The proposed effort will identify genes and ultimately physiological mechanisms and pathways that are expressed under in situ conditions and are critical to functioning of aquifer dwelling anaerobic bacteria living in contaminated systems. The main objectives are: (1) Determine which Metal-reducer specific genes are important for activities in normal and contaminated subsurface sediment. To achieve these goals, we have generated a library of chromosomal mutants. These are introduced into contaminated sediments, incubated, allowed to grow, and then reisolated. A negative selection process allows us to determine which mutants have been selected against in sediments and thereby identify genes required for survival in subsurface sediments. (2) ...
Various approaches to clean contaminated aquatic environments have been proposed. In recent years, n...
Limitations on the availability of Fe(III) as an electron acceptor are thought to play an important ...
Elucidating the in situ metabolic activity of phylogenetically diverse populations of sulfate-reduci...
Desulfovibrio desulfuricans G20 and Shewanella oneidensis MR-1 are model subsurface organisms for st...
In order to realize the full potential of bioremediation, an understanding of microbial community an...
To learn more about the physiological state of Geobacter species living in subsurface sediments, hea...
The objectives of this project were to: (1) isolate and characterize novel anaerobic prokaryotes fro...
Some bacteria and archaea have evolved metabolic strategies that enable them to live in environments...
Nutrient limitation is an environmental stress that may reduce the effectiveness of bioremediation s...
Nutrient limitation is an environmental stress that may reduce the effectiveness of bioremediation s...
Mercury is a component of mixed wastes that have contaminated vast areas of the deep subsurface as a...
Engineered stimulation of Fe(III) has been proposed as a strategy to enhance the immobilization of r...
The mobility of trace metals and radionuclides released into aquatic and terrestrial environments by...
Bioremediation may offer the only feasible strategy for the nearly intractable problem of metal and ...
Molecular tools that can provide an estimate of the in situ growth rate of Geobacter species could i...
Various approaches to clean contaminated aquatic environments have been proposed. In recent years, n...
Limitations on the availability of Fe(III) as an electron acceptor are thought to play an important ...
Elucidating the in situ metabolic activity of phylogenetically diverse populations of sulfate-reduci...
Desulfovibrio desulfuricans G20 and Shewanella oneidensis MR-1 are model subsurface organisms for st...
In order to realize the full potential of bioremediation, an understanding of microbial community an...
To learn more about the physiological state of Geobacter species living in subsurface sediments, hea...
The objectives of this project were to: (1) isolate and characterize novel anaerobic prokaryotes fro...
Some bacteria and archaea have evolved metabolic strategies that enable them to live in environments...
Nutrient limitation is an environmental stress that may reduce the effectiveness of bioremediation s...
Nutrient limitation is an environmental stress that may reduce the effectiveness of bioremediation s...
Mercury is a component of mixed wastes that have contaminated vast areas of the deep subsurface as a...
Engineered stimulation of Fe(III) has been proposed as a strategy to enhance the immobilization of r...
The mobility of trace metals and radionuclides released into aquatic and terrestrial environments by...
Bioremediation may offer the only feasible strategy for the nearly intractable problem of metal and ...
Molecular tools that can provide an estimate of the in situ growth rate of Geobacter species could i...
Various approaches to clean contaminated aquatic environments have been proposed. In recent years, n...
Limitations on the availability of Fe(III) as an electron acceptor are thought to play an important ...
Elucidating the in situ metabolic activity of phylogenetically diverse populations of sulfate-reduci...