Diverse bacteria, including several Pseudomonas species, produce a class of redox-active metabolites called phenazines that impact different cell types in nature and disease. Phenazines can affect microbial communities in both positive and negative ways, where their presence is correlated with decreased species richness and diversity. However, little is known about how the concentration of phenazines is modulated in situ and what this may mean for the fitness of members of the community. Through culturing of phenazine-degrading mycobacteria, genome sequencing, comparative genomics, and molecular analysis, we identified several conserved genes that are important for the degradation of three Pseudomonas-derived phenazines: phenazine-1-carboxy...
Phenazines are redox-active small molecules that play significant roles in the interactions between ...
The opportunistic pathogen Pseudomonas aeruginosa produces colorful redox-active metabolites called ...
Phenazines are secondary metabolites with broad-spectrum antibiotic activity against bacteria, fungi...
Diverse bacteria, including several Pseudomonas species, produce a class of redox-active metabolites...
Diverse bacteria, including several Pseudomonas species, produce a class of redox-active metabolites...
Phenazines are a class of bacterially produced redox-active metabolites that are found in natural, i...
Phenazines are a large class of nitrogen-containing aromatic heterocyclic compounds produced and sec...
Microorganisms exist in the environment as multicellular communities that face the challenge of surv...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, June 2013."June 2013." Cat...
International audiencePhenazines are versatile secondary metabolites of bacterial origin that functi...
Metabolic engineering improves industrial biochemical production through beneficial edits in the mic...
Phenazines are natural bacterial antibiotics that can protect crops from disease. However, for most ...
The opportunistic pathogen Pseudomonas aeruginosa secretes a class of colorful redox-active small mo...
Pseudomonas chlororaphis 30-84 is a plant growth-promoting rhizobacterium that was selected for its ...
Many bacteria secrete secondary metabolites, whose production is decoupled from active growth in lab...
Phenazines are redox-active small molecules that play significant roles in the interactions between ...
The opportunistic pathogen Pseudomonas aeruginosa produces colorful redox-active metabolites called ...
Phenazines are secondary metabolites with broad-spectrum antibiotic activity against bacteria, fungi...
Diverse bacteria, including several Pseudomonas species, produce a class of redox-active metabolites...
Diverse bacteria, including several Pseudomonas species, produce a class of redox-active metabolites...
Phenazines are a class of bacterially produced redox-active metabolites that are found in natural, i...
Phenazines are a large class of nitrogen-containing aromatic heterocyclic compounds produced and sec...
Microorganisms exist in the environment as multicellular communities that face the challenge of surv...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, June 2013."June 2013." Cat...
International audiencePhenazines are versatile secondary metabolites of bacterial origin that functi...
Metabolic engineering improves industrial biochemical production through beneficial edits in the mic...
Phenazines are natural bacterial antibiotics that can protect crops from disease. However, for most ...
The opportunistic pathogen Pseudomonas aeruginosa secretes a class of colorful redox-active small mo...
Pseudomonas chlororaphis 30-84 is a plant growth-promoting rhizobacterium that was selected for its ...
Many bacteria secrete secondary metabolites, whose production is decoupled from active growth in lab...
Phenazines are redox-active small molecules that play significant roles in the interactions between ...
The opportunistic pathogen Pseudomonas aeruginosa produces colorful redox-active metabolites called ...
Phenazines are secondary metabolites with broad-spectrum antibiotic activity against bacteria, fungi...