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Dispersal network heterogeneity promotes species coexistence in hierarchical competitive communities

Zhang, Helin, Bearup, Daniel, Nijs, Ivan, Wang, Shaopeng, Barabás, György, Tao, Yi, Liao, Jinbao (2020) Dispersal network heterogeneity promotes species coexistence in hierarchical competitive communities. Ecology Letters, . ISSN 1461-023X. (doi:10.1111/ele.13619) (KAR id:82920)

Abstract

Understanding the mechanisms of biodiversity maintenance is a fundamental issue in ecology. The possibility that species disperse within the landscape along differing paths presents a relatively unexplored mechanism by which diversity could emerge. By embedding a classical metapopulation model within a network framework, we explore how access to different dispersal networks can promote species coexistence. While it is clear that species with the same demography cannot coexist stably on shared dispersal networks, we find that coexistence is possible on unshared networks, as species can surprisingly form self‐organised clusters of occupied patches with the most connected patches at the core. Furthermore, a unimodal biodiversity response to an increase in species colonisation rates or average patch connectivity emerges in unshared networks. Increasing network size also increases species richness monotonically, producing characteristic species–area curves. This suggests that, in contrast to previous predictions, many more species can co‐occur than the number of limiting resources.

Item Type: Article
DOI/Identification number: 10.1111/ele.13619
Uncontrolled keywords: Competitive hierarchy, dispersal heterogeneity, landscape perception, network theory, preemptive competition, segregation‐aggregation mechanism, spatial coexistence
Divisions: Divisions > Division of Computing, Engineering and Mathematical Sciences > School of Mathematics, Statistics and Actuarial Science
Depositing User: Daniel Bearup
Date Deposited: 15 Sep 2020 09:58 UTC
Last Modified: 05 Nov 2024 12:48 UTC
Resource URI: https://kar.kent.ac.uk/id/eprint/82920 (The current URI for this page, for reference purposes)

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