4.7 Article

Molecular Commerce on Coral Reefs: Using Metabolomics to Reveal Biochemical Exchanges Underlying Holobiont Biology and the Ecology of Coastal Ecosystems

期刊

FRONTIERS IN MARINE SCIENCE
卷 8, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fmars.2021.630799

关键词

biogeochemistry; coral reefs; coral holobiont; dissolved organic matter; metabolomics; microbial ecology; nutrient cycling

资金

  1. United States National Science Foundation [OCE-2118618, OCE-2023298, OCE-2023509]
  2. UH Sea Grant [UNIHI-SEAGRANT-JC-21-04]
  3. National Oceanic and Atmospheric Administration - University of Hawaii Sea Grant College Program, SOEST from NOAA Office of Sea Grant, Department of Commerce [NA18OAR4170076, A/AS-1]

向作者/读者索取更多资源

Metabolomics is a rapidly advancing field that utilizes powerful analytical tools and bioinformatic methods to reveal the diversity and activity of chemical compounds within organisms. By applying metabolomics, it is possible to gain insights into the chemical processes in coastal ecosystems, including metabolite exchange between plants, animals, and microbes, as well as interactions among coral reefs and other organisms.
The rapidly advancing field of metabolomics encompasses a diverse suite of powerful analytical and bioinformatic tools that can help to reveal the diversity and activity of chemical compounds in individual organisms, species interactions, and entire ecosystems. In this perspective we use examples from studies of coral reefs to illustrate ways in which metabolomics has been and can be applied to understand coastal ecosystems. Examples of new insights that can be provided by metabolomics include resolving metabolite exchange between plants, animals and their microbiota, identifying the relevant metabolite exchanges associated with the onset and maintenance of diverse, microbial mutualisms characterizing unknown molecules that act as cues in coral, reproduction, or defining the suites of compounds involved in coral-algal competition and microbialization of algal-dominated ecosystems. Here we outline sampling, analytical and informatic methods that marine biologists and ecologists can apply to understand the role of chemical processes in ecosystems, with a focus on open access data analysis workflows and democratized databases. Finally, we demonstrate how these metabolomics tools and bioinformatics approaches can provide scientists the opportunity to map detailed metabolic inventories and dynamics for a holistic view of the relationships among reef organisms, their symbionts and their surrounding marine environment.

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