Liautaud Kevin, Barbier Matthieu, Loreau Michel
Centre for Biodiversity Theory and Modelling, Theoretical and Experimental Ecology Station, UMR 5321, CNRS and Paul Sabatier Univ., Moulis, France.
Ecography. 2020 May;43(5):714-723. doi: 10.1111/ecog.04902. Epub 2020 Feb 13.
Rapid changes in species composition, also known as ecotones, can result from various causes including rapid changes in environmental conditions, or physiological thresholds. The possibility that ecotones arise from ecological niche construction by ecosystem engineers has received little attention. In this study, we investigate how the diversity of ecosystem engineers, and their interactions, can give rise to ecotones. We build a spatially explicit dynamical model that couples a multispecies community and its abiotic environment. We use numerical simulations and analytical techniques to determine the biotic and abiotic conditions under which ecotone emergence is expected to occur, and the role of biodiversity therein. We show that the diversity of ecosystem engineers can lead to indirect interactions through the modification of their shared environment. These interactions, which can be either competitive or mutualistic, can lead to the emergence of discrete communities in space, separated by sharp ecotones where a high species turnover is observed. Considering biodiversity is thus critical when studying the influence of species-environment interactions on the emergence of ecotones. This is especially true for the wide range of species that have small to moderate effects on their environment. Our work highlights new mechanisms by which biodiversity loss could cause significant changes in spatial community patterns in changing environments.
物种组成的快速变化,也被称为生态交错带,可能由多种原因导致,包括环境条件的快速变化或生理阈值。生态交错带由生态系统工程师通过生态位构建产生的可能性很少受到关注。在本研究中,我们探究生态系统工程师的多样性及其相互作用如何导致生态交错带的出现。我们构建了一个空间明确的动力学模型,将多物种群落与其非生物环境耦合起来。我们使用数值模拟和分析技术来确定预计生态交错带出现的生物和非生物条件,以及生物多样性在其中的作用。我们表明,生态系统工程师的多样性可通过改变其共享环境导致间接相互作用。这些相互作用可能是竞争性的或互利性的,可导致空间上离散群落的出现,由明显的生态交错带分隔,在那里观察到高物种周转率。因此,在研究物种 - 环境相互作用对生态交错带出现的影响时,考虑生物多样性至关重要。对于对其环境有小到中等影响的广泛物种尤其如此。我们的工作突出了生物多样性丧失可能在变化环境中导致空间群落模式显著变化的新机制。