LaforestLapointeArrietaa2018

Référence

Laforest-Lapointe, I., Arrietaa, M.-C. (2018) Microbial eukaryotes: A missing link in gut microbiome studies. mSystems, 3(2). (Scopus )

Résumé

Human-associated microbial communities include prokaryotic and eukaryotic organisms across high-level clades of the tree of life. While advances in high-throughput sequencing technology allow for the study of diverse lineages, the vast majority of studies are limited to bacteria, and very little is known on how eukaryote microbes fit in the overall microbial ecology of the human gut. As recent studies consider eukaryotes in their surveys, it is becoming increasingly clear that eukaryotes play important ecological roles in the microbiome as well as in host health. In this perspective, we discuss new evidence on eukaryotes as fundamental species of the human gut and emphasize that future microbiome studies should characterize the multitrophic interactions between microeukaryotes, other microorganisms, and the host. © 2018 Laforest-Lapointe and Arrieta.

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@ARTICLE { LaforestLapointeArrietaa2018,
    AUTHOR = { Laforest-Lapointe, I. and Arrietaa, M.-C. },
    JOURNAL = { mSystems },
    TITLE = { Microbial eukaryotes: A missing link in gut microbiome studies },
    YEAR = { 2018 },
    NOTE = { cited By 24 },
    NUMBER = { 2 },
    VOLUME = { 3 },
    ABSTRACT = { Human-associated microbial communities include prokaryotic and eukaryotic organisms across high-level clades of the tree of life. While advances in high-throughput sequencing technology allow for the study of diverse lineages, the vast majority of studies are limited to bacteria, and very little is known on how eukaryote microbes fit in the overall microbial ecology of the human gut. As recent studies consider eukaryotes in their surveys, it is becoming increasingly clear that eukaryotes play important ecological roles in the microbiome as well as in host health. In this perspective, we discuss new evidence on eukaryotes as fundamental species of the human gut and emphasize that future microbiome studies should characterize the multitrophic interactions between microeukaryotes, other microorganisms, and the host. © 2018 Laforest-Lapointe and Arrieta. },
    AFFILIATION = { Department of Physiology and Pharmacology, University of Calgary, Calgary, AB, Canada; Department of Pediatrics, University of Calgary, Calgary, AB, Canada },
    ART_NUMBER = { e00201-17 },
    AUTHOR_KEYWORDS = { Bacteria; Blastocystis; Eukaryotes; Fungi; Gut microbiome; Immune system; Interkingdom interactions; Microbial ecology; Prokaryotes; Protozoan },
    DOCUMENT_TYPE = { Article },
    DOI = { 10.1128/mSystems.00201-17 },
    SOURCE = { Scopus },
    URL = { https://www.scopus.com/inward/record.uri?eid=2-s2.0-85045197785&doi=10.1128%2fmSystems.00201-17&partnerID=40&md5=a3c2e4844deb265101fc39772544f5eb },
}

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