How to quantify immigration from community abundance data using the neutral community model

成果类型:
Article
署名作者:
Rafay, Ramis; Jones, Eric W.; Sivak, David A.; Fowler, S. Jane
署名单位:
Simon Fraser University; University of Colorado System; University of Colorado at Colorado Springs; University of Colorado System; University of Colorado at Colorado Springs; Simon Fraser University
刊物名称:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN/ISSBN:
0027-8424; 1091-6490
DOI:
10.1073/pnas.2508689123
发表日期:
2026-03-10
页码:
2508689123
关键词:
dispersal neutral theory immigration community assembly sampling microbial communities MEMBRANE BIOREACTOR diversity distributions dispersal niche
摘要:
Biological communities are connected through dispersal, which regulates diversity across local and regional scales. However, dispersal is difficult to measure directly, limiting what is known about dispersal's impact on species composition in complex communities. One method to measure dispersal employs the Neutral Community Model (NCM) to quantify how a local community is influenced by the immigration of individuals from a larger source community.Conveniently, the immigration rate NTm of the NCM can be fit from biological sequence abundance datasets, which are plentiful. Yet it is neither known if these estimated values reflect the ground truth, nor what sampling effort is required to yield accurate estimates. In this study, we introduce two inference methods, a variance-based and a Dirichlet-multinomial log-likelihood (DM-LL) method, to complement the established occupancy-based inference method. In simulations of communities that resemble activated sludge microbiomes, all inference methods were capable of estimating NTm within 10% of ground-truth, with the variance-based and DM-LL methods requiring less sampling effort. Accurate inferences require read depths greater than NTm in each sample. The three methods agree in their inferred NTm in simulations of communities experiencing weak non-neutral effects (e.g., selection) and in applications to abundance datasets from wastewater activated sludge, tropical trees, and coral reefs. Based on these findings, we propose practical sampling and methodological guidelines for quantifying immigration between highly diverse, complex communities using the NCM.
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