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Mutualistic mimicry enhances species diversification through spatial segregation and extension of the ecological niche space

机译:互相模仿通过生态利基空间的空间隔离和延伸来增强物种多样化

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摘要

Species richness varies among clades, yet the drivers of diversification creating this variation remain poorly understood. While abiotic factors likely drive some of the variation in species richness, ecological interactions may also contribute. Here, we examine one class of potential contributors to species richness variation that is particularly poorly understood: mutualistic interactions. We aim to elucidate large-scale patterns of diversification mediated by mutualistic interactions using a spatially explicit populationbased model. We focus on mutualistic Müllerian mimicry between conspicuous toxic prey species, where convergence in color patterns emerges from predators’ learning process. To investigate the effects of Müllerian mimicry on species diversification, we assume that some speciation events stem from shifts in ecological niches, and can also be associated with shift in mimetic color pattern. Through the emergence of spatial mosaics of mimetic color patterns, Müllerian mimicry constrains the geographical distribution of species and allows different species occupying similar ecological niches to exist simultaneously in different regions. Müllerian mimicry and the resulting spatial segregation of mimetic color patterns thus generate more balanced phylogenetic trees and increase overall species diversity. Our study sheds light on complex effects of Müllerian mimicry on ecological, spatial, and phylogenetic diversification.
机译:物种丰富性在林下各不相同,但创造这种变异的多样化驱动程序仍然明白。虽然非生物因素可能会驱动物种丰富性的一些变化,但生态互动也可能有所贡献。在这里,我们研究了一类潜在贡献者,以尤为难以理解的物种富裕变化:互相相互作用。我们的目标是使用空间明确的人群基础模型来阐明由互相相互作用介导的大规模多样化模式。我们专注于显着的毒性猎物物种之间的互化Müllerian模仿,其中捕食者的学习过程中的彩色模式的收敛性。为了调查Müllerian模仿对物种多样化的影响,我们假设一些物种事件源于生态效力的变化,也可以与模仿颜色模式的转变相关。通过对模仿颜色模式的空间马赛克的出现,Müllerian模仿限制了物种的地理分布,并允许在不同地区同时存在类似生态利基的不同物种。因此,Müllerian模仿和由此产生的模拟色彩偏析,因此产生了更平衡的系统发育树,并增加了整体物种的多样性。我们的研究揭示了Müllerian模仿对生态,空间和系统发育多样化的复杂影响。

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  • 作者单位

    Centre d’Ecologie Fonctionnelle et Evolutive CEFE - UMR 5175 - CNRS Université de Montpellier EPHE Université Paul Valéry 1919 route de Mende F-34293 Montpellier 5 France;

    Institut de Systématique Evolution Biodiversité ISYEB - UMR 7205 - CNRS MNHN UPMC EPHE Muséum National d’Histoire Naturelle Sorbonne Universités 57 rue Cuvier CP50 F-75005 Paris France;

    Institut de Systématique Evolution Biodiversité ISYEB - UMR 7205 - CNRS MNHN UPMC EPHE Muséum National d’Histoire Naturelle Sorbonne Universités 57 rue Cuvier CP50 F-75005 Paris France;

    Institut de Systématique Evolution Biodiversité ISYEB - UMR 7205 - CNRS MNHN UPMC EPHE Muséum National d’Histoire Naturelle Sorbonne Universités 57 rue Cuvier CP50 F-75005 Paris France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物演化与发展;
  • 关键词

    Agent-based model; macroevolution; mutualism; Müllerian mimicry; phylogenetic trees; range size;

    机译:基于代理的模型;宏观调查;共同主义;Müllerian模仿;系统发育树;范围大小;

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