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扩散进化改变了群落间的进化中介优先效应。

Dispersal evolution alters evolution-mediated priority effects in a metacommunity.

机构信息

Laboratory of Freshwater Ecology, Evolution and Conservation, KU Leuven , Leuven, Belgium.

Data Science Institute, I-BioStat, Hasselt University , Diepenbeek, Belgium.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2024 Jul 29;379(1907):20230129. doi: 10.1098/rstb.2023.0129. Epub 2024 Jun 24.

Abstract

Biologists have long sought to predict the distribution of species across landscapes to understand biodiversity patterns and dynamics. These efforts usually integrate ecological niche and dispersal dynamics, but evolution can also mediate these ecological dynamics. Species that disperse well and arrive early might adapt to local conditions, which creates an evolution-mediated priority effect that alters biodiversity patterns. Yet, dispersal is also a trait that can evolve and affect evolution-mediated priority effects. We developed an individual-based model where populations of competing species can adapt not only to local environments but also to different dispersal probabilities. We found that lower regional species diversity selects for populations with higher dispersal probabilities and stronger evolution-mediated priority effects. When all species evolved dispersal, they monopolized fewer patches and did so at the same rates. When only one of the species evolved dispersal, it evolved lower dispersal than highly dispersive species and monopolized habitats once freed from maladaptive gene flow. Overall, we demonstrate that dispersal evolution can shape evolution-mediated priority effects when provided with a greater ecological opportunity in species-poor communities. Dispersal- and evolution-mediated priority effects probably play greater roles in species-poor regions like the upper latitudes, isolated islands and in changing environments. This article is part of the theme issue 'Diversity-dependence of dispersal: interspecific interactions determine spatial dynamics'.

摘要

生物学家长期以来一直试图预测物种在景观中的分布,以了解生物多样性的模式和动态。这些努力通常整合了生态位和扩散动态,但进化也可以调节这些生态动态。扩散良好且较早到达的物种可能会适应当地条件,从而产生进化介导的优先效应,改变生物多样性模式。然而,扩散也是一个可以进化并影响进化介导的优先效应的特征。我们开发了一个基于个体的模型,其中竞争物种的种群不仅可以适应本地环境,还可以适应不同的扩散概率。我们发现,较低的区域物种多样性选择了具有更高扩散概率和更强进化介导的优先效应的种群。当所有物种都进化了扩散时,它们垄断的斑块更少,而且以相同的速度进行垄断。当只有一个物种进化了扩散时,它的扩散能力比高扩散性物种低,并且一旦从适应不良的基因流中解放出来,就会垄断栖息地。总的来说,我们证明了在物种较少的群落中,如果提供更大的生态机会,扩散进化可以塑造进化介导的优先效应。在像高纬度地区、孤立岛屿和变化环境这样的物种较少的地区,扩散和进化介导的优先效应可能起着更大的作用。本文是主题为“扩散依赖性的多样性:种间相互作用决定空间动态”的特刊的一部分。

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Dispersal evolution alters evolution-mediated priority effects in a metacommunity.扩散进化改变了群落间的进化中介优先效应。
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本文引用的文献

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Adaptation reduces competitive dominance and alters community assembly.适应会降低竞争优势并改变群落构建。
Proc Biol Sci. 2021 Feb 24;288(1945):20203133. doi: 10.1098/rspb.2020.3133. Epub 2021 Feb 17.
2
Evolutionary origins for ecological patterns in space.生态格局在空间上的进化起源。
Proc Natl Acad Sci U S A. 2020 Jul 28;117(30):17482-17490. doi: 10.1073/pnas.1918960117. Epub 2020 Jul 8.
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