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种间扩散限制抑制了复合生物群的模式形成。

Interspecific dispersal constraints suppress pattern formation in metacommunities.

机构信息

Biophysics Graduate Program, University of California , Riverside, CA, USA.

Department of Biological Sciences, Florida Atlantic University , Boca Raton, FL, USA.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2024 Jul 29;379(1907):20230136. doi: 10.1098/rstb.2023.0136. Epub 2024 Jun 24.

Abstract

Decisions to disperse from a habitat stand out among organismal behaviours as pivotal drivers of ecosystem dynamics across scales. Encounters with other species are an important component of adaptive decision-making in dispersal, resulting in widespread behaviours like tracking resources or avoiding consumers in space. Despite this, metacommunity models often treat dispersal as a function of intraspecific density alone. We show, focusing initially on three-species network motifs, that interspecific dispersal rules generally drive a transition in metacommunities from homogeneous steady states to self-organized heterogeneous spatial patterns. However, when ecologically realistic constraints reflecting adaptive behaviours are imposed-prey tracking and predator avoidance-a pronounced homogenizing effect emerges where spatial pattern formation is suppressed. We demonstrate this effect for each motif by computing master stability functions that separate the contributions of local and spatial interactions to pattern formation. We extend this result to species-rich food webs using a random matrix approach, where we find that eventually, webs become large enough to override the homogenizing effect of adaptive dispersal behaviours, leading once again to predominately pattern-forming dynamics. Our results emphasize the critical role of interspecific dispersal rules in shaping spatial patterns across landscapes, highlighting the need to incorporate adaptive behavioural constraints in efforts to link local species interactions and metacommunity structure. This article is part of the theme issue 'Diversity-dependence of dispersal: interspecific interactions determine spatial dynamics'.

摘要

从栖息地扩散的决定在生物体行为中脱颖而出,是跨尺度生态系统动态的关键驱动因素。与其他物种的相遇是扩散中适应性决策的一个重要组成部分,导致了广泛的行为,如在空间中跟踪资源或避免消费者。尽管如此,元社区模型通常将扩散视为仅与种内密度有关的函数。我们通过关注三个物种网络基元,表明种间扩散规则通常会导致元社区从同质稳定状态向自我组织异质空间模式的转变。然而,当施加反映适应性行为的生态现实约束——猎物跟踪和捕食者回避——时,空间模式形成受到抑制,会出现明显的同质化效应。我们通过计算主稳定性函数来为每个基元证明这一效应,该函数将局部和空间相互作用对模式形成的贡献分开。我们使用随机矩阵方法将这一结果扩展到物种丰富的食物网中,发现最终,网络变得足够大,足以克服适应性扩散行为的同质化效应,再次导致主要的模式形成动力学。我们的结果强调了种间扩散规则在塑造景观空间模式中的关键作用,突出了在努力将局部物种相互作用和元社区结构联系起来时,需要纳入适应性行为约束。本文是主题为“扩散的多样性依赖性:种间相互作用决定空间动态”的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/759b/11391288/5ebf2b6fcf7f/rstb.2023.0136.f001.jpg

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