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Bioenergy / Biomass / Ethanol / Fuels / Panicum virgatum / Metabolism / Ethanol fuel / Biotechnology / Flora of the United States / Flora / Biofuels


Biosystems Design to Enable Next-Generation Biofuels -- Summary of 2012 projects
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Document Date: 2014-11-04 16:22:22


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City

Cambridge / San Diego / St. Louis / /

Company

National Renewable Energy Laboratory / Pacific Northwest National Laboratory / Oak Ridge National Laboratory / Lawrence Berkeley National Laboratory / CAM / /

Country

Sweden / /

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Facility

Colorado State University / J. Craig Venter Institute / University of Nevada / Plant Systems Design / Chalmers University / University of Illinois / Washington State University / University of Minnesota / Massachusetts Institute of Technology / Purdue University / plant Arabidopsis / University of California / Donald Danforth Plant Science Center / University of Colorado / /

IndustryTerm

integrated metabolic and genetic networks / high oil yields / metabolic machinery / energy flow / energy flux / hybrid biological systems / fermentative microbial systems / clean energy solutions / bacterial systems / genomicscience.energy.gov / high energy density / biological systems / science.energy.gov/ber/ / technology development / energy sources / iterative network / regulatory networks / carbon management / natural systems / transformation technologies / photosynthetic machinery / genome-scale engineering technologies / transgenic systems / energy / re-designing energy crops / energy.gov/biosystemsdesign/ / genome engineering technologies / food crops / oil production / microbial systems / metabolic networks / integrated interdisciplinary applications / high oil content / science.energy.gov / /

Organization

U.S. Department of Energy office of Biological and Environmental Research Phone / Donald Danforth Plant Science Center / Stephanopoulos Lab / Washington State University / office of Biological and Environmental Research Assembling / Department of Energy / office of Biological / USDA Agricultural Research Service / University of Liver / Massachusetts Institute of Technology / office of Biological and Environmental Research / Purdue University / Chalmers University / University of Illinois / Colorado State University / DOE office of Biological and Environmental Research / University of California / Davis / University of Nevada / Reno / U.S. Department of Energy office of Science / University of Colorado / Boulder / Carnegie Institution for Science / University of California / Los Angeles / DOE office of Science / J. Craig Venter Institute / University of Minnesota / Environmental Research / Stanford / University of California / San Diego / /

Person

Eduardo Blumwald / Daniel Voytas / Bernhard Palsson / Timothy Tschaplinski / Christopher Rao / Jose Dinneny / Graham Peers / Todd Mockler / James Hartwell / Christian Tobias / Clint Chapple / Ryan Gill / David Weston / Christopher Dupont / Gerald Tuskan / John Vogel / Martin Polz / Natalia Dudareva / Scott Baker / Adam Arkin / John Morgan / Roger Thilmony / Eric Alm / John Cushman / Jens Nielsen / Ivan Baxter / Tom Brutnell / Karen Schlauch / Sue Rhee / Anne Borland / Jin-Gui Chen / James Liao / Andrew Leakey / Andrew Allen / Rob Knight / Gregory Stephanopoulos / Pablo Rabinowicz / /

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Position

Program Manager / model photosynthetic eukaryotic microbe •• Principal Investigator / model C4 grass Setaria viridis •• Principal Investigator / bioenergy •• Principal Investigator / perennial grasses •• Principal Investigator / measurements and genome-based models •• Principal Investigator / •• Principal Investigator / marine macroalgae •• Principal Investigator / marginal environments •• Principal Investigator / Manager for Biosystems Design Websites / /

ProvinceOrState

Minnesota / Illinois / Nevada / California / Massachusetts / Colorado / /

PublishedMedium

Environmental Research / /

Technology

genomics / metabolic networks / transcriptomics / genome-scale engineering technologies / genome engineering technologies / biofuels / gene expression / Genomic engineering technologies / metabolomics / transformation technologies / /

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