Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, June 2013."June 2013." Cataloged from PDF version of thesis.Includes bibliographical references.Phenazines are redox-active small molecules produced by bacteria. Although phenazines have been studied extensively for their roles as toxins, how phenazines benefit producing organisms is still being uncovered. Pseudomonas aeruginosa is a phenazine-producing Gram-negative bacterium that inhabits soil and water, and can establish persistent infections in plants, animals, and humans. P. aeruginosa produces phenazines upon activation of its quorum-sensing system, which is involved in numerous physiological changes, including biofilm development. Phenazines have been proposed ...
Redox chemistry is the basis for biological energy generation and anabolism. Redox conditions also s...
Some pseudomonads produce phenazines, a group of small, redox-active compounds with diverse physiolo...
The opportunistic pathogen Pseudomonas aeruginosa has been well studied for its ability to cause nos...
The opportunistic pathogen Pseudomonas aeruginosa secretes a class of colorful redox-active small mo...
Many bacteria secrete secondary metabolites, whose production is decoupled from active growth in lab...
The opportunistic pathogen Pseudomonas aeruginosa excretes redox-active small molecules called phena...
Antibiotics are increasingly recognized as having other, important physiological functions for the c...
Phenazines are a class of redox-active molecules produced by diverse bacteria and archaea. Many of t...
Redox-cycling compounds, including endogenously produced phenazine antibiotics, induce expression of...
The primary mode of growth for bacteria in the environment and during infection is as a biofilm–mult...
Microorganisms exist in the environment as multicellular communities that face the challenge of surv...
Diverse bacteria, including several Pseudomonas species, produce a class of redox-active metabolites...
Bacterial resistance to conventional antibiotics necessitates the identification of novel leads for ...
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 ...
Redox chemistry is the basis for biological energy generation and anabolism. Redox conditions also s...
Some pseudomonads produce phenazines, a group of small, redox-active compounds with diverse physiolo...
The opportunistic pathogen Pseudomonas aeruginosa has been well studied for its ability to cause nos...
The opportunistic pathogen Pseudomonas aeruginosa secretes a class of colorful redox-active small mo...
Many bacteria secrete secondary metabolites, whose production is decoupled from active growth in lab...
The opportunistic pathogen Pseudomonas aeruginosa excretes redox-active small molecules called phena...
Antibiotics are increasingly recognized as having other, important physiological functions for the c...
Phenazines are a class of redox-active molecules produced by diverse bacteria and archaea. Many of t...
Redox-cycling compounds, including endogenously produced phenazine antibiotics, induce expression of...
The primary mode of growth for bacteria in the environment and during infection is as a biofilm–mult...
Microorganisms exist in the environment as multicellular communities that face the challenge of surv...
Diverse bacteria, including several Pseudomonas species, produce a class of redox-active metabolites...
Bacterial resistance to conventional antibiotics necessitates the identification of novel leads for ...
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 ...
Redox chemistry is the basis for biological energy generation and anabolism. Redox conditions also s...
Some pseudomonads produce phenazines, a group of small, redox-active compounds with diverse physiolo...
The opportunistic pathogen Pseudomonas aeruginosa has been well studied for its ability to cause nos...