大。这些结果证实了模块化降低环境变化影响的假设,但是该结果需要进一步的经验评估,该评估方法可以通过其他研究系统中的拟议方法加以辅助。

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