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物种特异性特征在扩张-收缩周期中塑造遗传多样性并影响种群历史重建偏差。

Species-Specific Traits Shape Genetic Diversity During an Expansion-Contraction Cycle and Bias Demographic History Reconstruction.

作者信息

Vishwakarma Ravi, Sgarlata Gabriele Maria, Soriano-Paños David, Rasteiro Rita, Maié Tiago, Paixão Tiago, Tournebize Rémi, Chikhi Lounès

机构信息

Instituto Gulbenkian de Ciência, Oeiras, Portugal.

Department of Evolution and Ecology and Center for Population Biology, University of California, Davis, California, USA.

出版信息

Mol Ecol. 2025 Jan;34(1):e17597. doi: 10.1111/mec.17597. Epub 2024 Dec 11.

Abstract

Species ranges are dynamic, experiencing expansions, contractions or shifts in response to habitat changes driven by extrinsic factors such as climate change or human activities. While existing research examines the genetic consequences of spatial processes, few studies integrate species-specific traits to analyse how habitat changes affect co-existing species. In this study, we address this gap by investigating how genetic diversity patterns vary among species with different traits (such as generation length, population density and dispersal) experiencing similar habitat changes. Using spatial simulations and a simpler panmictic population model, we investigate the temporal genetic diversity in refugium populations undergoing range expansion of their habitat, followed by stationary and contraction periods. By varying habitat contraction speed and species traits, we identified three distinct temporal dynamics of genetic diversity during contraction: (i) a decrease in genetic diversity, (ii) an initial increase followed by a decrease and (iii) a continuous increase throughout the contraction period. We show that genetic diversity trajectories during population decline can be predicted by comparing sampled population diversity to equilibrium values expected under expanded and contracted habitat ranges. Our study also challenges the belief that high genetic diversity in a refugium population is due to a recent and rapid habitat loss. Instead, we found contrasting effects of contraction speed on genetic diversity depending on the interaction between species-specific traits and the dynamics of habitat change. Finally, using simulated genetic data, we found that demographic histories inferred from effective population size estimates may vary across species, even when they experience similar habitat changes.

摘要

物种分布范围是动态变化的,会随着气候变化或人类活动等外部因素驱动的栖息地变化而经历扩张、收缩或转移。虽然现有研究考察了空间过程的遗传后果,但很少有研究将物种特异性特征整合起来,以分析栖息地变化如何影响共存物种。在本研究中,我们通过调查具有不同特征(如世代长度、种群密度和扩散能力)的物种在经历相似栖息地变化时遗传多样性模式如何变化,来填补这一空白。利用空间模拟和一个更简单的随机交配种群模型,我们研究了在栖息地范围扩张,随后是稳定期和收缩期的避难所种群中的时间遗传多样性。通过改变栖息地收缩速度和物种特征,我们确定了收缩期间遗传多样性的三种不同时间动态:(i)遗传多样性下降,(ii)先增加后下降,以及(iii)在整个收缩期持续增加。我们表明,通过将抽样种群多样性与在扩张和收缩的栖息地范围内预期的平衡值进行比较,可以预测种群下降期间的遗传多样性轨迹。我们的研究还挑战了这样一种观点,即避难所种群中的高遗传多样性是由于近期和快速的栖息地丧失。相反,我们发现收缩速度对遗传多样性的影响因物种特异性特征与栖息地变化动态之间的相互作用而异。最后,利用模拟遗传数据,我们发现即使物种经历相似的栖息地变化,从有效种群大小估计推断出的种群历史也可能因物种而异。

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