A meta-analysis of the stony coral tissue loss disease microbiome finds key bacteria in lesions and unaffected tissue of diseased colonies

Author:

Rosales Stephanie M.ORCID,Huebner Lindsay K.ORCID,Evans James S.ORCID,Apprill AmyORCID,Baker Andrew C.ORCID,Bellantuono Anthony J.ORCID,Brandt Marilyn E.ORCID,Clark Abigail S.ORCID,del Campo JavierORCID,Dennison Caroline E.,Huntley Naomi E.ORCID,Kellogg Christina A.ORCID,Medina Mónica,Meyer Julie L.ORCID,Muller Erinn M.ORCID,Rodriguez-Lanetty Mauricio,Salerno Jennifer L.ORCID,Schill William B.ORCID,Shilling Erin N.ORCID,Stewart Julia Marie,Voss Joshua D.ORCID

Abstract

ABSTRACTStony coral tissue loss disease (SCTLD) has been causing significant whole colony mortality on reefs in Florida and the Caribbean. The cause of SCTLD remains unknown, with limited concurrence of SCTLD-associated bacteria among studies. We conducted a meta-analysis of SSU 16S ribosomal RNA gene datasets generated by 16 field and laboratory SCTLD studies to find consistent bacteria associated with SCTLD across disease zones (vulnerable, endemic, and epidemic), coral species, coral compartments (mucus, tissue, and skeleton), and disease states (apparently healthy colony tissue [AH], and unaffected [DU] and lesion [DL] tissue from diseased colonies). We also evaluated bacteria in seawater and sediment, which may be sources of SCTLD transmission. Although AH colonies in endemic and epidemic zones harbor bacteria associated with SCTLD lesions, and aquaria and field samples had distinct microbial compositions, there were still clear differences in the microbial composition among AH, DU, and DL in the combined dataset. Alpha diversity between AH and DL was not different; however, DU showed increased alpha diversity compared to AH, indicating that, prior to lesion formation, corals may undergo a disturbance to the microbiome. This disturbance may be driven by Flavobacteriales, which were especially enriched in DU. While Rhodobacterales and Peptostreptococcales-Tissierellales were prominent in structuring microbial interactions in DL. Peptostreptococcales-Tissierellales specifically may contribute to lesion progression through an alpha-toxin. We provide a consensus of SCTLD-associated bacteria both prior to and during lesion progression and identify how these taxa vary across studies, coral species, coral compartments, seawater, and sediment.

Publisher

Cold Spring Harbor Laboratory

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