Characterizing transcriptomic responses to sediment stress across location and morphology in reef-building corals

Author:

Ashey Jill1,McKelvie Hailey2,Freeman John2,Shpilker Polina2,Zane Lauren H.1,Becker Danielle M.1,Cowen Lenore2,Richmond Robert H.3,Paul Valerie J.4ORCID,Seneca Francois O.5ORCID,Putnam Hollie M.1ORCID

Affiliation:

1. Department of Biological Sciences, University of Rhode Island, Kingston, Rhode Island, United States

2. Department of Computer Science, Tufts University, Medford, Massachusetts, United States

3. Kewalo Marine Lab, University of Hawaii at Manoa, Honolulu, Hawaii, United States

4. Smithsonian Marine Station, Smithsonian, Fort Pierce, Florida, United States

5. Centre Scientifique de Monaco, Monaco, Monaco

Abstract

Anthropogenic activities increase sediment suspended in the water column and deposition on reefs can be largely dependent on colony morphology. Massive and plating corals have a high capacity to trap sediments, and active removal mechanisms can be energetically costly. Branching corals trap less sediment but are more susceptible to light limitation caused by suspended sediment. Despite deleterious effects of sediments on corals, few studies have examined the molecular response of corals with different morphological characteristics to sediment stress. To address this knowledge gap, this study assessed the transcriptomic responses of branching and massive corals in Florida and Hawai‘i to varying levels of sediment exposure. Gene expression analysis revealed a molecular responsiveness to sediments across species and sites. Differential Gene Expression followed by Gene Ontology (GO) enrichment analysis identified that branching corals had the largest transcriptomic response to sediments, in developmental processes and metabolism, while significantly enriched GO terms were highly variable between massive corals, despite similar morphologies. Comparison of DEGs within orthogroups revealed that while all corals had DEGs in response to sediment, there was not a concerted gene set response by morphology or location. These findings illuminate the species specificity and genetic basis underlying coral susceptibility to sediments.

Funder

National Fish and Wildlife Foundation, NSF HDR

The Tufts Data Intensive Studies Center

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference131 articles.

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