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The genome of wine yeast Dekkera bruxellensis provides a tool to explore its food-related properties
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The mitochondrial genome of the ethanol-metabolizing, wine cellar mold Zasmidium cellare is the smallest for a filamentous ascomycete
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2024 Progress Report
The Integrative Genomics Building (IGB) seen above is home to the DOE Joint Genome Institute (JGI). Researchers from the DOE Systems … processed 13,700 metabolomics samples With our users, 247 publications were published   … Our primary objective is to …
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Busting the Unbreakable Lignin
New evidence shows anaerobic fungi can degrade the hardiest of plant components   The Science There are three main … with researchers at the U.S. Department of Energy Joint Genome Institute, a DOE Office of Science User Facility at …
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In Hot Spring Microbial Mat, Viruses Ride “Piggyback”
For the first time, a team has comprehensively described host-virus dynamics in … a microbial mat. The Science In microbial mats, communities of microorganisms live among viruses that infect them. But … lysogeny, they can insinuate themselves inside the host’s genome, living quietly and replicating with their host …
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BdERECTA controls vasculature patterning and phloem-xylem organization in Brachypodium distachyon
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How Maize Makes An Antibiotic Cocktail
Maize produces a family of compounds that protects it against infections — using … synthesized by the U.S. Department of Energy (DOE) Joint Genome Institute (JGI), a DOE Office of Science User … plants in addition to maize, including the bioenergy crop switchgrass. The team confirmed just how important zealexins …
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Community Structure and Function of High-Temperature Chlorophototrophic Microbial Mats Inhabiting Diverse Geothermal Environments
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Differences in crop bacterial community structure between hoatzins from different geographical locations
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Novel Structural Elements within the Nonproteolytic Clostridium botulinum Type F Toxin Gene Cluster
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Community structure explains antibiotic resistance gene dynamics over a temperature gradient in soil
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Cryptic genetic structure and copy‐number variation in the ubiquitous forest symbiotic fungus Cenococcum geophilum
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