Cooperation and cheating orchestrate Vibrio assemblages and polymicrobial synergy in oysters infected with OsHV-1 virus

Author:

Oyanedel Daniel1,Lagorce Arnaud1ORCID,Bruto Maxime23,Haffner Philippe1,Morot Amandine45,Labreuche Yannick23ORCID,Dorant Yann1,de La Forest Divonne Sébastien1,Delavat François6ORCID,Inguimbert Nicolas7ORCID,Montagnani Caroline1ORCID,Morga Benjamin8ORCID,Toulza Eve1ORCID,Chaparro Cristian1ORCID,Escoubas Jean-Michel1ORCID,Gueguen Yannick19ORCID,Vidal-Dupiol Jeremie1ORCID,de Lorgeril Julien110ORCID,Petton Bruno24ORCID,Degremont Lionel8,Tourbiez Delphine8,Pimparé Léa-Lou1,Leroy Marc1,Romatif Océane1ORCID,Pouzadoux Juliette1,Mitta Guillaume111ORCID,Le Roux Frédérique23,Charrière Guillaume M.1ORCID,Travers Marie-Agnès1ORCID,Destoumieux-Garzón Delphine1ORCID

Affiliation:

1. Interactions Hôtes Pathogènes Environnements (IHPE), Université de Montpellier, CNRS, Ifremer, Université de Perpignan Via Domitia, Montpellier F-34090, France

2. Ifremer, Unité Physiologie Fonctionnelle des Organismes Marins, ZI de la Pointe du Diable, Plouzané F-29280, France

3. Sorbonne Université, Université Pierre et Marie Curie Paris 06, CNRS, UMR8227, Integrative Biology of Marine Models, Station Biologique de Roscoff, Roscoff F-29680, France

4. Université de Bretagne Occidentale, CNRS, Institut de recherche pour le développement (IRD), Ifremer, Laboratoire des sciences de l'environnement marin (LEMAR), Plouzané, F-29280, France

5. Laboratoire de Biotechnologie et Chimie Marines, Université Bretagne Sud, EMR CNRS 6076, Institut Universitaire Européen de la Mer, Lorient F-56100, France

6. Nantes Université, CNRS, Unité en Sciences Biologiques et Biotechnologies (US2B), UMR6286, Nantes, F-44000, France

7. Centre de Recherches Insulaires et OBservatoire de l’Environnement (CRIOBE), UAR3278, Ecole Pratique des Hautes Etudes (EPHE), Université de Perpignan Via Domitia, CNRS, Perpignan F-66860, France

8. Ifremer, Adaptation Santé des invertébrés Marins (ASIM), La Tremblade F-17390, France

9. MARine Biodiversity, Exploitation and Conservation (MARBEC) Univ Montpellier, CNRS, Ifremer, IRD, Sète F-34200, France

10. Ifremer, IRD, Univ Nouvelle-Calédonie, Univ La Réunion, ENTROPIE, Nouméa, Nouvelle-Calédonie, F-98800, France

11. Ifremer, Université de Polynésie Française, IRD, Institut Louis Malardé (ILM), Ecosystèmes Insulaires Océaniens (EIO), Vairao F-98719, Polynésie Française

Abstract

Polymicrobial infections threaten the health of humans and animals but remain understudied in natural systems. We recently described the Pacific Oyster Mortality Syndrome (POMS), a polymicrobial disease affecting oyster production worldwide. In the French Atlantic coast, the disease involves coinfection with ostreid herpesvirus 1 (OsHV-1) and virulent Vibrio . However, it is unknown whether consistent Vibrio populations are associated with POMS in different regions, how Vibrio contribute to POMS, and how they interact with OsHV-1 during pathogenesis. By connecting field-based approaches in a Mediterranean ecosystem, laboratory infection assays and functional genomics, we uncovered a web of interdependencies that shape the structure and function of the POMS pathobiota. We show that Vibrio harveyi and Vibrio rotiferianus are predominant in OsHV-1-diseased oysters and that OsHV-1 drives the partition of the Vibrio community observed in the field. However only V. harveyi synergizes with OsHV-1 by promoting mutual growth and accelerating oyster death. V. harveyi shows high-virulence potential and dampens oyster cellular defenses through a type 3 secretion system, making oysters a more favorable niche for microbe colonization. In addition, V. harveyi produces a key siderophore called vibrioferrin. This important resource promotes the growth of V. rotiferianus , which cooccurs with V. harveyi in diseased oysters, and behaves as a cheater by benefiting from V. harveyi metabolite sharing. Our data show that cooperative behaviors contribute to synergy between bacterial and viral coinfecting partners. Additional cheating behaviors further shape the polymicrobial consortium. Controlling cooperative behaviors or countering their effects opens avenues for mitigating polymicrobial diseases.

Funder

Agence Nationale de la Recherche

EC | Horizon 2020 Framework Programme

Conseil Régional des Pays de la Loire

Université de Perpignan Via Domitia

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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