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New Biological Insights Into How Deforestation in Amazonia Affects Soil Microbial Communities Using Metagenomics and Metagenome-Assembled Genomes
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Genomes of 13 domesticated and wild rice relatives highlight genetic conservation, turnover and innovation across the genus Oryza
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Calculating the Costs of Multiple Switchgrass Gene Copies
… (HudsonAlpha), and the U.S. Department of Energy (DOE) Joint Genome Institute (JGI), a DOE Office of Science User Facility, has discovered that the candidate …
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Fungus Fuels Tree Growth
… growth of poplar, a potential biofuel feedstock.     The Science The fungus  Mortierella elongata enjoys a dual … of particular interest to the U.S. Department of Energy (DOE). By better understanding how poplar responds to its … the U.S. Department of Energy (DOE) Joint Genome Institute (JGI), a DOE Office of Science User Facility, through its  …
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Combating a Global Threat to a Clonal Crop: Banana Black Sigatoka Pathogen Pseudocercospora fijiensis (Synonym Mycosphaerella fijiensis) Genomes Reveal Clues for Disease Control
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Dealing with Drought: Uncovering Sorghum’s Secrets
… of the cereal crop’s genes respond to drought stress. The Science Fields of drooping stalks and cracked earth are … and the U.S. Department of Energy Joint Genome Institute (JGI), a DOE Office of Science User Facility located at Lawrence …
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A Revamped Amplification Method that Enables Nearly Complete Single-Cell Genomes
… more complete genomic results from single cells. The Science Studying the  genomes of microorganisms is … in our immediate microbiome. The U.S. Department of Energy (DOE) Joint Genome Institute (JGI), a DOE Office of Science User Facility located at …
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Extracting the Secrets of Secondary Metabolites
… helps further demystify biosynthetic gene clusters.  The Science Microbial secondary metabolites, those molecules not … target microbes, users of the U.S. Department of Energy (DOE) Joint Genome Institute (JGI), a DOE Office of Science User Facility located at …
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Exometabolomics and MSI: deconstructing how cells interact to transform their small molecule environment
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A Multiomic Approach to Understand How Pleurotus eryngii Transforms Non-Woody Lignocellulosic Material
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KARRIKIN INSENSITIVE2 regulates leaf development, root system architecture and arbuscular‐mycorrhizal symbiosis in Brachypodium distachyon
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Metabolomics Technology Group
… the distributed and dynamic metabolite networks of environmental microbes and how they transform their environment. Research Team    … For further details, please reach …
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