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동의어 포함
Twenty-seven fenitrothion-degrading bacteria were isolated
from different soils, and their genetic and phenotypic
characteristics were investigated. Analysis of the 16S rDNA
sequence showed that the isolates were related to members
of the genera Burkholderia, Pseudomonas, Sphingomonas,
Cupriavidus, Corynebacterium, and Arthrobacter. Among the 27
isolates, 12 different chromosomal DNA fingerprinting
patterns were obtained by polymerase chain reaction (PCR)
amplification of repetitive extragenic palindromic (REP)
sequences. The isolates were able to utilize fenitrothion as a
sole source of carbon and energy, producing 3-methyl-4-
nitrophenol as the intermediate metabolite during the complete
degradation of fenitrothion. Twenty-two of 27 isolates were able
to degrade parathion, methyl-parathion, and p-nitrophenol, but
only strain BS2 could degrade EPN (O-ethyl-O-p-nitrophenyl
phenylphosphorothioate) as a sole source of carbon and
energy for growth. Eighteen of the 27 isolates had plasmids.
When analyzed with PCR amplification and dot-blotting
hybridization using various specific primers targeted to
the organophosphorus pesticide hydrolase genes of the
previously reported isolates, none of the isolates showed
positive signals, suggesting that the corresponding genes
of our isolates had no significant sequence homology with
those of the previously isolated organophosphate pesticidedegrading
bacteria.| 번호 | 참고문헌 | 국회도서관 소장유무 |
|---|---|---|
| 1 | Biotechnology and bioeconomy in China. ![]() |
미소장 |
| 2 | Basic Local Alignment Search Tool ![]() |
미소장 |
| 3 | Barles, R. W., C. G. Daughton, and D. P. H. Hsieh. 1979. Accelerated parathion degradation in soil inoculated with acclimated bacteria under field conditions. Environ. Contam Toxicol. 8: 647-660. | 미소장 |
| 4 | Use of repetitive (repetitive extragenic palindromic and enterobacterial repetitive intergeneric consensus) sequences and the polymerase chain reaction to fingerprint the genomes of Rhizobium meliloti isolates and other soil bacteria. ![]() |
미소장 |
| 5 | Hardy, K. G. 1993. Plasmid: A practical approach, pp. 99-100. 2nd Ed. Oxford University Press, Walton Street, New York. | 미소장 |
| 6 | Involvement of two plasmids in fenitrothion degradation by Burkholderia sp. strain NF100. ![]() |
미소장 |
| 7 | Horne, I., R. L. Harcourt, T. D. Sutherland, R. J. Russell, and J. G. Oakesshott. 2002. Identification of a Pseudomonas monteilli strain with a novel phosphotriesterase. FEMS Microbiol. Lett. 206: 51-55. | 미소장 |
| 8 | Identification of an opd (organophosphate degradation) gene in an Agrobacterium isolate. ![]() |
미소장 |
| 9 | Integration and excision of a 2,4-dichlorophenoxyacetic acid-degradative plasmid in Alcaligenes paradoxus and evidence of its natural intergeneric transfer. ![]() |
미소장 |
| 10 | Rapid procedure for detection and isolation of large and small plasmids. ![]() |
미소장 |
| 11 | Molecular and Cultivation-Based Characterization of Bacterial Community Structure in Rice Field Soil | 소장 |
| 12 | Biotechnological studies in the Far-Eastern Region of Russia. ![]() |
미소장 |
| 13 | Analysis of Plasmid pJP4 Horizontal Transfer and Its Impact on Bacterial Community Structure in Natural Soil | 소장 |
| 14 | Lane, D. J. 1991. 16S/23S rRNA sequencing, pp. 115-148. In E. Stackebrandt and M. Goodfellow (eds.), Nucleic Acid Techniques in Bacterial Systematics. John Wiley and Sons, Chichester, England. | 미소장 |
| 15 | Li, X., J. He, and S. Li. 2007. Isolation of a chlorpyrifosdegrading bacterium, Sphingomonas sp. Dsp-2, and cloning of the mpd gene. Res. Microb. 158: 143-149. | 미소장 |
| 16 | The RDP (Ribosomal Database Project) continues ![]() |
미소장 |
| 17 | Subclinical Health Effects of Environmental Pesticide Contamination in a Developing Country: Cholinesterase Depression in Children ![]() |
미소장 |
| 18 | Munnecke, D. M. and D. P. H. Hsieh. 1975. Pathways of microbial metabolism of parathion. Am. Soc. Micro. 31: 63-69. | 미소장 |
| 19 | Biologically-induced hydrolysis of parathion in soil: Isolation of hydrolyzing bacteria ![]() |
미소장 |
| 20 | Biologically-induced hydrolysis of parathion in soil: Kinetics and modelling ![]() |
미소장 |
| 21 | Molecular Cloning and Nucleotide Sequencing of Organophosphorus Insecticide Hydrolase Gene from Arthrobacter sp.Strain B-5 ![]() |
미소장 |
| 22 | Genetic and Phenotypic Diversity of Dichlorprop-Degrading Bacteria Isolated from Soils | 소장 |
| 23 | Biotechnology: Promethean Science or Obsession? ![]() |
미소장 |
| 24 | Biodegradation of Cypermethrin by Micrococcus sp. strain CPN 1 ![]() |
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| 25 | Degradation of methyl parathion by Pseudomonas putida. ![]() |
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| 26 | Environmental fate and toxicology of organophosphate pesticides ![]() |
미소장 |
| 27 | Plasmid Involvement in Parathion Hydrolysis by Pseudomonas diminuta. ![]() |
미소장 |
| 28 | Transposon-like organization of the plasmid-borne organophosphate degradation (opd) gene cluster found in Flavobacterium sp. ![]() |
미소장 |
| 29 | FEMS Microbiol. Lett.: Erratum to “Expression and purification of Clostridium perfringens beta-toxin glutathione S-transferase fusion protein” [130 (1995) 273–278] ![]() |
미소장 |
| 30 | Diversity of Fenitrothion-Degrading Bacteria in Soils from Distant Geographical Areas ![]() |
미소장 |
| 31 | A Novel Organophosphorus Pesticide Hydrolase Gene Encoded on a Plasmid in Burkholderia sp. Strain NF100 ![]() |
미소장 |
| 32 | Zhonghui, Z., H. Qing, Z. Guoshun, X. Jianhong, and L. Shunpeng. 2005. Studies on isolation identification of fenitrothion degradation bacteria FDS-1 and its degradation characteristics. China Environ. Sci. 25: 52-56. | 미소장 |
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