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Axel Visel
… the DOE Joint Genome Institute in 2010. As the Deputy for Science Programs, he focuses on the development and implementation of strategic initiatives at the JGI. Dr. Visel received his Ph.D. in 2004 from the Max … in Hanover, Germany, where he developed novel tools for large-scale in situ gene expression analysis in …
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2022 Progress Report
… (IGB) seen above is home to the DOE Joint Genome Institute (JGI). Researchers from the DOE Systems Biology Knowledgebase … the U.S. Department of Energy (DOE) Joint Genome Institute (JGI), a DOE Office of Science user facility at Lawrence … with access to the most advanced integrative genome science capabilities in support of the DOE’s research mission.     …
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Near-Complete Genome Sequence of Zygosaccharomyces rouxii NRRL Y-64007, a Yeast Capable of Growing on Lignocellulosic Hydrolysates
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Genome Sequences for Six Rhodanobacter Strains, Isolated from Soils and the Terrestrial Subsurface, with Variable Denitrification Capabilities
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Large‐scale cultivation of the bumblebee gut microbiota reveals an underestimated bacterial species diversity capable of pathogen inhibition
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Natural Prodcast Episode 20: Brian Bachmann
… I wanted to tell you about in this introduction. First and foremost, our interview this week is with Professor Brian … Chemistry Department, where he is the PI of the Laboratory for Biosynthetic Studies. Brian and I are old friends and … you can always find at naturalprodcast.com or through the JGI website at jgi.doe.gov . There’s a lot more to talk …
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Conserved unique peptide patterns (CUPP) online platform 2.0: implementation of +1000 JGI fungal genomes.
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JGI Plant Gene Atlas: an updateable transcriptome resource to improve functional gene descriptions across the plant kingdom
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Partial genome sequence of Thioalkalivibrio thiocyanodenitrificans ARhD 1T, a chemolithoautotrophic haloalkaliphilic sulfur-oxidizing bacterium capable of complete denitrification
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Near-complete genome sequence of Lipomyces tetrasporous NRRL Y-64009, an oleaginous yeast capable of growing on lignocellulosic hydrolysates
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Draft genome sequence of Yarrowia lipolytica NRRL Y-64008, an oleaginous yeast capable of growing on lignocellulosic hydrolysates.
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Expanded genome and proteome reallocation in a novel, robust Bacillus coagulans strain capable of utilizing pentose and hexose sugars
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