A comparison of free-living and sponge-associated bacterial communities from a remote oceanic island with a focus on calcareous sponges

Author:

Cleary D F R1ORCID,Oliveira V1,Gomes N C M1,Bialecki A2,de Voogd N J34

Affiliation:

1. Department of Biology and CESAM, University of Aveiro , Campus de Santiago, 3810-193 Aveiro , Portugal

2. Laboratoire de Chimie et de Biotechnologie des Produits Naturels, Faculté des Sciences et Technologies, Université de La Réunion , 15 Avenue René Cassin, CS 92003, CEDEX 09, 97744 Saint-Denis , France

3. Naturalis Biodiversity Center , Darwinweg 2, 2333 CR Leiden , The Netherlands

4. Institute of Environmental Sciences (CML), Leiden University , 2300 RA Leiden , The Netherlands

Abstract

AbstractCalcareous sponges are an often overlooked element of sponge communities. In contrast to most other sponges, calcareous sponges produce calcium carbonate spicules, as opposed to the siliceous spicules of most sponges. Here, we investigated the bacterial communities of 17 sponge species, including type and paratype specimens of recently described calcareous species, sampled off the remote island of Rodrigues, in the Indian Ocean. The main axis of variation in a PCO analysis of all samples separated noncalcareous sponge species, including Axinyssa aplysinoides, Cinachyrella aff. australiensis, Petrosia seychellensis, Ircinia aff. variabilis, Spongia ceylonensis, Plakinastrella aff. clipptertonensis, Agelas aff. ceylonica, Agelas aff. mauritiana, and Hyrtios erectus from calcareous sponges, the noncalcareous Biemna tubulata, sediment, and seawater. Overall, the bacterial communities of calcareous sponges revealed unique prokaryotic profiles with low abundances of several bacterial phyla, and relatively high abundances of other taxa, for example, the phyla Fibrobacterota, Proteobacteria, and the SAR324 clade, the class Alphaproteobacteria, and orders Cytophagales and Cyanobacteriales, although there was considerable variation among species. Calcareous sponges also had a high dominance of unknown bacterial operational taxonomic units (OTUs). Considering the unique nature of these communities, further studies are needed to better understand the environmental and ecological drivers of calcareous sponge-associated bacterial communities and their relevance as potential sources of novel microbes of biotechnological interest.

Funder

Horizon 2020

FCT

CESAM

MCTES

OE

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,Ecology,Microbiology

Reference88 articles.

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