Real‐time genomics for One Health

Author:

Urban Lara123ORCID,Perlas Albert12ORCID,Francino Olga4ORCID,Martí‐Carreras Joan4ORCID,Muga Brenda A5ORCID,Mwangi Jenniffer W6ORCID,Boykin Okalebo Laura7ORCID,Stanton Jo‐Ann L5ORCID,Black Amanda8ORCID,Waipara Nick9ORCID,Fontsere Claudia10ORCID,Eccles David11ORCID,Urel Harika123,Reska Tim123,Morales Hernán E1012ORCID,Palmada‐Flores Marc13ORCID,Marques‐Bonet Tomas13141516ORCID,Watsa Mrinalini17ORCID,Libke Zane1819,Erkenswick Gideon20,van Oosterhout Cock21ORCID

Affiliation:

1. Helmholtz AI, Helmholtz Zentrum Muenchen Neuherberg Germany

2. Helmholtz Pioneer Campus, Helmholtz Zentrum Muenchen Neuherberg Germany

3. School of Life Sciences, Technical University of Munich Freising Germany

4. Nano1Health SL, Parc de Recerca UAB Campus Universitat Autònoma de Barcelona Barcelona Spain

5. Department of Anatomy University of Otago Dunedin New Zealand

6. Biological Department Machakos University Machakos Kenya

7. BioTeam, Inc. Middleton Massachusetts USA

8. Bioprotection Aotearoa Lincoln University Lincoln New Zealand

9. Plant and Food Research Auckland New Zealand

10. Center for Evolutionary Hologenomics The Globe Institute, University of Copenhagen Copenhagen Denmark

11. Hugh Green Cytometry Centre Malaghan Institute of Medical Research Wellington New Zealand

12. Department of Biology, Ecology Building Lund University Lund Sweden

13. Institute of Evolutionary Biology Universitat Pompeu Fabra‐CSIC, PRBB Barcelona Spain

14. Catalan Institution of Research and Advanced Studies (ICREA) Barcelona Spain

15. CNAG Centre of Genomic Analysis Barcelona Spain

16. Institut Català de Paleontologia Miquel Crusafont Universitat Autònoma de Barcelona Barcelona Spain

17. San Diego Zoo Wildlife Alliance Escondido CA USA

18. Instituto Nacional de Biodiversidad Quito Ecuador

19. Fundación Sumak Kawsay In Situ Cantón Mera Ecuador

20. Field Projects International Escondido CA USA

21. School of Environmental Sciences University of East Anglia Norwich UK

Abstract

AbstractThe 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.

Publisher

Springer Science and Business Media LLC

Subject

Applied Mathematics,Computational Theory and Mathematics,General Agricultural and Biological Sciences,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,Information Systems

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