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维持多营养层后生动物群落生物多样性:扩散模式很重要。

Maintenance of biodiversity in multitrophic metacommunities: Dispersal mode matters.

机构信息

Institute of Ecology, College of Urban and Environmental Science, and Key Laboratory for Earth Surface Processes of the Ministry of Education, Peking University, Beijing, China.

School of Life Sciences, Peking University, Beijing, China.

出版信息

J Anim Ecol. 2023 Jun;92(6):1190-1202. doi: 10.1111/1365-2656.13933. Epub 2023 May 1.

Abstract

Although metacommunity models generally formulate dispersal as a random, passive process, mounting evidence suggests that dispersal can be an active process depending on species fitness over the landscape, particularly in multitrophic communities. How different dispersal modes (i.e. from random to increasingly fitness-dependent dispersal) modulate the effect of dispersal on biodiversity remains unclear. Here, we used a metacommunity model of food webs to investigate the effects of dispersal and habitat heterogeneity on biodiversity and how these effects may be dependent on dispersal mode. Our results showed that compared to isolated systems, random dispersal increased local food web diversity ( diversity) but decreased across-community dissimilarity ( diversity) and regional food web diversity ( diversity), consistent with findings from competitive metacommunity models. However, fitness-dependency could alter the effects of dispersal on biodiversity. Both and diversity increased with the strength of fitness-dependency of dispersal, while diversity peaked at intermediate fitness-dependency. Notably, strong fitness-dependent dispersal maintained levels of and diversity similar to those observed in isolated systems. Thus, random dispersal and isolation (i.e. no dispersal) can be considered as two extremes along the continuum of fitness-dependent dispersal, in terms of their effects on biodiversity. Moreover, both biodiversity-habitat heterogeneity and biodiversity-habitat connectivity relationships depended on the dispersal mode. Strikingly, under random dispersal, diversity decreased with habitat heterogeneity and connectivity, but under strong fitness-dependent dispersal, it increased with habitat heterogeneity and remained unchanged as habitat connectivity increased. Our study highlights the context dependence of dispersal effects on biodiversity in heterogeneous landscapes. Our findings have useful implications for biodiversity conservation and landscape management, where management strategies should account for different modes of dispersal across taxa, thus different responses of biodiversity to habitat heterogeneity and connectivity.

摘要

虽然元社区模型通常将扩散表述为一个随机的、被动的过程,但越来越多的证据表明,扩散可以是一个主动的过程,取决于物种在景观上的适应性,特别是在多营养级社区中。不同的扩散模式(即从随机到越来越依赖适应性的扩散)如何调节扩散对生物多样性的影响尚不清楚。在这里,我们使用食物网的元社区模型来研究扩散和栖息地异质性对生物多样性的影响,以及这些影响如何可能依赖于扩散模式。我们的研究结果表明,与孤立系统相比,随机扩散增加了本地食物网的多样性( 多样性),但降低了跨社区的相似性( 多样性)和区域食物网的多样性( 多样性),这与竞争元社区模型的研究结果一致。然而,适应性依赖性可以改变扩散对生物多样性的影响。 多样性和 多样性随着扩散适应性的增强而增加,而 多样性在适应性的中间水平达到峰值。值得注意的是,强适应性依赖性的扩散维持了与孤立系统中观察到的相似的 多样性和 多样性水平。因此,随机扩散和隔离(即没有扩散)可以被视为适应性依赖性扩散连续体的两个极端,就其对生物多样性的影响而言。此外,生物多样性-栖息地异质性和生物多样性-栖息地连通性关系都取决于扩散模式。引人注目的是,在随机扩散下, 多样性随栖息地异质性和连通性的增加而减少,但在强适应性依赖性扩散下,它随栖息地异质性的增加而增加,而随着栖息地连通性的增加保持不变。我们的研究强调了扩散对异质景观中生物多样性的影响的背景依赖性。我们的研究结果对于生物多样性保护和景观管理具有有用的启示,管理策略应考虑不同分类群的不同扩散模式,从而不同的生物多样性对栖息地异质性和连通性的反应。

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