Insights into the Antimicrobial Activities and Metabolomes of Aquimarina (Flavobacteriaceae, Bacteroidetes) Species from the Rare Marine Biosphere

Mar Drugs. 2022 Jun 28;20(7):423. doi: 10.3390/md20070423.

Abstract

Two novel natural products, the polyketide cuniculene and the peptide antibiotic aquimarin, were recently discovered from the marine bacterial genus Aquimarina. However, the diversity of the secondary metabolite biosynthetic gene clusters (SM-BGCs) in Aquimarina genomes indicates a far greater biosynthetic potential. In this study, nine representative Aquimarina strains were tested for antimicrobial activity against diverse human-pathogenic and marine microorganisms and subjected to metabolomic and genomic profiling. We found an inhibitory activity of most Aquimarina strains against Candida glabrata and marine Vibrio and Alphaproteobacteria species. Aquimarina sp. Aq135 and Aquimarina muelleri crude extracts showed particularly promising antimicrobial activities, amongst others against methicillin-resistant Staphylococcus aureus. The metabolomic and functional genomic profiles of Aquimarina spp. followed similar patterns and were shaped by phylogeny. SM-BGC and metabolomics networks suggest the presence of novel polyketides and peptides, including cyclic depsipeptide-related compounds. Moreover, exploration of the ‘Sponge Microbiome Project’ dataset revealed that Aquimarina spp. possess low-abundance distributions worldwide across multiple marine biotopes. Our study emphasizes the relevance of this member of the microbial rare biosphere as a promising source of novel natural products. We predict that future metabologenomics studies of Aquimarina species will expand the spectrum of known secondary metabolites and bioactivities from marine ecosystems.

Keywords: bioactivity screening; biosynthetic gene clusters; metabolic networks; microbial diversity; natural products; the Sponge Microbiome Project.

MeSH terms

  • Anti-Infective Agents* / metabolism
  • Anti-Infective Agents* / pharmacology
  • Bacteroidetes / genetics
  • Biological Products* / metabolism
  • Biological Products* / pharmacology
  • Ecosystem
  • Flavobacteriaceae* / genetics
  • Humans
  • Metabolome
  • Methicillin-Resistant Staphylococcus aureus*
  • Phylogeny

Substances

  • Anti-Infective Agents
  • Biological Products