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Unveiling microbiome changes in Mediterranean octocorals during the 2022 marine heatwaves: quantifying key bacterial symbionts and potential pathogens

Authors :
Prioux, Camille
Tignat‑perrier, Romie
Gervais, Ophelie
Estaque, Tristan
Schull, Quentin
Reynaud, Stéphanie
Béraud, Eric
Mérigot, Bastien
Beauvieux, Anaïs
Marcus, Maria-isabelle
Richaume, Justine
Bianchimani, Olivier
Cheminée, Adrien
Allemand, Denis
Ferrier‑pagès, Christine
Prioux, Camille
Tignat‑perrier, Romie
Gervais, Ophelie
Estaque, Tristan
Schull, Quentin
Reynaud, Stéphanie
Béraud, Eric
Mérigot, Bastien
Beauvieux, Anaïs
Marcus, Maria-isabelle
Richaume, Justine
Bianchimani, Olivier
Cheminée, Adrien
Allemand, Denis
Ferrier‑pagès, Christine
Source :
Microbiome (2049-2618) (BioMed Central), 2023-12 , Vol. 11 , N. 1 , P. 19p.
Publication Year :
2023

Abstract

Background Climate change has accelerated the occurrence and severity of heatwaves in the Mediterranean Sea and poses a significant threat to the octocoral species that form the foundation of marine animal forests (MAFs). As coral health intricately relies on the symbiotic relationships established between corals and microbial communities, our goal was to gain a deeper understanding of the role of bacteria in the observed tissue loss of key octocoral species following the unprecedented heatwaves in 2022. Results Using amplicon sequencing and taxon-specific qPCR analyses, we unexpectedly found that the absolute abundance of the major bacterial symbionts, Spirochaetaceae (C. rubrum) and Endozoicomonas (P. clavata), remained, in most cases, unchanged between colonies with 0% and 90% tissue loss. These results suggest that the impairment of coral health was not due to the loss of the main bacterial symbionts. However, we observed a significant increase in the total abundance of bacterial opportunists, including putative pathogens such as Vibrio, which was not evident when only their relative abundance was considered. In addition, there was no clear relation between bacterial symbiont loss and the intensity of thermal stress, suggesting that factors other than temperature may have influenced the differential response of octocoral microbiomes at different sampling sites. Conclusions Our results indicate that tissue loss in octocorals is not directly caused by the decline of the main bacterial symbionts but by the proliferation of opportunistic and pathogenic bacteria. Our findings thus underscore the significance of considering both relative and absolute quantification approaches when evaluating the impact of stressors on coral microbiome as the relative quantification does not accurately depict the actual changes in the microbiome. Consequently, this research enhances our comprehension of the intricate interplay between host organisms, their microbiomes, and environmenta

Details

Database :
OAIster
Journal :
Microbiome (2049-2618) (BioMed Central), 2023-12 , Vol. 11 , N. 1 , P. 19p.
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1417978456
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1186.s40168-023-01711-x