Communications Earth & Environment (Aug 2023)

Multi-omics determination of metabolome diversity in natural coral populations in the Pacific Ocean

  • Maggie M. Reddy,
  • Corentine Goossens,
  • Yuxiang Zhou,
  • Slimane Chaib,
  • Delphine Raviglione,
  • Florence Nicolè,
  • Benjamin C. C. Hume,
  • Didier Forcioli,
  • Sylvain Agostini,
  • Emilie Boissin,
  • Emmanuel Boss,
  • Chris Bowler,
  • Colomban de Vargas,
  • Eric Douville,
  • Michel Flores,
  • Paola Furla,
  • Pierre E. Galand,
  • Eric Gilson,
  • Fabien Lombard,
  • Stéphane Pesant,
  • Stéphanie Reynaud,
  • Matthew B. Sullivan,
  • Shinichi Sunagawa,
  • Romain Troublé,
  • Rebecca Vega Thurber,
  • Patrick Wincker,
  • Didier Zoccola,
  • Christian R. Voolstra,
  • Denis Allemand,
  • Serge Planes,
  • Olivier P. Thomas,
  • Bernard Banaigs

DOI
https://doi.org/10.1038/s43247-023-00942-y
Journal volume & issue
Vol. 4, no. 1
pp. 1 – 10

Abstract

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Abstract Coral reefs are considered one of the most emblematic ecosystems in our oceans, but their existence is increasingly threatened by climate change. In this study, natural populations of two reef-building coral genera, Pocillopora spp. and Porites spp., and one hydrocoral Millepora cf. platyphylla from two different marine provinces in the Pacific Ocean were investigated using a multi-omics approach as part of the Tara Pacific expedition. Here, we propose a standardised method consisting of a biphasic extraction method followed by metabolomics analysis using mass spectrometry for the lipidome and 1H nuclear magnetic resonance for hydrophilic metabolites. Our study assessed a broad range of the metabolome and is the first to identify and add 24 compounds by NMR and over 200 lipids by MS analyses for corals. Metabolic profiles were distinct among genera but not within genotypes of the cnidarian corals. Although endosymbiotic dinoflagellates of the family Symbiodiniaceae are known to play a central role in the metabolomic signature of the coral holobiont, they did not account for all differences. This suggests that a combined effect by different members of the coral holobiont and an interaction with the environment might be at play. Our study provides foundational knowledge on the coral holobiont metabolome.