Kilbane Ⅱ J J, Daram A, Abbasian J et al. , Isolation and Characterization of Sphingomonas sp. GTIN11 Capable of Carbazole Metabolism in Troleum. Biochem. Biophys. Res. Commun, 2002, 297:242-248
[2]
Sato S I, Nam J W, Kasuga K et al. , Identification and Characterization of Genes Encoding Carbazole 1,9-Dioxygenase in Pseudomonas sp. Strain CA10. J. Bacteriol., 1997, 179:4850-4858
[3]
Baitsch D, Sandu C, Brandsch R, Gene Cluster on pAO1 of Arthrobacter Nicotinoborans Involved in Degradation of the Plant Alkaloid Nicotine: Cloning, Purication, and Characterization of2,6-Dihydroxypyridine 3-Hydroxylase. J. Bacteriol., 2001, 183:5262-5267
[4]
Monticello D J, Biodesulfurization and the Upgrading of Petroleum Distillates. Curr. Opin. Biotechnol. , 2000, 11: 540-546
[5]
Samir Abbad-Andaloussi, Lagnel C, Warzywoda M et al. , Multi-Criteria Comparison of Resting Cell Activities of Bacterial Strains Selected for Biodesulfurization of Petroleum Compounds. Enzym Microb. Technol. , 2003, 32: 446-454
[6]
Borgne S L, Quintero R, Biotechnologcal Process for the Refining of Petroleum. Fuel. Proc. Technol. , 2003, 81: 155-169
[7]
Kertesz M A, Wirtek C, Desulfurization and Desulfonation: Application of Sulfur-Controlled Gene Expression in Bacteria. Appl. Microbiolbi. Biotechnol., 2001, 57:460-466
[8]
LiFL, XuP, FengJ H et al. , MicrobialDesulfurizationofGasolineinImmobilized-CellSystemofMycobacteriumgoodiiX7B. Appl.Environ. Microbiol. , 2005, 7:276-281
[9]
Li F L, Xu P, Ma C Q et al. , Deep Desulfurization of Hydrodesulfurization-Treated Diesel Oil by a Facultative Thermophilic Bacterium Mycobacterium sp. X7B, FEMS Microbiol. Lett. , 2003 (a), 223: 301-307
Benedik M J, Gibbs P R, Riddle R R et al. , Microbial Denitrogenation of Fossil Fuels. Trends Biotechnol. , 1998, 16:90-395
[14]
JhaAM, BhartiM K, Mutagenic Profiles Carbazolein the Male Germ Cells of Swiss Albino Mice. Mutation. Res., 2002, 500:97-101
[15]
Shotbolt-Brown J, Hunter D W F, Aislabie J, Isolation and Description of Carbazole-Degrading Bacteria. Can. J. Microbiol. , 1996,42:79-82
[16]
Schneider J, Grosser R J, Jayasimhulu K et al. , Biodegradation of Carbazole by Ralstonia sp. RJGII. 123 Isolated from a Hydrocarbon Contaminated soil. Can. J. Microbiol., 2000, 46:269-277
[17]
Kobayashi T, Kurane R, Nakajima K et al. , Isolation of Bacteria Degrading Carbazole under Microaerobic Conditions, i. e. Nitro Gen gas Substituted Conditions. Biosci. Biotech. Biochem., 1995, 59:932-933
[18]
Ouchiyama N, Zhang Y, Omori T et al. , Biodegradation of Carbazole by Pseudomonas sp. CA06 and CA10. Biosci. Biotech . Biochem., 1993, 57:455-460
[19]
Hisatsuka K, Sato M, Microbial Transformation of Carbazole to Anthranilic Acid by Pseudomonas stutzeri. Biosci. Biotech. Biochem. ,1994, 58:213-214
[20]
Kirimura K, Nakagawa H, Tsuji K et al. , Selective and Continuous Degradation of Carbazole Contained in Petroleum Oil by Resting Cells of Sphingomonas sp. CDH-7. Biosci. Biotech. Biochem., 1999, 63: 1563-1568
[21]
Li L, Xu P, Blankespoor H D, Degradation of Carbazole in the Presence of Non-Aqueous Phase Liquids by Pseudomonas sp. Biotechnol.Lett., 2004, 26:581-584
[22]
Civilini M, Domenis C, Sebastianuuo N et al. , Nicotine Decontamination of Tobacco Agro-Industrial Waste and Its Degradation by MicroOrganisms. Waste Manage Res. , 1997, 15: 349-358
[23]
Wang S N, Xu P, Tang H Z et al. , Biodegradation and Detoxification of Nicotine in Tobacco Solid Waste by a Pseudomonas sp. , Biotechnol. Lett., 2004, 26:1493-1496
[24]
Wang S N, Xu P, Tang H Z et al. , "Green" Route to 6-Hydroxy-3-succinoyl-pyridine from (S) -Nicotine of Tobacco Waste by Whole Cells of a Pseudomonas sp. Environ. Sci. Technol. , 2005, 39:6877-6880
[25]
Yu B, Huang J, Cai X F et al. , A Novel Method for Conversion of Valuable BDS Intermediates HPBS/Cx-HPBS from DBT/Cx-DBT,Chinese Chem. Lett., 2005, 16:935-938