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In vitro Characterization of Phenylacetate Decarboxylase, a Novel Enzyme Catalyzing Toluene Biosynthesis in an Anaerobic Microbial Community
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New Research Sheds Light on Diversity in the Deep Sea
… and repair themselves or eliminate waste. The Impact The bacteria, archaea and other microorganisms of the microbial … in extreme environments. They also produce a range of novel enzymes and other biomolecules that could potentially … archaea. Many of the samples shared a high prevalence of genes involved in sulfur and nitrogen metabolism, as well as …
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Exploring novel alkane-degradation pathways in uncultured bacteria from the North Atlantic Ocean
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Comparison of soil biosolarization with mesophilic and thermophilic solid digestates on soil microbial quantity and diversity
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Insights into Secondary Metabolism from a Global Analysis of Prokaryotic Biosynthetic Gene Clusters
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Restoration and Modification of Magnetosome Biosynthesis by Internal Gene Acquisition in a Magnetotactic Bacterium
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Diversity and biogeography of SAR11 bacteria from the Arctic Ocean
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Yasuo Yoshikuni
… of DNA synthesis, strain engineering, and biosystems design for DOE-mission-relevant discovery and applications. This … His research focus includes engineering of non-model yeasts for production of biofuels and renewable chemicals, … where he used systems and synthetic biology to discover novel pathways assimilating unique sugar polymers in …
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Engagement Webinar: Harnessing JGI’s Metabolomics Capabilities
… involved? How long does it take to do all the analyses? A:  For the JGI  New Investigator and  Functional Genomics … researchers worldwide.  Q:  To what extent is natural soil a limit to identify molecules exchanged between plants … health is outside of JGI’s mission. However, analysis of novel secondary metabolites from plants could be a good.  …
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Tackling soil diversity with the assembly of large, complex metagenomes
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Multilab EcoFAB study shows highly reproducible physiology and depletion of soil metabolites by a model grass
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Ecological and genomic analyses of candidate phylum WPS‐2 bacteria in an unvegetated soil
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