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Propagation of viral genomes by replicating ammonia-oxidising archaea during soil nitrification
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Doubling Down on Known Protein Families
Using a novel computational approach, researchers confirm … beam — worse, they didn’t even know how big the room is.  A new study  published online Oct. 11, 2023 in  Nature … replicating a whole community is impossible.  Metagenomic sequencing allows researchers to study the entire …
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Metabolic versatility of small archaea Micrarchaeota and Parvarchaeota
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A predicted CRISPR-mediated symbiosis between uncultivated archaea
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Physiological potential and evolutionary trajectories of syntrophic sulfate-reducing bacterial partners of anaerobic methanotrophic archaea
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Forest Fungi, Seagrass, and a New View of Symbiosis
Three stories of JGI-supported research, connected to nutrient cycles. Francis Martin and Lucas Auer discuss their work on communities of forest floor fungi. Allison Joy looks into seagrass meadows' carbon sequestration with insights …
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Designer DNA: JGI Helps Users Blaze New Biosynthetic Pathways
… enabled by the JGI DNA Synthesis Science Program. Fashioning DNA outside a cell is key to interrogating what genes … their collaborations. One review article in the collection, Genomics-enabled analysis of specialized metabolism in … large-scale functional screens for characterization of new enzymes and use the data we generated to train machine …
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A new view of the tree of life
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New Tricks with Old Bones
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Nitrosococcus watsonii sp. nov., a new species of marine obligate ammonia‐oxidizing bacteria that is not omnipresent in the world's oceans: calls to validate the names ‘Nitrosococcus halophilus’ and ‘Nitrosomonas mobilis’
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Plant Program
… collaborative user projects, the JGI’s Plant Program delves into the natural world’s potential to address global … plant-microbe interactions, advancing efforts to create renewable energy sources and bolster agricultural resilience. … and anti-pest compounds.  The program is working to expand genomic resources for key plant species, enhancing our …
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Comparative genomics reveals electron transfer and syntrophic mechanisms differentiating methanotrophic and methanogenic archaea
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