An omics-based framework for assessing the health risk of antimicrobial resistance genes

Antibiotic resistance genes are common but not all are of high risk to human health. Here, the authors develop an omics-based framework for ranking genes by risk that incorporates level of enrichment in human associated environments, gene mobility, and host pathogenicity.

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Autores principales: An-Ni Zhang, Jeffry M. Gaston, Chengzhen L. Dai, Shijie Zhao, Mathilde Poyet, Mathieu Groussin, Xiaole Yin, Li-Guan Li, Mark C. M. van Loosdrecht, Edward Topp, Michael R. Gillings, William P. Hanage, James M. Tiedje, Katya Moniz, Eric J. Alm, Tong Zhang
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/00e1d75466c746b5b7176e663387fb5b
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spelling oai:doaj.org-article:00e1d75466c746b5b7176e663387fb5b2021-12-02T14:53:51ZAn omics-based framework for assessing the health risk of antimicrobial resistance genes10.1038/s41467-021-25096-32041-1723https://doaj.org/article/00e1d75466c746b5b7176e663387fb5b2021-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-25096-3https://doaj.org/toc/2041-1723Antibiotic resistance genes are common but not all are of high risk to human health. Here, the authors develop an omics-based framework for ranking genes by risk that incorporates level of enrichment in human associated environments, gene mobility, and host pathogenicity.An-Ni ZhangJeffry M. GastonChengzhen L. DaiShijie ZhaoMathilde PoyetMathieu GroussinXiaole YinLi-Guan LiMark C. M. van LoosdrechtEdward ToppMichael R. GillingsWilliam P. HanageJames M. TiedjeKatya MonizEric J. AlmTong ZhangNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-11 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
An-Ni Zhang
Jeffry M. Gaston
Chengzhen L. Dai
Shijie Zhao
Mathilde Poyet
Mathieu Groussin
Xiaole Yin
Li-Guan Li
Mark C. M. van Loosdrecht
Edward Topp
Michael R. Gillings
William P. Hanage
James M. Tiedje
Katya Moniz
Eric J. Alm
Tong Zhang
An omics-based framework for assessing the health risk of antimicrobial resistance genes
description Antibiotic resistance genes are common but not all are of high risk to human health. Here, the authors develop an omics-based framework for ranking genes by risk that incorporates level of enrichment in human associated environments, gene mobility, and host pathogenicity.
format article
author An-Ni Zhang
Jeffry M. Gaston
Chengzhen L. Dai
Shijie Zhao
Mathilde Poyet
Mathieu Groussin
Xiaole Yin
Li-Guan Li
Mark C. M. van Loosdrecht
Edward Topp
Michael R. Gillings
William P. Hanage
James M. Tiedje
Katya Moniz
Eric J. Alm
Tong Zhang
author_facet An-Ni Zhang
Jeffry M. Gaston
Chengzhen L. Dai
Shijie Zhao
Mathilde Poyet
Mathieu Groussin
Xiaole Yin
Li-Guan Li
Mark C. M. van Loosdrecht
Edward Topp
Michael R. Gillings
William P. Hanage
James M. Tiedje
Katya Moniz
Eric J. Alm
Tong Zhang
author_sort An-Ni Zhang
title An omics-based framework for assessing the health risk of antimicrobial resistance genes
title_short An omics-based framework for assessing the health risk of antimicrobial resistance genes
title_full An omics-based framework for assessing the health risk of antimicrobial resistance genes
title_fullStr An omics-based framework for assessing the health risk of antimicrobial resistance genes
title_full_unstemmed An omics-based framework for assessing the health risk of antimicrobial resistance genes
title_sort omics-based framework for assessing the health risk of antimicrobial resistance genes
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/00e1d75466c746b5b7176e663387fb5b
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