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New Research Finds Flagella in the Terrestrial Roots of Marine Bacteria
… s ditched their flagella and other traits when migrating back to the ocean. The Science Scientists have … of how these bacteria evolved could help inform engineering microorganisms for biofuel production and other … so.  In addition, scientists noted that the bacteria have enzymes to synthesize or degrade plant hormones, meaning its …
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The Spirodela polyrhiza genome reveals insights into its neotenous reduction fast growth and aquatic lifestyle
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Natural Prodcast Episode 18: A CSP Primer
… UDWARY: It’s been a while, but Natural Prodcast is back again for another round of episodes. If you stick around for the next few months, … do the bioinformatics and to synthesize these results into publication? So there’s this really important because we … Episode Transcript …
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Massive lateral transfer of genes encoding plant cell wall-degrading enzymes to the mycoparasitic fungus Trichoderma from its plant-associated hosts
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The crystal structures of the tri-functional Chloroflexus aurantiacus and bi-functional Rhodobacter sphaeroides malyl-CoA lyases and comparison with CitE-like superfamily enzymes and malate synthases
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Who We Are
…   The U.S. Department of Energy (DOE) Joint Genome Institute (JGI) is a national user facility located at … The U.S. Department of Energy (DOE) Joint Genome Institute (JGI) is a … The JGI was created in 1997 to unite the expertise and resources in DNA … National Laboratory.  In 1999, to accelerate the completion of DOE’s commitment to the Human Genome Project , the …
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JGI Contributes Nine to 2022 Highly Cited Researchers List
… This year’s list features 6,900 researchers working in 21 fields.  Congratulations to the  2022 Highly Cited … influence in their chosen field or fields through the publication of multiple highly cited papers during the last decade” by … The U.S. Department of Energy Joint Genome Institute, a DOE Office of Science User Facility …
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Genomic and proteomic biases inform metabolic engineering strategies for anaerobic fungi
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A combinatorial approach to synthetic transcription factor‐promoter combinations for yeast strain engineering
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Laboratory Evolution and Reverse Engineering of Clostridium thermocellum for Growth on Glucose and Fructose
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Systems Metabolic Engineering of Escherichia coli Improves Coconversion of Lignocellulose‐Derived Sugars
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Considering Strain Variation and Non-Type Strains for Yeast Metabolic Engineering Applications
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