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宿主与共生体分布的多层模型。

Multilevel Models for the Distribution of Hosts and Symbionts.

作者信息

Joseph Maxwell B, Stutz William E, Johnson Pieter T J

机构信息

Earth Lab, University of Colorado, Boulder, Colorado, United States of America.

Ecology and Evolutionary Biology, University of Colorado, Boulder, Colorado, United States of America.

出版信息

PLoS One. 2016 Nov 10;11(11):e0165768. doi: 10.1371/journal.pone.0165768. eCollection 2016.

Abstract

Symbiont occurrence is influenced by host occurrence and vice versa, which leads to correlations in host-symbiont distributions at multiple levels. Interactions between co-infecting symbionts within host individuals can cause correlations in the abundance of two symbiont species across individual hosts. Similarly, interactions between symbiont transmission and host population dynamics can drive correlations between symbiont and host abundance across habitat patches. If ignored, these interactions can confound estimated responses of hosts and symbionts to other factors. Here, we present a general hierarchical modeling framework for distributions of hosts and symbionts, estimating correlations in host-symbiont distributions at the among-site, within-site, among-species, and among-individual levels. We present an empirical example from a multi-host multi-parasite system involving amphibians and their micro- and macroparasites. Amphibian hosts and their parasites were correlated at multiple levels of organization. Macroparasites often co-infected individual hosts, but rarely co-infected with the amphibian chytrid fungus. Such correlations may result from interactions among parasites and hosts, joint responses to environmental factors, or sampling bias. Joint host-symbiont models account for environmental constraints and species interactions while partitioning variance and dependence in abundance at multiple levels. This framework can be adapted to a wide variety of study systems and sampling designs.

摘要

共生体的出现受宿主出现情况的影响,反之亦然,这导致宿主 - 共生体分布在多个层面上具有相关性。宿主个体内同时感染的共生体之间的相互作用会导致两个共生体物种在个体宿主间的丰度具有相关性。同样,共生体传播与宿主种群动态之间的相互作用会推动共生体和宿主丰度在不同栖息地斑块间的相关性。如果忽略这些相互作用,可能会混淆宿主和共生体对其他因素的估计反应。在此,我们提出了一个用于宿主和共生体分布的通用层次建模框架,估计宿主 - 共生体分布在地点间、地点内、物种间和个体间层面的相关性。我们给出了一个来自涉及两栖动物及其微寄生虫和大寄生虫的多宿主多寄生虫系统的实证例子。两栖动物宿主及其寄生虫在多个组织层面上具有相关性。大寄生虫常常同时感染个体宿主,但很少与两栖类壶菌共同感染。这种相关性可能源于寄生虫与宿主之间的相互作用、对环境因素的共同反应或抽样偏差。联合宿主 - 共生体模型考虑了环境限制和物种相互作用,同时在多个层面上划分丰度的方差和依赖性。这个框架可以适用于各种各样的研究系统和抽样设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b54/5104364/8994260919a5/pone.0165768.g001.jpg

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