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Candida tropicalis Resequencing to identify mutations involved in improving the fatty acid tolerance
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2021-08-18
相关数据集
RB-TnSeq uncovers genetic targets for engineering improved tolerance against notable lignin-rich chemical stream constituents in Pseudomonas putida
Lignin-enriched biomass hydrolysates contain high concentrations of aromatic acids, aliphatic acids, and salts. The inherent toxicity of these chemicals places a significant bottleneck upon the effect
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Escherichia coli JBEI-FM003 Genome sequencing. Escherichia coli strain:JBEI-FM003
Engineering strains for the production of compounds of industrial interest (e.g. the biofuel precursor, limonene) using Ionic liquid (e.g EMIM Cl) treated biomass as substrate, might be limited by the
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Additional file 1 of Tolerance of Yarrowia lipolytica to inhibitors commonly found in lignocellulosic hydrolysates
Additional file 1.
Figshare2021-03-09 更新30
Additional file 2 of Lipid membrane remodeling and metabolic response during isobutanol and ethanol exposure in Zymomonas mobilis
Additional file 2: Table S2. Doubling times of Z. mobilis' CFA Synthase overexpressing strain grown in varying ethanol and isobutanol concentrations.
Figshare2024-08-14 更新50
Data_Sheet_2_Phenotypic and Genomic Analysis of Clostridium beijerinckii NRRL B-598 Mutants With Increased Butanol Tolerance.zip
N-Butanol, a valuable solvent and potential fuel extender, can be produced via acetone-butanol-ethanol (ABE) fermentation. One of the main drawbacks of ABE fermentation is the high toxicity of butanol
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