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生态系统工程与食物网稳定性。

Ecosystem engineering and food web stability.

机构信息

Institute of Agricultural and Life Sciences, Academic Assembly, Shimane University, 1060 Nishikawatsu-cho, Matsue, 690-8504, Japan.

出版信息

Sci Rep. 2024 Aug 21;14(1):19400. doi: 10.1038/s41598-024-70626-w.

Abstract

Ecosystem engineering, which involves organism-triggered physical modification of the environment, is a widespread phenomenon. Despite this, the role of engineering in ecological communities remains poorly understood. This study employs a food web model to uncover the key roles of ecosystem engineering in maintaining food webs. While engineers facilitating population growth and suppressing consumers' foraging activity can help maintain complex communities with diverse species, engineering effects that suppress population growth and facilitate consumers' foraging activity can largely destabilize community dynamics. Furthermore, in the middle levels of engineering-related species within a community, an increase in species richness can increase community stability, contrary to classical ecological prediction. The study findings suggest that ecosystem engineering can explain biodiversity persistence in nature, but it depends on the proportion of engineering-related species and how engineering affects organisms.

摘要

生态系统工程涉及生物体引发的环境物理改造,是一种广泛存在的现象。尽管如此,工程在生态群落中的作用仍未被充分理解。本研究采用食物网模型揭示生态系统工程在维持食物网中的关键作用。虽然工程师促进种群增长和抑制消费者的觅食活动有助于维持具有多种物种的复杂群落,但抑制种群增长和促进消费者觅食活动的工程效应可能会大大破坏群落动态。此外,在群落中与工程相关的物种的中间水平上,物种丰富度的增加会增加群落的稳定性,这与经典的生态学预测相反。研究结果表明,生态系统工程可以解释自然界中生物多样性的持续性,但这取决于与工程相关的物种的比例以及工程如何影响生物体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45da/11339392/cceeafcbf249/41598_2024_70626_Fig1_HTML.jpg

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