Metabolomics on the study of marine organisms

Metabolomics. 2022 Mar 2;18(3):17. doi: 10.1007/s11306-022-01874-y.

Abstract

Background: Marine ecosystems are hosts to a vast array of organisms, being among the most richly biodiverse locations on the planet. The study of these ecosystems is very important, as they are not only a significant source of food for the world but also have, in recent years, become a prolific source of compounds with therapeutic potential. Studies of aspects of marine life have involved diverse fields of marine science, and the use of metabolomics as an experimental approach has increased in recent years. As part of the "omics" technologies, metabolomics has been used to deepen the understanding of interactions between marine organisms and their environment at a metabolic level and to discover new metabolites produced by these organisms.

Aim of review: This review provides an overview of the use of metabolomics in the study of marine organisms. It also explores the use of metabolomics tools common to other fields such as plants and human metabolomics that could potentially contribute to marine organism studies. It deals with the entire process of a metabolomic study, from sample collection considerations, metabolite extraction, analytical techniques, and data analysis. It also includes an overview of recent applications of metabolomics in fields such as marine ecology and drug discovery and future perspectives of its use in the study of marine organisms.

Key scientific concepts of review: The review covers all the steps involved in metabolomic studies of marine organisms including, collection, extraction methods, analytical tools, statistical analysis, and dereplication. It aims to provide insight into all aspects that a newcomer to the field should consider when undertaking marine metabolomics.

Keywords: Drug discovery; Marine chemical ecology; Marine organisms; Metabolomics.

Publication types

  • Research Support, Non-U.S. Gov't
  • Review

MeSH terms

  • Aquatic Organisms* / metabolism
  • Drug Discovery
  • Ecosystem
  • Humans
  • Metabolomics* / methods
  • Plants