The goal of this genomes-to-life project is to develop models that can describe the functioning of the microbial communities involved in the in situ bioremediation of uranium-contaminated groundwater and harvesting electricity from waste organic matter. Previous studies have demonstrated that the microbial communities involved in uranium bioremediation and energy harvesting are both dominated by microorganisms in the family Geobacteraceae and that these Geobacteraceae are responsible for the uranium bioremediation and electron transfer to electrodes. The research plan is diagrammed below. Examples of how both pure culture and environmental genomic studies have dramatically changed the concepts of how Geobacteraceae-dominated subsurface comm...
Background: Bioremediation may offer the only feasiblestrategy for the nearly intractable problem of...
Fonner radionuclide waste ponds at the ERSP-Field Research Center in Oak Ridge, TN pose several chal...
This project successfully accomplished its goal of coupling genome-scale metabolic models with hydro...
Analysis of the Genetic Potential and Gene Expression of Microbial Communities Involved in the In Si...
Bioremediation may offer the only feasible strategy for the nearly intractable problem of metal and ...
Dissimilatory Fe(III) reduction is one of the most significant metabolisms in sedimentary environmen...
The increasing availability of the genome sequences of microorganisms involved in important bioremed...
To better understand the microbial functional diversity changes with subsurface redox conditions dur...
To learn more about the physiological state of Geobacter species living in subsurface sediments, hea...
Enhancing microbial U(VI) reduction with the addition of organic electron donors is a promising stra...
In recent years, uranium pollution in the environment has been recognized as a serious threat, and n...
Background: Bioremediation may offer the only feasible strategy for the nearly intractable problem ...
Prod 2019-288a EA SPE BIOmE INRAInternational audienceBackground: Bacteria can thrive in environment...
A pilot-scale system was established to examine the feasibility of in situ bioremediation and immobi...
A field-scale system is being used for evaluating in situ biological reduction and immobilization of...
Background: Bioremediation may offer the only feasiblestrategy for the nearly intractable problem of...
Fonner radionuclide waste ponds at the ERSP-Field Research Center in Oak Ridge, TN pose several chal...
This project successfully accomplished its goal of coupling genome-scale metabolic models with hydro...
Analysis of the Genetic Potential and Gene Expression of Microbial Communities Involved in the In Si...
Bioremediation may offer the only feasible strategy for the nearly intractable problem of metal and ...
Dissimilatory Fe(III) reduction is one of the most significant metabolisms in sedimentary environmen...
The increasing availability of the genome sequences of microorganisms involved in important bioremed...
To better understand the microbial functional diversity changes with subsurface redox conditions dur...
To learn more about the physiological state of Geobacter species living in subsurface sediments, hea...
Enhancing microbial U(VI) reduction with the addition of organic electron donors is a promising stra...
In recent years, uranium pollution in the environment has been recognized as a serious threat, and n...
Background: Bioremediation may offer the only feasible strategy for the nearly intractable problem ...
Prod 2019-288a EA SPE BIOmE INRAInternational audienceBackground: Bacteria can thrive in environment...
A pilot-scale system was established to examine the feasibility of in situ bioremediation and immobi...
A field-scale system is being used for evaluating in situ biological reduction and immobilization of...
Background: Bioremediation may offer the only feasiblestrategy for the nearly intractable problem of...
Fonner radionuclide waste ponds at the ERSP-Field Research Center in Oak Ridge, TN pose several chal...
This project successfully accomplished its goal of coupling genome-scale metabolic models with hydro...