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生态适应驱动林蛙种群在生活史特征上的分歧。

Ecological adaptation drives wood frog population divergence in life history traits.

机构信息

School of Biological Sciences, Washington State University, Pullman, WA, USA.

Department of Pathology, Microbiology and Immunology, Vanderbilt University, Nashville, TN, USA.

出版信息

Heredity (Edinb). 2021 May;126(5):790-804. doi: 10.1038/s41437-021-00409-w. Epub 2021 Feb 3.

Abstract

Phenotypic variation among populations is thought to be generated from spatial heterogeneity in environments that exert selection pressures that overcome the effects of gene flow and genetic drift. Here, we tested for evidence of isolation by distance or by ecology (i.e., ecological adaptation) to generate variation in early life history traits and phenotypic plasticity among 13 wood frog populations spanning 1200 km and 7° latitude. We conducted a common garden experiment and related trait variation to an ecological gradient derived from an ecological niche model (ENM) validated to account for population density variation. Shorter larval periods, smaller body weight, and relative leg lengths were exhibited by populations with colder mean annual temperatures, greater precipitation, and less seasonality in precipitation and higher population density (high-suitability ENM values). After accounting for neutral genetic variation, the Q-F analysis supported ecological selection as the key process generating population divergence. Further, the relationship between ecology and traits was dependent upon larval density. Specifically, high-suitability/high-density populations in the northern part of the range were better at coping with greater conspecific competition, evidenced by greater postmetamorphic survival and no difference in body weight when reared under stressful conditions of high larval density. Our results support that both climate and competition selection pressures drive clinal variation in larval and metamorphic traits in this species. Range-wide studies like this one are essential for accurate predictions of population's responses to ongoing ecological change.

摘要

人们认为,种群之间的表型变异是由环境的空间异质性产生的,这些环境会产生选择压力,克服基因流和遗传漂变的影响。在这里,我们测试了距离隔离或生态隔离(即生态适应)的证据,以在跨越 1200 公里和 7°纬度的 13 个林蛙种群中产生早期生活史特征和表型可塑性的变异。我们进行了一个共同的花园实验,并将特征变异与从生态位模型(ENM)得出的生态梯度相关联,该模型经过验证可以解释种群密度的变化。平均年温度较低、降水较多、降水季节性较弱和种群密度较高(高适宜性 ENM 值)的种群表现出较短的幼虫期、较小的体重和相对腿长。在考虑中性遗传变异后,Q-F 分析支持生态选择是产生种群分歧的关键过程。此外,生态与特征之间的关系取决于幼虫密度。具体来说,在该范围北部的高适宜性/高密度种群在应对更大的同种竞争方面表现更好,这表现为在高幼虫密度的应激条件下,变态后存活率更高,体重无差异。我们的研究结果支持气候和竞争选择压力共同驱动了该物种幼虫和变态特征的渐变变异。像这样的全范围研究对于准确预测种群对正在进行的生态变化的反应至关重要。

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