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Metacommunity theory for transmission of heritable symbionts within insect communities

机译:在昆虫社区中传播遗传症的遗传性融合性的地狱理论

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Microbial organisms are ubiquitous in nature and often form communities closely associated with their host, referred to as the microbiome. The microbiome has strong influence on species interactions, but microbiome studies rarely take interactions between hosts into account, and network interaction studies rarely consider microbiomes. Here, we propose to use metacommunity theory as a framework to unify research on microbiomes and host communities by considering host insects and their microbes as discretely defined “communities of communities” linked by dispersal (transmission) through biotic interactions. We provide an overview of the effects of heritable symbiotic bacteria on their insect hosts and how those effects subsequently influence host interactions, thereby altering the host community. We suggest multiple scenarios for integrating the microbiome into metacommunity ecology and demonstrate ways in which to employ and parameterize models of symbiont transmission to quantitatively assess metacommunity processes in host‐associated microbial systems. Successfully incorporating microbiota into community‐level studies is a crucial step for understanding the importance of the microbiome to host species and their interactions.
机译:微生物生物本质上普遍存在,通常与其宿主密切相关的社区,称为微生物组。微生物组对物种相互作用影响强烈影响,但微生物组研究很少考虑宿主之间的相互作用,并且网络相互作用研究很少考虑微生物。在这里,我们建议通过考虑宿主昆虫及其微生物作为通过生物学相互作用所连接的宿主昆虫及其微生物来统一微生物学和寄主社区的框架,以统一微生物群和寄主社区的框架。我们概述了遗嘱共生细菌对昆虫宿主的影响以及这些效果随后如何影响宿主相互作用,从而改变宿主社区。我们建议将Microbiome集成到MetaCoMunity生态学中的多种情况,并展示了用于使用和参数化Symbiont传输模型的方式,以定量地评估宿主相关的微生物系统中的MetAcomunity过程。成功地将微生物群纳入社区级研究是理解微生物组对宿主物种及其互动的重要性的关键步骤。

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