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The evolution and changing ecology of the African hominid oral microbiome
The oral microbiome plays key roles in human biology, health, and disease, but little is known about the global diversity, variation, or evolution of this microbial community. To better understand the evolution and changing ecology of the human oral microbiome, we analyzed 124 dental biofilm metagen...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
National Academy of Sciences
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8157933/ https://www.ncbi.nlm.nih.gov/pubmed/33972424 http://dx.doi.org/10.1073/pnas.2021655118 |
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author | Fellows Yates, James A. Velsko, Irina M. Aron, Franziska Posth, Cosimo Hofman, Courtney A. Austin, Rita M. Parker, Cody E. Mann, Allison E. Nägele, Kathrin Arthur, Kathryn Weedman Arthur, John W. Bauer, Catherine C. Crevecoeur, Isabelle Cupillard, Christophe Curtis, Matthew C. Dalén, Love Díaz-Zorita Bonilla, Marta Díez Fernández-Lomana, J. Carlos Drucker, Dorothée G. Escribano Escrivá, Elena Francken, Michael Gibbon, Victoria E. González Morales, Manuel R. Grande Mateu, Ana Harvati, Katerina Henry, Amanda G. Humphrey, Louise Menéndez, Mario Mihailović, Dušan Peresani, Marco Rodríguez Moroder, Sofía Roksandic, Mirjana Rougier, Hélène Sázelová, Sandra Stock, Jay T. Straus, Lawrence Guy Svoboda, Jiří Teßmann, Barbara Walker, Michael J. Power, Robert C. Lewis, Cecil M. Sankaranarayanan, Krithivasan Guschanski, Katerina Wrangham, Richard W. Dewhirst, Floyd E. Salazar-García, Domingo C. Krause, Johannes Herbig, Alexander Warinner, Christina |
author_facet | Fellows Yates, James A. Velsko, Irina M. Aron, Franziska Posth, Cosimo Hofman, Courtney A. Austin, Rita M. Parker, Cody E. Mann, Allison E. Nägele, Kathrin Arthur, Kathryn Weedman Arthur, John W. Bauer, Catherine C. Crevecoeur, Isabelle Cupillard, Christophe Curtis, Matthew C. Dalén, Love Díaz-Zorita Bonilla, Marta Díez Fernández-Lomana, J. Carlos Drucker, Dorothée G. Escribano Escrivá, Elena Francken, Michael Gibbon, Victoria E. González Morales, Manuel R. Grande Mateu, Ana Harvati, Katerina Henry, Amanda G. Humphrey, Louise Menéndez, Mario Mihailović, Dušan Peresani, Marco Rodríguez Moroder, Sofía Roksandic, Mirjana Rougier, Hélène Sázelová, Sandra Stock, Jay T. Straus, Lawrence Guy Svoboda, Jiří Teßmann, Barbara Walker, Michael J. Power, Robert C. Lewis, Cecil M. Sankaranarayanan, Krithivasan Guschanski, Katerina Wrangham, Richard W. Dewhirst, Floyd E. Salazar-García, Domingo C. Krause, Johannes Herbig, Alexander Warinner, Christina |
author_sort | Fellows Yates, James A. |
collection | PubMed |
description | The oral microbiome plays key roles in human biology, health, and disease, but little is known about the global diversity, variation, or evolution of this microbial community. To better understand the evolution and changing ecology of the human oral microbiome, we analyzed 124 dental biofilm metagenomes from humans, including Neanderthals and Late Pleistocene to present-day modern humans, chimpanzees, and gorillas, as well as New World howler monkeys for comparison. We find that a core microbiome of primarily biofilm structural taxa has been maintained throughout African hominid evolution, and these microbial groups are also shared with howler monkeys, suggesting that they have been important oral members since before the catarrhine–platyrrhine split ca. 40 Mya. However, community structure and individual microbial phylogenies do not closely reflect host relationships, and the dental biofilms of Homo and chimpanzees are distinguished by major taxonomic and functional differences. Reconstructing oral metagenomes from up to 100 thousand years ago, we show that the microbial profiles of both Neanderthals and modern humans are highly similar, sharing functional adaptations in nutrient metabolism. These include an apparent Homo-specific acquisition of salivary amylase-binding capability by oral streptococci, suggesting microbial coadaptation with host diet. We additionally find evidence of shared genetic diversity in the oral bacteria of Neanderthal and Upper Paleolithic modern humans that is not observed in later modern human populations. Differences in the oral microbiomes of African hominids provide insights into human evolution, the ancestral state of the human microbiome, and a temporal framework for understanding microbial health and disease. |
format | Online Article Text |
id | pubmed-8157933 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | National Academy of Sciences |
record_format | MEDLINE/PubMed |
spelling | pubmed-81579332021-05-28 The evolution and changing ecology of the African hominid oral microbiome Fellows Yates, James A. Velsko, Irina M. Aron, Franziska Posth, Cosimo Hofman, Courtney A. Austin, Rita M. Parker, Cody E. Mann, Allison E. Nägele, Kathrin Arthur, Kathryn Weedman Arthur, John W. Bauer, Catherine C. Crevecoeur, Isabelle Cupillard, Christophe Curtis, Matthew C. Dalén, Love Díaz-Zorita Bonilla, Marta Díez Fernández-Lomana, J. Carlos Drucker, Dorothée G. Escribano Escrivá, Elena Francken, Michael Gibbon, Victoria E. González Morales, Manuel R. Grande Mateu, Ana Harvati, Katerina Henry, Amanda G. Humphrey, Louise Menéndez, Mario Mihailović, Dušan Peresani, Marco Rodríguez Moroder, Sofía Roksandic, Mirjana Rougier, Hélène Sázelová, Sandra Stock, Jay T. Straus, Lawrence Guy Svoboda, Jiří Teßmann, Barbara Walker, Michael J. Power, Robert C. Lewis, Cecil M. Sankaranarayanan, Krithivasan Guschanski, Katerina Wrangham, Richard W. Dewhirst, Floyd E. Salazar-García, Domingo C. Krause, Johannes Herbig, Alexander Warinner, Christina Proc Natl Acad Sci U S A Biological Sciences The oral microbiome plays key roles in human biology, health, and disease, but little is known about the global diversity, variation, or evolution of this microbial community. To better understand the evolution and changing ecology of the human oral microbiome, we analyzed 124 dental biofilm metagenomes from humans, including Neanderthals and Late Pleistocene to present-day modern humans, chimpanzees, and gorillas, as well as New World howler monkeys for comparison. We find that a core microbiome of primarily biofilm structural taxa has been maintained throughout African hominid evolution, and these microbial groups are also shared with howler monkeys, suggesting that they have been important oral members since before the catarrhine–platyrrhine split ca. 40 Mya. However, community structure and individual microbial phylogenies do not closely reflect host relationships, and the dental biofilms of Homo and chimpanzees are distinguished by major taxonomic and functional differences. Reconstructing oral metagenomes from up to 100 thousand years ago, we show that the microbial profiles of both Neanderthals and modern humans are highly similar, sharing functional adaptations in nutrient metabolism. These include an apparent Homo-specific acquisition of salivary amylase-binding capability by oral streptococci, suggesting microbial coadaptation with host diet. We additionally find evidence of shared genetic diversity in the oral bacteria of Neanderthal and Upper Paleolithic modern humans that is not observed in later modern human populations. Differences in the oral microbiomes of African hominids provide insights into human evolution, the ancestral state of the human microbiome, and a temporal framework for understanding microbial health and disease. National Academy of Sciences 2021-05-18 2021-05-10 /pmc/articles/PMC8157933/ /pubmed/33972424 http://dx.doi.org/10.1073/pnas.2021655118 Text en Copyright © 2021 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) . |
spellingShingle | Biological Sciences Fellows Yates, James A. Velsko, Irina M. Aron, Franziska Posth, Cosimo Hofman, Courtney A. Austin, Rita M. Parker, Cody E. Mann, Allison E. Nägele, Kathrin Arthur, Kathryn Weedman Arthur, John W. Bauer, Catherine C. Crevecoeur, Isabelle Cupillard, Christophe Curtis, Matthew C. Dalén, Love Díaz-Zorita Bonilla, Marta Díez Fernández-Lomana, J. Carlos Drucker, Dorothée G. Escribano Escrivá, Elena Francken, Michael Gibbon, Victoria E. González Morales, Manuel R. Grande Mateu, Ana Harvati, Katerina Henry, Amanda G. Humphrey, Louise Menéndez, Mario Mihailović, Dušan Peresani, Marco Rodríguez Moroder, Sofía Roksandic, Mirjana Rougier, Hélène Sázelová, Sandra Stock, Jay T. Straus, Lawrence Guy Svoboda, Jiří Teßmann, Barbara Walker, Michael J. Power, Robert C. Lewis, Cecil M. Sankaranarayanan, Krithivasan Guschanski, Katerina Wrangham, Richard W. Dewhirst, Floyd E. Salazar-García, Domingo C. Krause, Johannes Herbig, Alexander Warinner, Christina The evolution and changing ecology of the African hominid oral microbiome |
title | The evolution and changing ecology of the African hominid oral microbiome |
title_full | The evolution and changing ecology of the African hominid oral microbiome |
title_fullStr | The evolution and changing ecology of the African hominid oral microbiome |
title_full_unstemmed | The evolution and changing ecology of the African hominid oral microbiome |
title_short | The evolution and changing ecology of the African hominid oral microbiome |
title_sort | evolution and changing ecology of the african hominid oral microbiome |
topic | Biological Sciences |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8157933/ https://www.ncbi.nlm.nih.gov/pubmed/33972424 http://dx.doi.org/10.1073/pnas.2021655118 |
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