Nature·4 min read·hard

Extensive genomic diversity in Desulfovibrio reveals species-specific functional traits associated with disease

Z
Zheng, Tingting
Extensive genomic diversity in Desulfovibrio reveals species-specific functional traits associated with disease
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Researchers analyzed over 2,600 Desulfovibrio genomes to identify functional traits linked to inflammatory diseases. The study highlights how specific bacterial strains and hydrogen sulfide production contribute to conditions like inflammatory bowel disease.

Why it matters

Understanding the genomic diversity of gut bacteria provides critical insights into the microbial origins of chronic inflammatory diseases, potentially leading to new diagnostic or therapeutic targets.

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Desulfovibrio spp. are associated with inflammatory diseases and human health, yet limited representative genomes and isolates hinder our understanding of their role in disease. Here, we assembled a comprehensive database of 2658 Desulfovibrio genomes across 90 diseases and 32 countries, including 24 human isolates. Genomic analyses showed extensive species diversity and revealed disease-associated functional traits, including flagellin and adaptation-associated genes (i.e., ureases). Flagellin-mediated Toll-like receptor 5 activation was species-specific and D. desulfuricans flagellin downregulated TGF-beta signalling in murine small intestinal organoids, suggesting impaired immune tolerance. Additionally, we investigated genomic capacity for hydrogen sulfide (H 2 S) production, a main Desulfovibrio metabolite. While health- and disease-associated Desulfovibrio spp. mainly encoded dissimilatory sulfate reduction, tetrathionate metabolism-encoding bacteria were exclusively detected in inflammatory bowel diseases, including Proteus mirabilis and Morganella morganii .

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