It is demonstrated that microbial adaptation to extreme environments favors RiPP-based biosynthesis and that HCN may play a role in archaeal ecological interactions, and microbial communities in Arctic hydrothermal vent biofilms provide a rich reservoir of unique bioactive compounds, with implications for drug discovery.
Abstract
Biosynthetic gene clusters (BGCs) which encode diverse secondary metabolites are ubiquitous across microbiomes and support critical ecological functions. They also serve as attractive targets for new drug discovery. Here we combined genome-resolved metagenomics with long-read Nanopore RNA sequencing, yielding 1016 bacterial and 124 archaeal medium-to-high quality MAGs from previously unchartered microbial communities in Arctic hydrothermal vent biofilms. We identified 2965 BGCs from 870 metagenome-assembled genomes (MAGs) comprising a distinctive and rich diversity of BGCs, with ribosomally synthesized and post-translationally modified peptides (RiPPs) predominating across all samples. RiPPs and non-ribosomal peptide synthetases (NRPs), also known to encode metabolites with antimicrobial potential, are represented among the most expressed transcripts. Terpenes, though less expressed, contribute to microbial signaling and defense. Notably, we identify hydrogen cyanide (HCN) synthesis pathways in archaeal genomes, challenging the view that cyanogenesis is restricted to bacteria and eukaryotes. Our findings demonstrate that microbial adaptation to extreme environments favors RiPP-based biosynthesis and that HCN may play a role in archaeal ecological interactions. Moreover, microbial communities in Arctic hydrothermal vent biofilms provide a rich reservoir of unique bioactive compounds, with implications for drug discovery.
It is demonstrated that environmental filtering shapes both the taxonomic and functional organization of Antarctic microbiomes and highlight polar ecosystems as reservoirs of unexplored biosynthetic diversity with potential biotechnological relevance.
William B. Medeiros, Kelly Hidalgo-Martinez, D. D. P. S. Penna et al.· World Journal of Microbiolog...· 0 citations
Geothermally active lava caves and hydrothermal steam vents are chemically heterogeneous subsurface environments that harbor diverse microbial communities, yet the ecological and metabolic roles of Actinobacteria in these systems remain poorly characterized. Here, we reconstructed and analyzed 58 actinobacterial metage...
Shekhar Nagar, Cheng-Xuan Zhang, Jimmy H. Saw· bioRxiv· 0 citations
Genomic and metagenomic studies have revealed that microbes have the capacity to produce an enormous diversity of secondary metabolites. These compounds play important roles in microbial interactions and are also a major source of medicines and other useful natural products, yet only a small fraction of this biosynthet...
Caner Bağcı, Alec Talamas-Tanner, N. Ziemert· bioRxiv· 0 citations
The integrated bioinformatics pipeline enabled the reconstruction of 37 medium-to-high-quality metagenome-assembled genomes (MAGs), and recovered 147 BGCs mostly from Pseudomonadota, Actinomycetota, and Acidobacteriota phyla, highlighting the Siwa Oasis as a promising reservoir of unexplored biosynthetic potential and...
Muhammad A. Ajagbe, Shimaa F Ahmed, Amged A. Ouf et al.· World Journal of Microbiolog...· 1 citation
This work analysed 939 cyanobacterial genomes spanning 11 orders and five habitat types to identify taxonomic and ecological hotspots of biosynthetic potential and link phylogeny, ecology and genomic features to prioritise taxa, habitats and biosynthesis pathways for future natural product discovery.
Rachel Mizzi, B. A. Neilan, L. Pearson et al.· bioRxiv· 0 citations
A genome-resolved metagenomic analysis of 455 soil samples collected at different depths and seasonal stages across two Danish agricultural fields representing sandy and clay soil types revealed extensive biosynthetic and metabolic potential, including 46,913 biosynthetic gene clusters and prevalent genes linked to nit...
Ioanna Chatzigiannidou, Tanvi Taparia, P. L. Johansen et al.· ISME Communications· 0 citations
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