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Acidithiobacillus ferrooxidans metabolism: from genome sequence to industrial applications
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Nick Everson
Mr. Everson rejoined the JGI in 2020  and leads all aspects of JGI Operations which include …
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JGI@25: Studying Sorghum’s Survival Skills
… which is the fastest way for plants to convert carbon dioxide and water into sugars and oxygen. Both … However, neither crop shares sorghum’s hardiness, so understanding sorghum’s survival secrets could change not … looks at how each variety stores sugars and sequesters carbon. 2015: Epigenetic Control of Drought Tolerance in …
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JGI@25: A Single Cell, Myriad Microbial Discoveries
… green sharpshooter. In 2012, single cells isolated from the microbes found in the oil plume from Deepwater Horizon oil … Lab led to the identification of key microbial culprits in carbon fixation in the dark ocean. Combining single cell …
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Matthew Kellom
… are of particular interest. Matt also supports various CSP and FICUS user projects for the Metagenome Program. …
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Doubling Down on Known Protein Families
Nature highlights the vast array of functional diversity of microbes through a novel approach to better understand … we have not only ventured into the uncharted territory of understanding the vast landscape of functional diversity, … repository of groundbreaking insights, significantly expanding the horizons of potential functions across various …
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Len Pennacchio
… landscape of gene regulatory sequences in the human genome. Understanding how variation in regulatory sequences … Technology- Agriculture” 2021-  Weill Neurohub Investigator 2020   Elected Fellow of the American Association for the Advancement of Science (AAAS) 2020- National Advisory Council, National Human Genome …
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Porphyra (Bangiophyceae) Transcriptomes Provide Insights Into Red Algal Development And Metabolism
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Dynamic substrate preferences predict metabolic properties of a simple microbial consortium
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Tuning fresh: radiation through rewiring of central metabolism in streamlined bacteria
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Novel Insights into the Diversity of Catabolic Metabolism from Ten Haloarchaeal Genomes
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Microbial metabolisms in a 2.5-km-deep ecosystem created by hydraulic fracturing in shales
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