English

Intraspecific predator interference promotes biodiversity in ecosystems

Populations and Evolution 2025-06-18 v5 Statistical Mechanics Biological Physics

Abstract

Explaining biodiversity is a fundamental issue in ecology. A long-standing puzzle lies in the paradox of the plankton: many species of plankton feeding on a limited variety of resources coexist, apparently flouting the competitive exclusion principle (CEP), which holds that the number of predator (consumer) species cannot exceed that of the resources at a steady state. Here, we present a mechanistic model and demonstrate that intraspecific interference among the consumers enables a plethora of consumer species to coexist at constant population densities with only one or a handful of resource species. This facilitated biodiversity is resistant to stochasticity, either with the stochastic simulation algorithm or individual-based modeling. Our model naturally explains the classical experiments that invalidate the CEP, quantitatively illustrates the universal S-shaped pattern of the rank-abundance curves across a wide range of ecological communities, and can be broadly used to resolve the mystery of biodiversity in many natural ecosystems.

Keywords

Cite

@article{arxiv.2112.05098,
  title  = {Intraspecific predator interference promotes biodiversity in ecosystems},
  author = {Ju Kang and Shijie Zhang and Yiyuan Niu and Fan Zhong and Xin Wang},
  journal= {arXiv preprint arXiv:2112.05098},
  year   = {2025}
}

Comments

Main text 14 pages, 3 figures. Appendices 34 pages, 15 Appendix-figures

R2 v1 2026-06-24T08:11:11.694Z