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Evolution of complex life cycles of amphibians: bridging the gap between metapopulation dynamics and life history evolution

机译:两栖动物复杂生命周期的演变:弥合种群动态与生活史进化之间的差距

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Current evolutionary models for amphibian life cycles reflect tradeoffs in size-specific growth and mortality rates between the aquatic and terrestrial stages. A limitation of these models is that they do not incorporate evolutionary phenomena that are associated with metapopulation structure. In this work I address components of the evolution of complex life cycles (CLCs) that are tied to the metapopulation dynamics of amphibians that use seasonal wetlands that vary in hydroperiod. In particular, I describe how selection for the minimum length of the larval period affects metapopulation viability and the selection/migration equilibrium. Selection to increase the minimum length of the larval period functionally reduces the number of viable breeding sites on the landscape, increases the average distance between neighboring sites, and increases the risk of metapopulation extinction. Within a metapopulation, asymmetric gene flow between populations that are adapted to different hydroperiods tends to swamp local selection for long larval periods at sites with long hydroperiods. The evolutionary stability of CLCs of many species with metapopulation structure may reflect the fact that extremely small metamorphs cannot survive on land, while lineages with long larval periods incur a high risk of metapopulation extinction. I encourage theorists to more carefully consider how life history traits and metapopulation viability are related for these and other taxa.
机译:当前两栖动物生命周期的进化模型反映了水生和陆生阶段之间特定大小的生长和死亡率之间的权衡。这些模型的局限性在于它们不包含与种群结构相关的进化现象。在这项工作中,我研究了复杂生命周期(CLC)进化的组成部分,这些生命周期与两栖动物的种群动态相关,而两栖动物使用的季节性湿地随水文周期而变化。特别是,我描述了对幼虫期最小长度的选择如何影响种群的生存力和选择/迁移平衡。选择增加幼虫期的最小长度从功能上减少了景观上可行的繁殖地点的数量,增加了邻近地点之间的平均距离,并增加了种群灭绝的风险。在一个种群中,适应不同水周期的种群之间的不对称基因流往往会在长水周期的位置上淹没长时期幼虫的局部选择。许多具有亚种群结构的物种的CLC的进化稳定性可能反映出以下事实:极小的亚型无法在陆地上生存,而具有长幼体期的世系会导致亚种群灭绝的高风险。我鼓励理论家更仔细地考虑生活史特征和后代生存力与这些和其他类群之间的关系。

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