Hongzhi Tang
Hongzhi Tang
Associate Professor, State Key Laboratory of Microbial Metabolism, Shanghai Jiaotong University
Verified email at sjtu.edu.cn
Cited by
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Enhanced 2, 3-butanediol production by Klebsiella pneumoniae SDM
C Ma, A Wang, J Qin, L Li, X Ai, T Jiang, H Tang, P Xu
Applied microbiology and biotechnology 82 (1), 49-57, 2009
Characterization and biotechnological potential of petroleum-degrading bacteria isolated from oil-contaminated soils
Z Zhang, L Gai, Z Hou, C Yang, C Ma, Z Wang, B Sun, X He, H Tang, P Xu
Bioresource technology 101 (21), 8452-8456, 2010
Non-sterilized fermentative production of polymer-grade L-lactic acid by a newly isolated thermophilic strain Bacillus sp. 2–6
J Qin, B Zhao, X Wang, L Wang, B Yu, Y Ma, C Ma, H Tang, J Sun, P Xu
PloS one 4 (2), 2009
Characterization of environmentally friendly nicotine degradation by Pseudomonas putida biotype A strain S16
SN Wang, Z Liu, HZ Tang, J Meng, P Xu
Microbiology 153 (5), 1556-1565, 2007
Biodegradation and detoxification of nicotine in tobacco solid waste by a Pseudomonas sp.
SN Wang, P Xu, HZ Tang, J Meng, XL Liu, J Huang, H Chen, Y Du, ...
Biotechnology letters 26 (19), 1493-1496, 2004
Systematic unraveling of the unsolved pathway of nicotine degradation in Pseudomonas
H Tang, L Wang, W Wang, H Yu, K Zhang, Y Yao, P Xu
PLoS genetics 9 (10), 2013
A novel gene, encoding 6-hydroxy-3-succinoylpyridine hydroxylase, involved in nicotine degradation by Pseudomonas putida strain S16
H Tang, S Wang, L Ma, X Meng, Z Deng, D Zhang, C Ma, P Xu
Appl. Environ. Microbiol. 74 (5), 1567-1574, 2008
Atrazine degradation by a simple consortium of Klebsiella sp. A1 and Comamonas sp. A2 in nitrogen enriched medium
C Yang, Y Li, K Zhang, X Wang, C Ma, H Tang, P Xu
Biodegradation 21 (1), 97-105, 2010
“Green” Route to 6-Hydroxy-3-succinoyl-pyridine from (S)-Nicotine of Tobacco Waste by Whole Cells of a Pseudomonas sp.
SN Wang, P Xu, HZ Tang, J Meng, XL Liu, CQ Ma
Environmental science & technology 39 (17), 6877-6880, 2005
Mechanisms of acid tolerance in bacteria and prospects in biotechnology and bioremediation
Y Liu, H Tang, Z Lin, P Xu
Biotechnology advances 33 (7), 1484-1492, 2015
Complete genome sequence of the nicotine-degrading Pseudomonas putida strain S16
H Yu, H Tang, L Wang, Y Yao, G Wu, P Xu
Journal of bacteriology 193 (19), 5541-5542, 2011
Genomic analysis of Pseudomonas putida: genes in a genome island are crucial for nicotine degradation
H Tang, Y Yao, L Wang, H Yu, Y Ren, G Wu, P Xu
Scientific reports 2, 377, 2012
Production of L-lactic acid by a thermophilic Bacillus mutant using sodium hydroxide as neutralizing agent
J Qin, X Wang, Z Zheng, C Ma, H Tang, P Xu
Bioresource technology 101 (19), 7570-7576, 2010
Molecular mechanism of nicotine degradation by a newly isolated strain, Ochrobactrum sp. strain SJY1
H Yu, H Tang, X Zhu, Y Li, P Xu
Appl. Environ. Microbiol. 81 (1), 272-281, 2015
A novel NADH-dependent and FAD-containing hydroxylase is crucial for nicotine degradation by Pseudomonas putida
H Tang, Y Yao, D Zhang, X Meng, L Wang, H Yu, L Ma, P Xu
Journal of Biological Chemistry 286 (45), 39179-39187, 2011
Novel nicotine oxidoreductase-encoding gene involved in nicotine degradation by Pseudomonas putida strain S16
H Tang, L Wang, X Meng, L Ma, S Wang, X He, G Wu, P Xu
Appl. Environ. Microbiol. 75 (3), 772-778, 2009
Metabolic versatility of halotolerant and alkaliphilic strains of Halomonas isolated from alkaline black liquor
C Yang, Z Wang, Y Li, Y Niu, M Du, X He, C Ma, H Tang, P Xu
Bioresource technology 101 (17), 6778-6784, 2010
Enantioselective oxidation of racemic lactic acid to d-lactic acid and pyruvic acid by Pseudomonas stutzeri SDM
C Gao, J Qiu, J Li, C Ma, H Tang, P Xu
Bioresource technology 100 (5), 1878-1880, 2009
New Metabolites in Dibenzofuran Cometabolic Degradation by a Biphenyl-Cultivated Pseudomonas putida Strain B6-2
Q Li, X Wang, G Yin, Z Gai, H Tang, C Ma, Z Deng, P Xu
Environmental science & technology 43 (22), 8635-8642, 2009
A newly isolated strain of Stenotrophomonas sp. hydrolyzes acetamiprid, a synthetic insecticide
H Tang, J Li, H Hu, P Xu
Process biochemistry 47 (12), 1820-1825, 2012
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