3 research outputs found

    Isolated Grauer's gorilla populations differ in diet and gut microbiome

    Get PDF
    The animal gut microbiome has been implicated in a number of key biological processes, ranging from digestion to behavior, and has also been suggested to facilitate local adaptation. Yet studies in wild animals rarely compare multiple populations that differ ecologically, which is the level at which local adaptation may occur. Further, few studies simultaneously characterize diet and gut microbiome from the same sample, despite their likely interdependence. Here, we investigate the interplay between diet and gut microbiome in three geographically isolated populations of the critically endangered Grauer's gorilla, which we show to be genetically differentiated. We find population- and social group-specific dietary and gut microbial profiles and co-variation between diet and gut microbiome, despite the presence of core microbial taxa. There was no detectable effect of age, and only marginal effects of sex and genetic relatedness on the microbiome. Diet differed considerably across populations, with the high-altitude population consuming a lower diversity of plants compared to low-altitude populations, consistent with plant availability constraining diet. The observed pattern of covariation between diet and gut microbiome is likely a result of long-term social and environmental factors. Our study suggests that the gut microbiome is sufficiently plastic to support flexible food selection and hence contribute to local adaptation

    Aligned eastern gorilla mitogenomes in fasta format

    No full text
    Eastern gorilla mitogenomes obtained from fecal and historical museum specimens. <div><br></div><div>Used in the study van der Valk et. al. 2018, Significant loss of mitochondrial diversity within the last century due to extinction of peripheral populations in eastern gorillas, Scientific reports<br></div
    corecore