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首页> 外文期刊>Scientific reports. >Host phylogeny, diet, and habitat differentiate the gut microbiomes of Darwin’s finches?on Santa Cruz Island
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Host phylogeny, diet, and habitat differentiate the gut microbiomes of Darwin’s finches?on Santa Cruz Island

机译:宿主系统发育,饮食和栖息地分化了达尔文雀的肠道微生物体?在圣克鲁斯岛上

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Darwin's finches are an iconic example of an adaptive radiation with well-characterized evolutionary history, dietary preferences, and biogeography, offering an unparalleled opportunity to disentangle effects of evolutionary history on host microbiome from other factors like diet and habitat. Here, we characterize the gut microbiome in Darwin's finches, comparing nine species that occupy diverse ecological niches on Santa Cruz island. The finch phylogeny showed moderate congruence with the microbiome, which was comprised mostly of the bacterial phyla Firmicutes, Actinobacteria, and Proteobacteria. Diet, as measured with stable isotope values and foraging observations, also correlated with microbiome differentiation. Additionally, each gut microbial community could easily be classified by the habitat of origin independent of host species. Altogether, these findings are consistent with a model of microbiome assembly in which environmental filtering via diet and habitat are primary determinants of the bacterial taxa present with lesser influence from the evolutionary history between finch species.
机译:达尔文的雀科是一种具有特征性历史,饮食偏好和生物地理的适应性辐射的标志性的例子,提供了一种无与伦比的机会,可以从饮食和栖息地等其他因素中解开进化历史对宿主微生物的影响。在这里,我们在达尔文雀的肠道微生物组合中的特征,比较了占据了圣克鲁斯岛上多样化的生态利基的九种物种。氟化系统与微生物组成的微生物组成,雀科学发育表现出中等的一致性,其主要包括细菌植物植物(抗菌菌)和植物菌。用稳定同位素值和觅食观察测量的饮食也与微生物组分化相关。另外,每个肠道微生物群落都可以通过独立于宿主物种的栖息地容易地分类。总共,这些发现与微生物组件的模型一致,其中通过饮食和栖息地的环境过滤是具有较小影响的细菌分类群的主要决定因素来自雀科物种之间的进化史上的较小影响。

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