<p>Habitat degradation induced by human activities can exacerbate the spread of wildlife disease and could hinder the recovery of imperiled species. The endangered green turtle <i>Chelonia mydas</i> is impacted worldwide by fibropapillomatosis (FP), a neoplastic infectious disease likely triggered by the <i>Scutavirus chelonidalpha5</i> with coastal anthropogenic stressors acting as cofactors in disease development. Here, we studied fibropapillomatosis dynamics and its demographic consequences using an 11-year capture-mark-recapture dataset in Anse du Bourg d’Arlet/Chaudière (ABAC) and Grande Anse d’Arlet (GA), two juvenile green turtle foraging grounds in Martinique, French West Indies. Afflicted turtles had similar mortality and permanent emigration rates to the non-afflicted ones. Fibropapillomatosis was commonly observed in large individuals and disease recovery may take several years. Consequently, permanent emigration before full recovery from the disease is suspected and might affect the developmental migration success. Additionally, the results revealed that the FP had higher prevalence and severity, and progressed two times faster in ABAC than in GA despite the proximity (&lt; 2&#xa0;km) and the similarity of the two foraging grounds. The reasons for these differences remain unidentified. Locally, further studies should be focused on the determination of the external and internal cofactors related to the observed FP dynamics. Finally, the investigations should be extended at a global regional scale to determine potential deleterious effect of the FP on the adult life-stage. These perspectives improves upon our overall understanding on the interplay between wildlife diseases, hosts and environmental factors.</p>

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Fibropapillomatosis Dynamics, Severity and Demographic Effect in Caribbean Green Turtles

  • Pierre Lelong,
  • Aurélien Besnard,
  • Marc Girondot,
  • Caroline Habold,
  • Fabienne Priam,
  • Mathieu Giraudeau,
  • Guillaume Le Loc’h,
  • Aurélie Le Loc’h,
  • Pascal Fournier,
  • Christine Fournier-Chambrillon,
  • Jérôme Fort,
  • Paco Bustamante,
  • Sophie M. Dupont,
  • Orsolya Vincze,
  • Annie Page,
  • Justin R. Perrault,
  • Benoît De Thoisy,
  • Jean-Raphaël Gros-Desormeaux,
  • Jordan Martin,
  • Ouvéa Bourgeois,
  • Muriel Lepori,
  • Sidney Régis,
  • Nicolas Lecerf,
  • Fabien Lefebvre,
  • Nathalie Aubert,
  • Cédric Frouin,
  • Frédéric Flora,
  • Esteban Pimentel,
  • Anne-Sophie Passalboni,
  • Lorène Jeantet,
  • Gaëlle Hielard,
  • Laurent Louis-Jean,
  • Aude Brador,
  • Paul Giannasi,
  • Denis Etienne,
  • Nathaël Lecerf,
  • Pascale Chevallier,
  • Tao Chevallier,
  • Stéphane Meslier,
  • Anthony Landreau,
  • Anaïs Desnos,
  • Myriane Maceno,
  • Eugène Larcher,
  • Yvon Le Maho,
  • Damien Chevallier

摘要

Habitat degradation induced by human activities can exacerbate the spread of wildlife disease and could hinder the recovery of imperiled species. The endangered green turtle Chelonia mydas is impacted worldwide by fibropapillomatosis (FP), a neoplastic infectious disease likely triggered by the Scutavirus chelonidalpha5 with coastal anthropogenic stressors acting as cofactors in disease development. Here, we studied fibropapillomatosis dynamics and its demographic consequences using an 11-year capture-mark-recapture dataset in Anse du Bourg d’Arlet/Chaudière (ABAC) and Grande Anse d’Arlet (GA), two juvenile green turtle foraging grounds in Martinique, French West Indies. Afflicted turtles had similar mortality and permanent emigration rates to the non-afflicted ones. Fibropapillomatosis was commonly observed in large individuals and disease recovery may take several years. Consequently, permanent emigration before full recovery from the disease is suspected and might affect the developmental migration success. Additionally, the results revealed that the FP had higher prevalence and severity, and progressed two times faster in ABAC than in GA despite the proximity (< 2 km) and the similarity of the two foraging grounds. The reasons for these differences remain unidentified. Locally, further studies should be focused on the determination of the external and internal cofactors related to the observed FP dynamics. Finally, the investigations should be extended at a global regional scale to determine potential deleterious effect of the FP on the adult life-stage. These perspectives improves upon our overall understanding on the interplay between wildlife diseases, hosts and environmental factors.