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The stochastic logistic model with correlated carrying capacities reproduces beta-diversity metrics of microbial communities

机译:具有相关承载能力的随机Logistic模型再现了微生物群落的β多样性指标

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摘要

The large taxonomic variability of microbial community composition is a consequence of the combination of environmental variability, mediated through ecological interactions, and stochasticity. Most of the analysis aiming to infer the biological factors determining this difference in community structure start by quantifying how much communities are similar in their composition, trough beta-diversity metrics. The central role that these metrics play in microbial ecology does not parallel with a quantitative understanding of their relationships and statistical properties. In particular, we lack a framework that reproduces the empirical statistical properties of beta-diversity metrics. Here we take a macroecological approach and introduce a model to reproduce the statistical properties of community similarity. The model is based on the statistical properties of individual communities and on a single tunable parameter, the correlation of species' carrying capacities across communities, which sets the difference of two communities. The model reproduces quantitatively the empirical values of several commonly-used beta-diversity metrics, as well as the relationships between them. In particular, this modeling framework naturally reproduces the negative correlation between overlap and dissimilarity, which has been observed in both empirical and experimental communities and previously related to the existence of universal features of community dynamics. In this framework, such correlation naturally emerges due to the effect of random sampling.
机译:微生物群落组成的巨大分类变异性是环境变异性(通过生态相互作用介导)和随机性共同作用的结果。大多数旨在推断决定群落结构差异的生物学因素的分析都是从量化群落组成相似程度开始的,即通过β多样性指标。这些指标在微生物生态学中发挥的核心作用与对其关系和统计特性的定量理解并不平行。特别是,我们缺乏一个框架来重现 β 多样性指标的经验统计属性。本文采用宏观生态学方法,引入模型再现群落相似性的统计特性。该模型基于单个群落的统计特性和单个可调参数,即物种在群落间承载能力的相关性,这设定了两个群落的差异。该模型定量再现了几个常用的 β 多样性指标的经验值,以及它们之间的关系。特别是,该建模框架自然地再现了重叠和不相似之间的负相关关系,这在经验和实验社区中都观察到,并且以前与社区动态的普遍特征的存在有关。在这个框架中,由于随机抽样的影响,这种相关性自然而然地出现了。

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