Neutral Theory and Relative Species Abundance in Ecology
Igor Volkov, Jayanth R. Banavar, Stephen P. Hubbell, Amos Maritan
Abstract
The theory of island biogeography[1] asserts that an island or a local community approaches an equilibrium species richness as a result of the interplay between the immigration of species from the much larger metacommunity source area and local extinction of species on the island (local community). Hubbell[2] generalized this neutral theory to explore the expected steady-state distribution of relative species abundance (RSA) in the local community under restricted immigration. Here we present a theoretical framework for the unified neutral theory of biodiversity[2] and an analytical solution for the distribution of the RSA both in the metacommunity (Fisher's logseries) and in the local community, where there are fewer rare species. Rare species are more extinction-prone, and once they go locally extinct, they take longer to re-immigrate than do common species. Contrary to recent assertions[3], we show that the analytical solution provides a better fit, with fewer free parameters, to the RSA distribution of tree species on Barro Colorado Island (BCI)[4] than the lognormal distribution[5,6].
Create a lesson
Related papers
Self-Replicating Neural Cellular Automata: Quantifying Emergent Phenotypic and Genotypic Diversity in an OpenEnded Substrate
Sanyam Jain, Felix Simon Reimers, Stefano Nichele
Optimum foraging area in a three-trophic food chain
Lucas Massoni, Rafael Menezes, Marcus A. M. de Aguiar et al.
Graph construction in QUBO-based recursive phylogenetic tree reconstruction
Yoshiki Kanazawa, Ashish Joshi, Takahiko Koyama
Anomalous First Passage in Evolution: Edge-KPZ Theory
Tetsuhiro S. Hatakeyama
Navigating the Delicate Geometry of Beehive Mite Infestation with Optimal Control
Julia Saff, Bhargav R. Karamched
Evolution of Fast and Slow Life Histories in Resource-Constrained Populations with Mass-Mortality Events
Éloi Martin, David Steinsaltz