Real‐time genomics for One Health

© 2023 The Authors. This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.

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Main Authors: Urban, Lara, Perlas, Albert, Francino, Olga, Martí‐Carreras, Joan, Muga, Brenda A., Mwangi, Jenniffer W., Boykin Okalebo, Laura, Stanton, Jo‐Ann L., Black, Amanda, Waipara, Nick, Fontsere, Claudia, Eccles, David, Urel, Harika, Reska, Tim, Morales, Hernán E., Palmada-Flores, Marc, Marqués-Bonet, Tomàs, Watsa, Mrinalini, Libke, Zane, Erkenswick, Gideon, Van Oosterhout, Cock
Format: artículo de revisión biblioteca
Language:English
Published: EMBO Press 2023-08-08
Subjects:Global health, Nanopore sequencing, Nature conservation, One Health, Real‐time genomics,
Online Access:http://hdl.handle.net/10261/348655
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spelling dig-ibe-es-10261-3486552024-02-28T12:41:20Z Real‐time genomics for One Health Urban, Lara Perlas, Albert Francino, Olga Martí‐Carreras, Joan Muga, Brenda A. Mwangi, Jenniffer W. Boykin Okalebo, Laura Stanton, Jo‐Ann L. Black, Amanda Waipara, Nick Fontsere, Claudia Eccles, David Urel, Harika Reska, Tim Morales, Hernán E. Palmada-Flores, Marc Marqués-Bonet, Tomàs Watsa, Mrinalini Libke, Zane Erkenswick, Gideon Van Oosterhout, Cock Global health Nanopore sequencing Nature conservation One Health Real‐time genomics © 2023 The Authors. This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited. The ongoing degradation of natural systems and other environmental changes has put our society at a crossroad with respect to our future relationship with our planet. While the concept of One Health describes how human health is inextricably linked with environmental health, many of these complex interdependencies are still not well‐understood. Here, we describe how the advent of real‐time genomic analyses can benefit One Health and how it can enable timely, in‐depth ecosystem health assessments. We introduce nanopore sequencing as the only disruptive technology that currently allows for real‐time genomic analyses and that is already being used worldwide to improve the accessibility and versatility of genomic sequencing. We showcase real‐time genomic studies on zoonotic disease, food security, environmental microbiome, emerging pathogens, and their antimicrobial resistances, and on environmental health itself – from genomic resource creation for wildlife conservation to the monitoring of biodiversity, invasive species, and wildlife trafficking. We stress why equitable access to real‐time genomics in the context of One Health will be paramount and discuss related practical, legal, and ethical limitations. Peer reviewed 2024-02-28T12:41:19Z 2024-02-28T12:41:19Z 2023-08-08 artículo de revisión Molecular Systems Biology 19(8): e11686 (2023) http://hdl.handle.net/10261/348655 10.15252/msb.202311686 1744-4292 en Publisher's version https://doi.org/10.15252/msb.202311686 Sí open application/pdf EMBO Press
institution IBE ES
collection DSpace
country España
countrycode ES
component Bibliográfico
access En linea
databasecode dig-ibe-es
tag biblioteca
region Europa del Sur
libraryname Biblioteca del IBE España
language English
topic Global health
Nanopore sequencing
Nature conservation
One Health
Real‐time genomics
Global health
Nanopore sequencing
Nature conservation
One Health
Real‐time genomics
spellingShingle Global health
Nanopore sequencing
Nature conservation
One Health
Real‐time genomics
Global health
Nanopore sequencing
Nature conservation
One Health
Real‐time genomics
Urban, Lara
Perlas, Albert
Francino, Olga
Martí‐Carreras, Joan
Muga, Brenda A.
Mwangi, Jenniffer W.
Boykin Okalebo, Laura
Stanton, Jo‐Ann L.
Black, Amanda
Waipara, Nick
Fontsere, Claudia
Eccles, David
Urel, Harika
Reska, Tim
Morales, Hernán E.
Palmada-Flores, Marc
Marqués-Bonet, Tomàs
Watsa, Mrinalini
Libke, Zane
Erkenswick, Gideon
Van Oosterhout, Cock
Real‐time genomics for One Health
description © 2023 The Authors. This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
format artículo de revisión
topic_facet Global health
Nanopore sequencing
Nature conservation
One Health
Real‐time genomics
author Urban, Lara
Perlas, Albert
Francino, Olga
Martí‐Carreras, Joan
Muga, Brenda A.
Mwangi, Jenniffer W.
Boykin Okalebo, Laura
Stanton, Jo‐Ann L.
Black, Amanda
Waipara, Nick
Fontsere, Claudia
Eccles, David
Urel, Harika
Reska, Tim
Morales, Hernán E.
Palmada-Flores, Marc
Marqués-Bonet, Tomàs
Watsa, Mrinalini
Libke, Zane
Erkenswick, Gideon
Van Oosterhout, Cock
author_facet Urban, Lara
Perlas, Albert
Francino, Olga
Martí‐Carreras, Joan
Muga, Brenda A.
Mwangi, Jenniffer W.
Boykin Okalebo, Laura
Stanton, Jo‐Ann L.
Black, Amanda
Waipara, Nick
Fontsere, Claudia
Eccles, David
Urel, Harika
Reska, Tim
Morales, Hernán E.
Palmada-Flores, Marc
Marqués-Bonet, Tomàs
Watsa, Mrinalini
Libke, Zane
Erkenswick, Gideon
Van Oosterhout, Cock
author_sort Urban, Lara
title Real‐time genomics for One Health
title_short Real‐time genomics for One Health
title_full Real‐time genomics for One Health
title_fullStr Real‐time genomics for One Health
title_full_unstemmed Real‐time genomics for One Health
title_sort real‐time genomics for one health
publisher EMBO Press
publishDate 2023-08-08
url http://hdl.handle.net/10261/348655
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