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Extraction, purification and antibacterial activities of a polysaccharide from spent mushroom substrate.
Conversion of spent mushroom substrate to biofertilizer using a stress-tolerant phosphate-solubilizing Pichia farinose FL7.
Combined alkali and acid pretreatment of spent mushroom substrate for reducing sugar and biofertilizer production.
Glycosyltransferases: Mechanisms and Applications in Natural Product Development
Integrated OMICS guided engineering of biofuel butanol-tolerance in photosynthetic Synechocystis sp. PCC 6803
The integrated OMICS analysis provided a comprehensive view of the complicated molecular mechanisms employed by Synechocystis sp.
Immobilization of Streptomyces thermotolerans 11432 on polyurethane foam to improve production of Acetylisovaleryltylosin
- Hongji Zhu, Weihua Wang, Jiaheng Liu, Qinggele Caiyin, J. Qiao
- Engineering, BiologyJournal of Industrial Microbiology…
Positive cross-linked PUF (PCPUF) was selected as the most effective carrier according to immobilized cell mass for semi-continuous production of acetylisovaleryltylosin (AIV) and offers the potential for large-scale production.
Two‐stage carbon distribution and cofactor generation for improving l‐threonine production of Escherichia coli
A metabolic modification strategy of two‐stage carbon distribution and cofactor generation was proposed to address the above challenges in E. coli THRD, an l‐threonine producing strain and had potential to be applied in the production of many other desired oxaloacetate derivatives, especially those involving cofactor reactions.
Preparation, characterization and antioxidant activity of polysaccharide from spent Lentinus edodes substrate.
Glycosyltransferases: mechanisms and applications in natural product development.
- Dong-mei Liang, Jiaheng Liu, Hao Wu, Binbin Wang, Hongji Zhu, J. Qiao
- Biology, ChemistryChemical Society reviews
- 3 November 2015
The recent advances in the glycosylation pattern, reversibility, iterative catalysis and protein auxiliary of NP Gts are all summed up comprehensively in this review.
Promoting acid resistance and nisin yield of Lactococcus lactis F44 by genetically increasing D-Asp amidation level inside cell wall
A novel strategy for enhancing nisin yield through cell wall remodeling is provided, which contributed to both continuous nisin synthesis and less nisin adsorption in acidic fermentation (dual enhancement).