Population structure and microbial community diversity of two common tetillid sponges in a tropical reef lagoon

PeerJ. 2020 Apr 22:8:e9017. doi: 10.7717/peerj.9017. eCollection 2020.

Abstract

Sponges are predicted to dominate future reef ecosystems influenced by anthropogenic stressors and global climate change. The ecological success of sponges is attributed to their complex physiology, which is in part due to the diversity of their associated prokaryotic microbiome. However, the lack of information on the microbial community of many sponge species makes it difficult to gauge their interactions and functional contributions to the ecosystem. Here, we investigated the population dynamics and microbial community composition of two tetillid sponges identified as Cinachyrella sp. and Paratetilla sp., which are common on coral bommies in a reef lagoon in Bolinao, northwestern Philippines. The sponges ranged in size from 2.75 ± 2.11 to 6.33 ± 3.98 cm (mean ± standard deviation) and were found at an average density of 1.57 ± 0.79 to 4.46 ± 3.60 individuals per sq. m. on the bommies. The tetillid sponge population structure remained stable over the course of four years of monitoring. Prokaryotic communities associated with the sponges were distinct but had overlapping functions based on PICRUSt2 predictions. This convergence of functions may reflect enrichment of metabolic processes that are crucial for the survival of the tetillid sponges under prevailing conditions in the reef lagoon. Differentially enriched functions related to carbon, sulfur, fatty acid, and amino acid metabolism, cellular defense, and stress response, may influence the interactions of tetillid sponges with other biota on the bommies.

Keywords: 16S rRNA; Cinachyrella; Coral bommies; Moon sponge; Paratetilla; Sponge-associated microbes.

Associated data

  • figshare/10.6084/m9.figshare.11664066.v3

Grants and funding

This study was funded by the University of the Philippines System Enhanced Creative Work and Research Grant (ECWRG 2018-1-002) to Cecilia Conaco and by the Department of Science and Technology Philippine Council for Agriculture, Aquatic and Natural Resources Research and Development (QMSR- MRRD-MEC-295-1449) to Patrick C. Cabaitan and Cecilia Conaco. There was no additional external funding received for this study. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.