High diversity and unique composition of gut microbiomes in pygmy (Kogia breviceps) and dwarf (K. sima) sperm whales
Mammals host diverse bacterial and archaeal symbiont communities (i.e. microbiomes) that play important roles in digestive and immune system functioning, yet cetacean microbiomes remain largely unexplored, in part due to sample collection difficulties. Here, fecal samples from stranded pygmy ( Kogia...
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Published in | Scientific reports Vol. 7; no. 1; pp. 7205 - 11 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
Published |
London
Nature Publishing Group UK
03.08.2017
Nature Publishing Group Nature Portfolio |
Subjects | |
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Abstract | Mammals host diverse bacterial and archaeal symbiont communities (i.e. microbiomes) that play important roles in digestive and immune system functioning, yet cetacean microbiomes remain largely unexplored, in part due to sample collection difficulties. Here, fecal samples from stranded pygmy (
Kogia breviceps
) and dwarf (
K
.
sima
) sperm whales were used to characterize the gut microbiomes of two closely-related species with similar diets. 16S rRNA gene sequencing revealed diverse microbial communities in kogiid whales dominated by Firmicutes and Bacteroidetes. Core symbiont taxa were affiliated with phylogenetic lineages capable of fermentative metabolism and sulfate respiration, indicating potential symbiont contributions to energy acquisition during prey digestion. The diversity and phylum-level composition of kogiid microbiomes differed from those previously reported in toothed whales, which exhibited low diversity communities dominated by Proteobacteria and Actinobacteria. Community structure analyses revealed distinct gut microbiomes in
K
.
breviceps
and
K
.
sima
, driven by differential relative abundances of shared taxa, and unique microbiomes in kogiid hosts compared to other toothed and baleen whales, driven by differences in symbiont membership. These results provide insight into the diversity, composition and structure of kogiid gut microbiomes and indicate that host identity plays an important role in structuring cetacean microbiomes, even at fine-scale taxonomic levels. |
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AbstractList | Mammals host diverse bacterial and archaeal symbiont communities (i.e. microbiomes) that play important roles in digestive and immune system functioning, yet cetacean microbiomes remain largely unexplored, in part due to sample collection difficulties. Here, fecal samples from stranded pygmy (Kogia breviceps) and dwarf (K. sima) sperm whales were used to characterize the gut microbiomes of two closely-related species with similar diets. 16S rRNA gene sequencing revealed diverse microbial communities in kogiid whales dominated by Firmicutes and Bacteroidetes. Core symbiont taxa were affiliated with phylogenetic lineages capable of fermentative metabolism and sulfate respiration, indicating potential symbiont contributions to energy acquisition during prey digestion. The diversity and phylum-level composition of kogiid microbiomes differed from those previously reported in toothed whales, which exhibited low diversity communities dominated by Proteobacteria and Actinobacteria. Community structure analyses revealed distinct gut microbiomes in K. breviceps and K. sima, driven by differential relative abundances of shared taxa, and unique microbiomes in kogiid hosts compared to other toothed and baleen whales, driven by differences in symbiont membership. These results provide insight into the diversity, composition and structure of kogiid gut microbiomes and indicate that host identity plays an important role in structuring cetacean microbiomes, even at fine-scale taxonomic levels. Mammals host diverse bacterial and archaeal symbiont communities (i.e. microbiomes) that play important roles in digestive and immune system functioning, yet cetacean microbiomes remain largely unexplored, in part due to sample collection difficulties. Here, fecal samples from stranded pygmy ( Kogia breviceps ) and dwarf ( K . sima ) sperm whales were used to characterize the gut microbiomes of two closely-related species with similar diets. 16S rRNA gene sequencing revealed diverse microbial communities in kogiid whales dominated by Firmicutes and Bacteroidetes. Core symbiont taxa were affiliated with phylogenetic lineages capable of fermentative metabolism and sulfate respiration, indicating potential symbiont contributions to energy acquisition during prey digestion. The diversity and phylum-level composition of kogiid microbiomes differed from those previously reported in toothed whales, which exhibited low diversity communities dominated by Proteobacteria and Actinobacteria. Community structure analyses revealed distinct gut microbiomes in K . breviceps and K . sima , driven by differential relative abundances of shared taxa, and unique microbiomes in kogiid hosts compared to other toothed and baleen whales, driven by differences in symbiont membership. These results provide insight into the diversity, composition and structure of kogiid gut microbiomes and indicate that host identity plays an important role in structuring cetacean microbiomes, even at fine-scale taxonomic levels. Abstract Mammals host diverse bacterial and archaeal symbiont communities (i.e. microbiomes) that play important roles in digestive and immune system functioning, yet cetacean microbiomes remain largely unexplored, in part due to sample collection difficulties. Here, fecal samples from stranded pygmy (Kogia breviceps) and dwarf (K. sima) sperm whales were used to characterize the gut microbiomes of two closely-related species with similar diets. 16S rRNA gene sequencing revealed diverse microbial communities in kogiid whales dominated by Firmicutes and Bacteroidetes. Core symbiont taxa were affiliated with phylogenetic lineages capable of fermentative metabolism and sulfate respiration, indicating potential symbiont contributions to energy acquisition during prey digestion. The diversity and phylum-level composition of kogiid microbiomes differed from those previously reported in toothed whales, which exhibited low diversity communities dominated by Proteobacteria and Actinobacteria. Community structure analyses revealed distinct gut microbiomes in K. breviceps and K. sima, driven by differential relative abundances of shared taxa, and unique microbiomes in kogiid hosts compared to other toothed and baleen whales, driven by differences in symbiont membership. These results provide insight into the diversity, composition and structure of kogiid gut microbiomes and indicate that host identity plays an important role in structuring cetacean microbiomes, even at fine-scale taxonomic levels. |
ArticleNumber | 7205 |
Author | Keenan-Bateman, Tiffany F. Erwin, Patrick M. Kiser, Kevin B. McLellan, William A. Pabst, D. Ann Rhodes, Ryan G. |
Author_xml | – sequence: 1 givenname: Patrick M. orcidid: 0000-0001-9276-0020 surname: Erwin fullname: Erwin, Patrick M. email: erwinp@uncw.edu organization: Department of Biology and Marine Biology, Center for Marine Science, University of North Carolina Wilmington – sequence: 2 givenname: Ryan G. surname: Rhodes fullname: Rhodes, Ryan G. organization: Department of Biology and Marine Biology, Center for Marine Science, University of North Carolina Wilmington – sequence: 3 givenname: Kevin B. surname: Kiser fullname: Kiser, Kevin B. organization: Department of Biology and Marine Biology, Center for Marine Science, University of North Carolina Wilmington – sequence: 4 givenname: Tiffany F. surname: Keenan-Bateman fullname: Keenan-Bateman, Tiffany F. organization: Department of Biology and Marine Biology, Center for Marine Science, University of North Carolina Wilmington – sequence: 5 givenname: William A. surname: McLellan fullname: McLellan, William A. organization: Department of Biology and Marine Biology, Center for Marine Science, University of North Carolina Wilmington – sequence: 6 givenname: D. Ann surname: Pabst fullname: Pabst, D. Ann organization: Department of Biology and Marine Biology, Center for Marine Science, University of North Carolina Wilmington |
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Snippet | Mammals host diverse bacterial and archaeal symbiont communities (i.e. microbiomes) that play important roles in digestive and immune system functioning, yet... Abstract Mammals host diverse bacterial and archaeal symbiont communities (i.e. microbiomes) that play important roles in digestive and immune system... |
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SubjectTerms | 45/77 631/326/2565/2134 704/158/855 Animal behavior Aquatic mammals Biology Community structure Digestive system Dolphins & porpoises Gastrointestinal tract Humanities and Social Sciences Immune system Intestinal microflora Kogia breviceps Kogia sima Marine mammals Metabolism Microbial activity multidisciplinary Pathogens Phylogenetics Phylogeny Prey rRNA 16S Science Science (multidisciplinary) Stranding Sulfates Taxa Taxonomy Trends Whales Whales & whaling |
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Title | High diversity and unique composition of gut microbiomes in pygmy (Kogia breviceps) and dwarf (K. sima) sperm whales |
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