ABSTRACT Phenazines are secreted metabolites that microbes use in diverse ways, from quorum sensing to antimicrobial warfare to energy conservation. Phenazines are able to contribute to these activities due to their redox activity. The physiological consequences of cellular phenazine reduction have been extensively studied, but the counterpart phenazine oxidation has been largely overlooked. Phenazine-1-carboxylic acid (PCA) is common in the environment and readily reduced by its producers. Here, we describe its anaerobic oxidation by Citrobacter portucalensis strain MBL, which was isolated from topsoil in Falmouth, MA, and which does not produce phenazines itself. This activity depends on the availability of a suitable terminal electron ac...
Many bacteria secrete secondary metabolites, whose production is decoupled from active growth in lab...
Nitrification, the microbial oxidation of ammonia to nitrate via nitrite, is a pivotal component of ...
Methanotrophic microorganisms play a critical role in controlling the flux of methane from natural s...
ABSTRACT Diverse bacteria, including several Pseudomonas species, produce a class of redox-active me...
Natural products with important therapeutic properties are known to be produced by a variety of soil...
Phenazines are a large class of nitrogen-containing aromatic heterocyclic compounds produced and sec...
Phenazines are a class of bacterially produced redox-active metabolites that are found in natural, i...
Diverse bacteria, including several Pseudomonas species, produce a class of redox-active metabolites...
Microorganisms exist in the environment as multicellular communities that face the challenge of surv...
Microorganisms exist in the environment as multicellular communities that face the challenge of surv...
Abstract Background Phenazine-1-carboxamide (PCN), a phenazine derivative, is strongly antagonistic ...
The cyclic nature of specific conversions in the nitrogen cycle imposes strict limitations to the co...
The rate of anodic electron transfer is one of the factors limiting the performance of microbial fue...
Phenazines are a class of redox-active molecules produced by diverse bacteria and archaea. Many of t...
The activities of critical metabolic and regulatory proteins can be altered by exposure to natural o...
Many bacteria secrete secondary metabolites, whose production is decoupled from active growth in lab...
Nitrification, the microbial oxidation of ammonia to nitrate via nitrite, is a pivotal component of ...
Methanotrophic microorganisms play a critical role in controlling the flux of methane from natural s...
ABSTRACT Diverse bacteria, including several Pseudomonas species, produce a class of redox-active me...
Natural products with important therapeutic properties are known to be produced by a variety of soil...
Phenazines are a large class of nitrogen-containing aromatic heterocyclic compounds produced and sec...
Phenazines are a class of bacterially produced redox-active metabolites that are found in natural, i...
Diverse bacteria, including several Pseudomonas species, produce a class of redox-active metabolites...
Microorganisms exist in the environment as multicellular communities that face the challenge of surv...
Microorganisms exist in the environment as multicellular communities that face the challenge of surv...
Abstract Background Phenazine-1-carboxamide (PCN), a phenazine derivative, is strongly antagonistic ...
The cyclic nature of specific conversions in the nitrogen cycle imposes strict limitations to the co...
The rate of anodic electron transfer is one of the factors limiting the performance of microbial fue...
Phenazines are a class of redox-active molecules produced by diverse bacteria and archaea. Many of t...
The activities of critical metabolic and regulatory proteins can be altered by exposure to natural o...
Many bacteria secrete secondary metabolites, whose production is decoupled from active growth in lab...
Nitrification, the microbial oxidation of ammonia to nitrate via nitrite, is a pivotal component of ...
Methanotrophic microorganisms play a critical role in controlling the flux of methane from natural s...