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林建强
职称:教授
所在单位:微生物技术研究院
教师拼音名称:
linjianqiang
入职时间:
1991-07-01
所在单位:
微生物技术研究院
性别:
男
在职信息:
在职
是否在职:
1
博士生导师
硕士生导师
论文成果
[16] 林建强. D-Allulose (D-Psicose) Biotransformation From Allitol by a Newly Found NAD(P)-Dependent Alcohol Dehydrogenase From Gluconobacter frateurii NBRC 3264 and the Enzyme Characterization. Frontiers in Microbiology, 2022.
[17] Mesfin Angaw Tesfay. Efficient L-xylulose production using whole-cell biocatalyst with NAD+ regeneration system through co-expression of xylitol dehydrogenase and NADH oxidase in Escherichia coli. Biochemical Engineering Journal, 2021.
[18] 温鑫. Allitol Bioproduction by Recombinant Escherichia coli with NADH Regeneration System Co-Expressing Ribitol Dehydrogenase (RDH) and Formate Dehydrogenase (FDH) In Individual or In Fusion. Electronic Journal of Biotechnology, 2021.
[19] 温鑫. 生物转化生产稀有糖醇-阿洛醇(蒜糖醇)研究进展. 《食品与发酵工业》, 2021.
[20] 林建群. Efficient L-xylulose production using whole-cell biocatalyst with NAD+ regeneration system thourgh co-expression of xylitol dehydrogenase and NADH oxidase in Escherichia coli. Biochemical Engineering Journal, 2021.
[21] 林建群. Heterotrophic nitrification and related functional gene expression characteristics of Alcaligenes faecalis SDU20 with the potential use in swine wastewater treatment. Bioprocess and Biosystems Engineering, 2021.
[22] 林建群. Construction of recombinant Escherichia coli expressing xylitol-4-dehydrogenase and optimization for enhanced L-xylulose biotransformation from xylitol. Bioprocess and Biosystems Engineering, 2021.
[23] Li, Ming-hao. Isolation and Identification of Chromium Reducing Bacillus Cereus Species from Chromium-Contaminated Soil for the Biological Detoxification of Chromium. INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH, 17, 2020.
[24] 温鑫. Efficient Allitol Bioproduction from D-Fructose Catalyzed by Recombinant E. coli Whole Cells, and the Condition Optimization, Product Purificatio. Applied Biochemistry and Biotechnology, 5, 680, 2020.
[25] Li, Can. Production of d-allose from d-fructose using immobilized l-rhamnose isomerase and d-psicose 3-epimerase. BIOPROCESS AND BIOSYSTEMS ENGINEERING, 2020.
[26] 高雪彦. The substrate-dependent regulatory effects of theAfeI/R system inAcidithiobacillus ferrooxidansreveals the novel regulation strategy of quorum sensing in acidophiles. ENVIRONMENTAL MICROBIOLOGY, 2020.
[27] 高雪彦. Novel Strategy for Improvement of the Bioleaching Efficiency of Acidithiobacillus ferrooxidans Based on the AfeI/R Quorum Sensing System. MINERALS, 10, 2020.
[28] 陈显轲. Application of Firefly Luciferase (Luc) as a Reporter Gene for the Chemoautotrophic and AcidophilicAcidithiobacillusspp.. Current Microbiology, 77, 3724, 2020.
[29] Chen, Xian-ke. Ferric Uptake Regulator Provides a New Strategy for Acidophile Adaptation to Acidic Ecosystems. Applied and Envrionmental Microbiology, 86, 2020.
[30] 陈利飞. Ammonium Removal by a Newly Isolated Heterotrophic Nitrification-Aerobic Denitrification BacteriaPseudomonas StutzeriSDU10 and Its Potential in Treatment of Piggery Wastewater. Current Microbiology, 77, 2792, 2020.
共233条 2/16
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