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Does adaptive radiation of a host lineage promote ecological diversity of its bacterial communities? A test using gut microbiota of Anolis lizards

机译:宿主谱系的适应性辐射会促进其细菌群落的生态多样性吗?使用Anolis蜥蜴的肠道菌群进行测试

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Adaptive radiations provide unique opportunities to test whether and how recent ecological and evolutionary diversification of host species structures the composition of entire bacterial communities. We used 16S rRNA gene sequencing of faecal samples to test for differences in the gut microbiota of six species of Puerto Rican Anolis lizards characterized by the evolution of distinct ecomorphs' related to differences in habitat use. We found substantial variation in the composition of the microbiota within each species and ecomorph (trunk-crown, trunk-ground, grass-bush), but no differences in bacterial alpha diversity among species or ecomorphs. Beta diversity analyses revealed subtle but significant differences in bacterial composition related to host phylogeny and species, but these differences were not consistently associated with Anolis ecomorph. Comparison of a trunk-ground species from this clade (A.cristatellus) with a distantly related member of the same ecomorph class (A.sagrei) where the two species have been introduced and are now sympatric in Florida revealed pronounced differences in the alpha diversity and beta diversity of their microbiota despite their ecological similarity. Comparisons of these populations with allopatric conspecifics also revealed geographic differences in bacterial alpha diversity and beta diversity within each species. Finally, we observed high intraindividual variation over time and strong effects of a simplified laboratory diet on the microbiota of A.sagrei. Collectively, our results indicate that bacterial communities are only weakly shaped by the diversification of their lizard hosts due to the strikingly high levels of bacterial diversity and variation observed within Anolis species.
机译:适应性辐射提供了独特的机会来测试宿主物种最近的生态和进化多样性是否以及如何构成整个细菌群落的组成。我们使用粪便样品的16S rRNA基因测序来测试六种波多黎各安科蜥蜴蜥蜴的肠道菌群差异,这些蜥蜴的特征在于与栖息地使用差异有关的独特生态形态的进化。我们发现每个物种和生态形态(树干,树干,地面,草丛)中微生物群的组成存在很大差异,但物种或生态形态之间细菌α多样性没有差异。 Beta多样性分析显示,与宿主系统发育和物种有关的细菌组成存在细微但重要的差异,但这些差异与Anolis ecomorph不一致。比较了该进化枝(A.cristatellus)的树干地面物种与同一种生态型(A.sagrei)的远缘成员,后者已经被引入并现已在佛罗里达同居,揭示了阿尔法多样性的显着差异尽管它们具有生态相似性,但其微生物群的β和β多样性。这些具有同种异体同种异体的种群的比较还揭示了每个物种内细菌α多样性和β多样性的地理差异。最后,我们观察到了随时间变化的高度个体差异以及简化实验室饮食对沙曲菌微生物群的强烈影响。总的来说,我们的研究结果表明,由于蜥蜴宿主的多样性很高,因此在蜥蜴宿主的多样化中,细菌群落的形成能力很弱。

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