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A Thermophilic Ionic Liquid-Tolerant Cellulase Cocktail for the Production of Cellulosic Biofuels
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Metabolic engineering of Clostridium thermocellum for n-butanol production from cellulose
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Products
… to completion of standard analysis.  Raw data is provided for all sequencing products below. In addition, JGI will … to the  MassIVE repository . Not all products are available for all proposal calls.   Please review the call language … carefully to ensure that your request is appropriate for that call. Learn more about the  average base outputs …
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Natural Prodcast Episode 2: The Primer, Part 2
… so secondary metabolism is throughout nature, except maybe for animals and humans, not as much. You know, we have this … metabolites, like sponges were a really common source for people to try to find new medicines for a long time. But … often use primary metabolites as building blocks to produce novel molecules. And so we’ve got glycosides being made into …
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Insights into the action of phylogenetically diverse microbial expansins on the structure of cellulose microfibrils
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Methylphosphonate Degradation and Salt-Tolerance Genes of Two Novel Halophilic Marivita Metagenome-Assembled Genomes from Unrestored Solar Salterns
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Shattering Expectations: Novel Seed Dispersal Gene Found in Green Millet
… diversity reveals seed dispersal in wild populations for the first time. For years, Elizabeth (Toby) Kellogg and other researchers at the Danforth Plant Science Center (Danforth Center) drove up and …
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Novel bacterial clade reveals origin of form I Rubisco
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Cas9-Based Metabolic Engineering of Issatchenkia orientalis for Enhanced Utilization of Cellulosic Hydrolysates
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Natural Prodcast Episode 15: Katherine Duncan
I think it must’ve been about 2001, maybe, and so it was before smartphones and before laptops and everything. And I actually waited– there … currently exist. We looked at chemistry, so it’s really novel. And they’re just really exciting. And it really kind …
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Supercharging Carbohydrate Binding Module Alone Enhances Endocellulase Thermostability, Binding, and Activity on Cellulosic Biomass
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Co‑cultivation of anaerobic fungi with Clostridium acetobutylicum bolsters butyrate and butanol production from cellulose and lignocellulose.
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