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Environmental DNA-based profiling of benthic bacterial and eukaryote communities along a crude oil spill gradient in a coral reef in the Persian Gulf. | LitMetric

Environmental DNA-based profiling of benthic bacterial and eukaryote communities along a crude oil spill gradient in a coral reef in the Persian Gulf.

Mar Pollut Bull

Department of Animal Sciences and Marine Biology, Faculty of Life Sciences and Biotechnology, Shahid Beheshti University, G.C., Evin, Tehran, Iran. Electronic address:

Published: November 2022

AI Article Synopsis

  • - Coral reefs in the Persian Gulf are often affected by crude oil spills, prompting a study on their bacterial and eukaryote communities using environmental DNA (eDNA) analysis.
  • - The research found significant changes in these communities depending on the level of polycyclic aromatic hydrocarbon (PAH) pollution, highlighting the dominant roles of Alphaproteobacteria and certain metazoans.
  • - The study suggests that the variations in community patterns could lead to the development of an eDNA-based monitoring system that uses these organisms as indicators of environmental health in coral reefs.

Article Abstract

Coral reef ecosystems in the Persian Gulf are frequently exposed to crude oil spills. We investigated benthic bacterial and eukaryote community structures at such coral reef sites subjected to different degrees of polycyclic aromatic hydrocarbon (PAH) pollution using environmental DNA (eDNA) metabarcoding. Both bacterial and eukaryote communities responded with pronounced shifts to crude oil pollution and distinguished control sites, moderately and heavily impacted sites with significant confidentiality. The observed community patterns were predominantly driven by Alphaproteobacteria and metazoans. Among these, we identified individual genera that were previously linked to oil spill stress, but also taxa, for which a link to hydrocarbon still remains to be established. Considering the lack of an early-warning system for the environmental status of coral reef ecosystems exposed to frequent crude-oil spills, our results encourage further research towards the development of an eDNA-based biomonitoring tool that exploits benthic bacterial and eukaryote communities as bioindicators.

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Source
http://dx.doi.org/10.1016/j.marpolbul.2022.114143DOI Listing

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