Antarctic bacterial natural products: from genomic insights to drug discovery

Abstract

Covering: up to the end of 2024

Microbial life dominates the extreme continent Antarctica, playing a pivotal role in ecosystem functioning and serving as a reservoir of specialized metabolites known as natural products (NPs). NPs not only contribute to microbial adaptation to harsh conditions but also modulate microbial community structure. Long-term isolation and environmental pressures have shaped the genomes of Antarctic bacteria, suggesting that they also encode unique NPs. Since NPs are also an important source of drugs, we argue that investigating Antarctic bacterial NPs is essential not only for understanding their ecological role and evolution, but also for discovering new chemical structures, biosynthetic mechanisms, and potential new drugs. Yet, despite advances in omics technologies and increased scientific activities in Antarctica, relatively few new bacterial NPs have been discovered. The lack of systematic research activities focused on the exploration of Antarctic bacteria and their NPs constitutes a big problem considering the climate change issue, to which ecosystems in polar regions are the most sensitive areas on the Earth. Here, we highlight the currently available data on Antarctic bacteria, their biosynthetic potential, and the successful NP discoveries, while addressing the challenges in NP research and advocating for systematic, collaborative efforts aligned with the Antarctic Treaty System and the Antarctic Conservation Biogeographic Regions.

Graphical abstract: Antarctic bacterial natural products: from genomic insights to drug discovery

Supplementary files

Article information

Article type
Highlight
Submitted
28 Aug 2024
First published
25 Feb 2025
This article is Open Access
Creative Commons BY license

Nat. Prod. Rep., 2025, Advance Article

Antarctic bacterial natural products: from genomic insights to drug discovery

W. Medeiros, S. Kralova, V. Oliveira, N. Ziemert and L. Sehnal, Nat. Prod. Rep., 2025, Advance Article , DOI: 10.1039/D4NP00045E

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