2016
DOI: 10.1371/journal.pbio.2000225
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Phylosymbiosis: Relationships and Functional Effects of Microbial Communities across Host Evolutionary History

Abstract: Phylosymbiosis was recently proposed to describe the eco-evolutionary pattern, whereby the ecological relatedness of host-associated microbial communities parallels the phylogeny of related host species. Here, we test the prevalence of phylosymbiosis and its functional significance under highly controlled conditions by characterizing the microbiota of 24 animal species from four different groups (Peromyscus deer mice, Drosophila flies, mosquitoes, and Nasonia wasps), and we reevaluate the phylosymbiotic relati… Show more

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Cited by 431 publications
(589 citation statements)
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“…Rather than entire gut microbial communities, specific bacterial lineages may indeed recapitulate the evolutionary relationships among lemur species [9,22]. Further, lemur species may have diverged too recently [18] or our evolutionary model may be too simplistic to capture a strong signal of host phylogeny in the microbial community data.…”
Section: Discussionmentioning
confidence: 97%
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“…Rather than entire gut microbial communities, specific bacterial lineages may indeed recapitulate the evolutionary relationships among lemur species [9,22]. Further, lemur species may have diverged too recently [18] or our evolutionary model may be too simplistic to capture a strong signal of host phylogeny in the microbial community data.…”
Section: Discussionmentioning
confidence: 97%
“…With the exception of the lemur clade, the microbiomes of sympatric Malagasy mammal populations illustrate "phylosymbiosis," an ecoevolutionary pattern in which the evolutionary diversification of hosts correlates with ecological changes in their microbiota [18,74]. Congruence between host and microbial phylogenies can arise without the coevolution of entire microbial communities from a last common ancestor or cospeciation events [9,18].…”
Section: Discussionmentioning
confidence: 99%
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