References
- J.P. Kaiser, Y. Feng, J.M. Bollag, Microbial metabolism of
pyridine, quinoline, acridine, and their derivatives under
aerobic and anaerobic conditions, Microbiol. Rev., 60 (1996)
483–498.
- M.G. Ondrus, T.R. Steinheimer, High-performance liquid
chromatographic determination of azaarenes and their
metabolites in groundwater affected by creosote wood
preservatives, J. Chromatogr. Sci., 28 (1990) 324–330.
- S. Zhu, P.R.F. Bell, P.F. Greenfield, Adsorption of pyridine onto
spent Rundle oil shale in dilute aqueous solution, Water Res.,
22 (1988) 1331–1337.
- D.J. Richards, K.S. Wen, Biological fate of organic priority
pollutants in the aquatic environment, Water Res., 20 (1986)
1077–1090.
- D.H. Lataye, I.M.M. And, I.D. Mall, Removal of pyridine from
aqueous solution by adsorption on bagasse fly ash, Ind. Eng.
Chem. Res., 45 (2006) 3934–3943.
- H. Bludau, H.G. Karge, W. Niessen, Sorption, sorption kinetics
and diffusion of pyridine in zeolites, Microporous Mesoporous
Mater., 22 (1998) 297–308.
- G.K. Watson, R.B. Cain, Microbial metabolism of the pyridine
ring. Metabolic pathways of pyridine biodegradation by soil
bacteria, Biochem. J., 146 (1975) 157–172.
- Z. Ronen, J.M. Bollag, Biodegradation of pyridine and pyridine
derivatives by soil and subsurface microorganisms, Int. J.
Environ. Anal. Chem., 59 (1995) 133–143.
- J. Li, W. Cai, J. Cai, The characteristics and mechanisms of
pyridine biodegradation by Streptomyces sp., J. Hazard. Mater.,
165 (2009) 950–954.
- L. Qiao, J.L. Wang, Microbial degradation of pyridine by
Paracoccus sp. isolated from contaminated soil, J. Hazard.
Mater., 176 (2010) 220–225.
- X. Deng, C. Wei, Y. Ren, X. Chai, Isolation and identification
of Achromobacter sp. DN-06 and evaluation of its pyridine
degradation kinetics, Water Air Soil Pollut., 221 (2011) 365–375.
- J. Shen, X. Zhang, D. Chen, X. Liu, L. Wang, Characteristics of
pyridine biodegradation by a novel bacterial strain, Rhizobium sp. NJUST18, Desalin. Water Treat., 53 (2014) 2005–2013.
- G.K. Sims, L.E. Sommers, A. Konopka, Degradation of pyridine
by Micrococcus luteus isolated from soil, Appl. Environ.
Microbiol., 51 (1986) 963–968.
- S.K. Rhee, K.Y. Lee, J.C. Chung, S.T. Lee, Degradation of pyridine
by Nocardioides sp. strain OS4 isolated from the oxic zone of a
spent shale column, Can. J. Microbiol., 43 (1997) 205–209.
- S.V. Mohan, S. Sistla, R.K. Guru, K.K. Prasad, C.S. Kumar,
S.V. Ramakrishna, P.N. Sarma, Microbial degradation of
pyridine using Pseudomonas sp. and isolation of plasmid
responsible for degradation, Waste Manage., 23 (2003) 167–171.
- T. Stobdan, A. Sinha, R.P. Singh, D.K. Adhikari, Degradation
of pyridine and 4-methylpyridine by Gordonia terrea IIPN1,
Biodegradation, 19 (2008) 481–487.
- Y. Bai, Q. Sun, C. Zhao, D. Wen, X. Tang, Microbial degradation
and metabolic pathway of pyridine by a Paracoccus sp. strain
BW001, Biodegradation, 19 (2008) 915–926.
- Y. Bai, Q. Sun, C. Zhao, D. Wen, X. Tang, Aerobic degradation
of pyridine by a new bacterial strain, Shinella zoogloeoides BC026,
J. Ind. Microbiol. Biotechnol., 36 (2009) 1391–1400.
- F. Khasaeva, N. Vasilyuk, P. Terentyev, M. Troshina,
A.T. Lebedev, A novel soil bacterial strain degrading pyridines,
Environ. Chem. Lett., 9 (2011) 439–445.
- S. Chatterjee, S. Biswas, S. Ganguly, A.K. Mathur, Isolation of
pyridine degrading bacteria from soils contaminated with
petrochemical Industry effluents in Purba Medinipur, J. Biol.
Environ. Sci., 7 (2013) 109–119.
- L. Qiao, D. Wen, J. Wang, Biodegradation of pyridine by
Paracoccus sp. KT-5 immobilized on bamboo-based activated
carbon, Bioresour. Technol., 101 (2010) 5229–5234.
- R.A. Pandey, K.V. Padoley, S.S. Mukherji, S.N. Mudliar,
A.N. Vaidya, A.S. Rajvaidya, T.V. Subbarao, Biotreatment of
waste gas containing pyridine in a biofilter, Bioresour. Technol.,
98 (2007) 2258–2267.
- C. Zhang, M. Li, G. Liu, H. Luo, R. Zhang, Pyridine degradation
in the microbial fuel cells, J. Hazard. Mater., 172 (2009) 465–471.
- X. Jiang, J. Shen, K. Xu, D. Chen, Y. Mu, X. Sun, W. Han, J. Li,
L. Wang, Substantial enhancement of anaerobic pyridine biomineralization
by electrical stimulation, Water Res., 130 (2018)
291–299.
- J. Liang, W. Li, H. Zhang, X. Jiang, L. Wang, X. Liu, Coaggregation
mechanism of pyridine-degrading strains for the acceleration
of the aerobic granulation process, Chem. Eng. J., 338 (2018)
176–183.
- C. Hou, J. Shen, X. Jiang, D. Zhang, X. Sun, J. Li, W. Han, X.
Liu, L. Wang, Enhanced anoxic biodegradation of pyridine
coupled to nitrification in an inner loop anoxic/oxic-dynamic
membrane bioreactor (A/O-DMBR), Bioresour. Technol., 267
(2018) 626–633.
- S.K. Rhee, G.M. Li, J.H. Yoon, Y.H. Park, H.S. Bae, S.T. Lee,
Anaerobic and aerobic degradation of pyridine by a newly
isolated denitrifying bacterium, Appl. Environ. Microbiol.,
63 (1997) 2578–2585.
- J. Wang, X. Jiang, X. Liu, X. Sun, W. Han, J. Li, L. Wang, J. Shen,
Microbial degradation mechanism of pyridine by Paracoccus sp.
NJUST30 newly isolated from aerobic granules, Chem. Eng. J.,
344 (2018) 86–94.
- F. Solano, E. Garcia, D. Perez, A. Sanchez-Amat, Isolation
and characterization of strain MMB-1 (CECT 4803), a novel
melanogenic marine bacterium, Appl. Environ. Microbiol., 63
(1997) 3499–3506.
- S.L. Abbott, W.K. Cheung, J.M. Janda, The genus Aeromonas:
biochemical characteristics, atypical reactions, and phenotypic
identification schemes, J. Clin. Microbiol., 41 (2003) 2348–2357.
- O.S. Kim, Y.J. Cho, K. Lee, S.H. Yoon, M. Kim, H. Na, S.C. Park,
Y.S. Jeon, J.H. Lee, H. Yi, Introducing EzTaxon-e: a prokaryotic
16S rRNA gene sequence database with phylotypes that
represent uncultured species, Int. J. Syst. Evol. Microbiol.,
62 (2012) 716–721.
- K. Tamura, G. Stecher, D. Peterson, A. Filipski, S. Kumar,
MEGA6: molecular evolutionary genetics analysis version 6.0,
Mol. Biol. Evol., 30 (2013) 2725–2729.
- M.A. Larkin, G. Blackshields, N.P. Brown, R. Chenna,
P.A. McGettigan, H. McWilliam, F. Valentin, I.M. Wallace, A.
Wilm, R. Lopez, J.D. Thompson, T.J. Gibson, D.G. Higgins,
Clustal W and Clustal X version 2.0, Bioinformatics, 23 (2007)
2947–2948.
- N. Saitou, M. Nei, The neighbor-joining method: a new method
for reconstructing phylogenetic trees, Mol. Biol. Evol., 4 (1987)
406–425.
- M.G. Grabherr, B.J. Haas, M. Yassour, J.Z. Levin, D.A. Thompson, I. Amit, X. Adiconis, L. Fan, R. Raychowdhury, Q. Zeng,
Z. Chen, E. Mauceli, N. Hacohen, A. Gnirke, N. Rhind, F. di Palma,
B.W. Birren, C. Nusbaum, K. Lindblad-Toh, N. Friedman, A.
Regev, Full-length transcriptome assembly from RNA-Seq
data without a reference genome, Nat. Biotechnol., 29 (2011)
644–652.
- A. Mortazavi, B.A. Williams, K. McCue, L. Schaeffer, B. Wold,
Mapping and quantifying mammalian transcriptomes by RNASeq,
Nat. Methods, 5 (2008) 621–628.
- A.K. Mathur, C.B. Majumder, S. Chatterjee, P. Roy,
Biodegradation of pyridine by the new bacterial isolates
S. putrefaciens and B. sphaericus, J. Hazard. Mater., 157 (2008)
335–343.
- E. Yabuuchi, T. Kanek, I. Yan, C.W. Moss, Sphingobacterium gen.
nov., Sphingobacterium spiritivorum comb. nov., Sphingobacterium
multivorum comb. nov., Sphingobacterium mizutae sp. nov., and
Flavobacterium indologenes sp. nov.: glucose-nonfermenting
gram-negative rods in CDC Groups IIK-2 and IIb, Int. J. Syst.
Bacteriol., 33 (1983) 580–598.
- H. Fang, B. Dong, H. Yan, F. Tang, Y. Yu, Characterization of
a bacterial strain capable of degrading DDT congeners and its
use in bioremediation of contaminated soil, J. Hazard. Mater.,
184 (2010) 281–289.
- J. Zhang, J.W. Zheng, B.C. Cho, C.Y. Hwang, C. Fang, J. He,
S.P. Li, Sphingobacterium wenxiniae sp. nov., a cypermethrindegrading
species from activated sludge, Int. J. Syst. Evol.
Microbiol., 62 (2012) 683–687.
- J. Abraham, S. Silambarasan, Biodegradation of chlorpyrifos
and its hydrolyzing metabolite 3,5,6-trichloro-2-pyridinol
by Sphingobacterium sp. JAS3, Process Biochem., 48 (2013)
1559–1564.
- Z. Cai, W. Zhang, S. Li, J. Ma, J. Wang, X. Zhao, Microbial
degradation mechanism and pathway of the novel insecticide
Paichongding by a newly isolated Sphingobacterium sp. P1–3
from soil, J. Agric. Food Chem., 63 (2015) 3823–3829.
- D. Wang, Y, Lin, W. Du, J. Liang, Y. Ning, Optimization and
characterization of lignosulfonate biodegradation process by
a bacterial strain, Sphingobacterium sp. HY-H, Int. Biodeterior.
Biodegrad., 85 (2013) 365–371.
- D. Ji, Q. Yang, Y. Wang, H. Xi, Estimation of phenanthrene
degradation model by Sphingobacterium multivorum isolated
from municipal sludge, Fresenius Environ. Bull., 24 (2015)
48–55.