Microbial phenazines: biosynthesis, structural diversity, evolution, regulation, and biological significance

Феназины микроорганизмов: биосинтез, структурное разнообразие, эволюция, регуляция и биологическое значение
Linda S. Thomashow, David M. Weller, Wulf Blankenfeldt, Dmitri V. Mavrodi, Olga V. Mavrodi
2025-10-01

horizontal gene transferphenazine biosynthesisphenazinesregulation of phenazine productionstructural diversity
SUMMARYPhenazines are small, redox-active secondary metabolites produced by various bacterial species. These compounds participate in electron-transfer reactions, aiding microbes in surviving stressful or oxygen-limited environments. In this review, we examine the extensive structural diversity of phenazines and trace the evolutionary history of their biosynthetic pathways, which often move between distantly related species through horizontal gene transfer. We also explore how environmental factors such as nutrient levels and cell-to-cell signaling regulate phenazine production. Beyond their roles in microbial physiology, phenazines influence interactions among organisms, acting as antimicrobial agents, signaling molecules, and factors that shape microbiome dynamics in soils, plant roots, and other habitats. A better understanding of phenazine biology reveals how microbes adapt and thrive in diverse environments and emphasizes the potential applications of these compounds in agriculture and human health.
1
Environmental factors such as nutrient levels and cell-to-cell signaling regulate phenazine production.
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Phenazine biosynthetic pathways show extensive structural diversity and have evolved via horizontal gene transfer between distantly related species.
3
Phenazines are small, redox-active secondary metabolites that participate in microbial electron-transfer reactions to aid survival in stressful or oxygen-limited environments.
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Phenazines influence inter-organism interactions by acting as antimicrobial agents, signaling molecules, and shaping microbiome dynamics in soils, plant roots, and other habitats.
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Understanding phenazine biology highlights their potential applications in agriculture and human health.

Microbial phenazines (redox-active secondary metabolites produced by bacteria)

Their biosynthesis, structural diversity, evolutionary history and horizontal gene transfer of biosynthetic pathways, regulation by environmental factors and cell–cell signaling, and biological roles in microbial physiology and interspecies interactions (antimicrobial activity, signaling, microbiome shaping)

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Publication Date
2025-10-01
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Authors
Linda S. Thomashow
David M. Weller
Wulf Blankenfeldt
Dmitri V. Mavrodi
Olga V. Mavrodi
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