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1.
Nat Commun ; 13(1): 1195, 2022 03 07.
Artigo em Inglês | MEDLINE | ID: mdl-35256608

RESUMO

Previous ancient DNA research has shown that Mycobacterium pinnipedii, which today causes tuberculosis (TB) primarily in pinnipeds, infected human populations living in the coastal areas of Peru prior to European colonization. Skeletal evidence indicates the presence of TB in several pre-colonial South and North American populations with minimal access to marine resources- a scenario incompatible with TB transmission directly from infected pinnipeds or their tissues. In this study, we investigate the causative agent of TB in ten pre-colonial, non-coastal individuals from South America. We reconstruct M. pinnipedii genomes (10- to 15-fold mean coverage) from three contemporaneous individuals from inland Peru and Colombia, demonstrating the widespread dissemination of M. pinnipedii beyond the coast, either through human-to-human and/or animal-mediated routes. Overall, our study suggests that TB transmission in the pre-colonial era Americas involved a more complex transmission pathway than simple pinniped-to-human transfer.


Assuntos
Caniformia , Mycobacterium tuberculosis , Mycobacterium , Tuberculose , Animais , Caniformia/genética , DNA Antigo , Humanos , Mycobacterium/genética , Mycobacterium tuberculosis/genética , Grupos Raciais , América do Sul/epidemiologia , Tuberculose/epidemiologia , Tuberculose/microbiologia
2.
Philos Trans R Soc Lond B Biol Sci ; 375(1812): 20190586, 2020 11 23.
Artigo em Inglês | MEDLINE | ID: mdl-33012230

RESUMO

Human microbiome studies are increasingly incorporating macroecological approaches, such as community assembly, network analysis and functional redundancy to more fully characterize the microbiome. Such analyses have not been applied to ancient human microbiomes, preventing insights into human microbiome evolution. We address this issue by analysing published ancient microbiome datasets: coprolites from Rio Zape (n = 7; 700 CE Mexico) and historic dental calculus (n = 44; 1770-1855 CE, UK), as well as two novel dental calculus datasets: Maya (n = 7; 170 BCE-885 CE, Belize) and Nuragic Sardinians (n = 11; 1400-850 BCE, Italy). Periodontitis-associated bacteria (Treponema denticola, Fusobacterium nucleatum and Eubacterium saphenum) were identified as keystone taxa in the dental calculus datasets. Coprolite keystone taxa included known short-chain fatty acid producers (Eubacterium biforme, Phascolarctobacterium succinatutens) and potentially disease-associated bacteria (Escherichia, Brachyspira). Overlap in ecological profiles between ancient and modern microbiomes was indicated by similarity in functional response diversity profiles between contemporary hunter-gatherers and ancient coprolites, as well as parallels between ancient Maya, historic UK, and modern Spanish dental calculus; however, the ancient Nuragic dental calculus shows a distinct ecological structure. We detected key ecological signatures from ancient microbiome data, paving the way to expand understanding of human microbiome evolution. This article is part of the theme issue 'Insights into health and disease from ancient biomolecules'.


Assuntos
Bactérias/isolamento & purificação , DNA Antigo/análise , Cálculos Dentários/história , Fezes/microbiologia , Microbiota , Arqueologia , Belize , DNA Bacteriano/análise , Cálculos Dentários/microbiologia , Sequenciamento de Nucleotídeos em Larga Escala , História Antiga , História Medieval , Humanos , Itália , México
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