Coral associated microorganisms, especially some opportunistic pathogens can utilize quorum-sensing (QS) signals to affect population structure and host health. However, direct evidence about the link between coral bleaching and dysbiotic microbiomes under QS regulation was lacking. Here, using 11 opportunistic bacteria and their QS products (AHLs, acyl-homoserine-lactones), we exposed Pocillopora damicornis to three different treatments: test groups (A & B: mixture of AHLs-producing bacteria and cocktail of AHLs signals, respectively); control groups (C & D: group A and B with furanone added, respectively); and a blank control (group E: only seawater) for 21 days. The results showed that remarkable bleaching phenomenon was observed in groups A&B. The OTU-sequencing analysis shown that the bacterial network interactions and communities composition were significantly changed, becoming especially enhanced in the relative abundances of Vibrio, Edwardsiella, Enterobacter, Pseudomonas, and Aeromonas. Interestingly, the control groups (C&D) were found to have a limited influence upon host microbial composition, and reduced bleaching susceptibility of P. damicornis. These results indicate bleaching's initiation and progression may be caused by opportunistic bacteria of resident microbes in a process under regulation by AHLs. These findings add a new dimension to our understanding of the complexity of bleaching mechanisms from a chemoecological perspective. This article is protected by copyright. All rights reserved.
Opportunistic bacteria use quorum sensing to disturb coral symbiotic communities and mediate the occurrence of coral bleaching.
Jin Zhou,Zi-Jun Lin,Zhonghua Cai,Yanhua Zeng,Jianming Zhu,Xiaopeng Du
Published 2020 in Environmental Microbiology
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- Publication year
2020
- Venue
Environmental Microbiology
- Publication date
2020-04-05
- Fields of study
Biology, Medicine, Environmental Science
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Semantic Scholar, PubMed
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