Non-equilibrium microbial dynamics unveil a new macroecological pattern beyond Taylor's law

Fuente: arXiv
Enregistré dans:
Détails bibliographiques
Auteurs principaux: Camacho-Mateu, José, Lampo, Aniello, Ares, Saúl, Cuesta, José A.
Format: Preprint
Publié: 2024
Sujets:
Accès en ligne:
Tags: Ajouter un tag
Pas de tags, Soyez le premier à ajouter un tag!
_version_ 1866909351844773888
author Camacho-Mateu, José
Lampo, Aniello
Ares, Saúl
Cuesta, José A.
author_facet Camacho-Mateu, José
Lampo, Aniello
Ares, Saúl
Cuesta, José A.
contents We introduce a comprehensive analytical benchmark, relying on Fokker-Planck formalism, to study microbial dynamics in presence of both biotic and abiotic forces. In equilibrium, we observe a balance between the two kinds of forces, leading to no correlations between species abundances. This implies that real microbiomes, where correlations have been observed, operate out of equilibrium. Therefore, we analyze non-equilibrium dynamics, presenting an ansatz for an approximate solution that embodies the complex interplay of forces in the system. This solution is consistent with Taylor's law as a coarse-grained approximation of the relation between species abundance and variance, but implies subtler effects, predicting unobserved structure beyond Taylor's law. Motivated by this theoretical prediction, we refine the analysis of existing metagenomic data, unveiling a novel universal macroecological pattern. Finally, we speculate on the physical origin of Taylor's law: building upon an analogy with Brownian motion theory, we propose that Taylor's law emerges as a Fluctuation-Growth relation resulting from equipartition of environmental resources among microbial species.
format Preprint
id arxiv_https___arxiv_org_abs_2404_07090
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Non-equilibrium microbial dynamics unveil a new macroecological pattern beyond Taylor's law
Camacho-Mateu, José
Lampo, Aniello
Ares, Saúl
Cuesta, José A.
Populations and Evolution
Statistical Mechanics
Quantitative Methods
We introduce a comprehensive analytical benchmark, relying on Fokker-Planck formalism, to study microbial dynamics in presence of both biotic and abiotic forces. In equilibrium, we observe a balance between the two kinds of forces, leading to no correlations between species abundances. This implies that real microbiomes, where correlations have been observed, operate out of equilibrium. Therefore, we analyze non-equilibrium dynamics, presenting an ansatz for an approximate solution that embodies the complex interplay of forces in the system. This solution is consistent with Taylor's law as a coarse-grained approximation of the relation between species abundance and variance, but implies subtler effects, predicting unobserved structure beyond Taylor's law. Motivated by this theoretical prediction, we refine the analysis of existing metagenomic data, unveiling a novel universal macroecological pattern. Finally, we speculate on the physical origin of Taylor's law: building upon an analogy with Brownian motion theory, we propose that Taylor's law emerges as a Fluctuation-Growth relation resulting from equipartition of environmental resources among microbial species.
title Non-equilibrium microbial dynamics unveil a new macroecological pattern beyond Taylor's law
topic Populations and Evolution
Statistical Mechanics
Quantitative Methods
url https://arxiv.org/abs/2404.07090