Design of PCR Primers and Gene Probes for the General Detection of Bacterial Populations Capable of Degrading Aromatic Compounds via Catechol Cleavage Pathways
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概要
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For the general detection of bacterial populations capable of degrading aromatic compounds, two PCR primer sets were designed which can, respectively, amplify specific fragments from a wide variety of catechol 1, 2-dioxygenase (C12O) and catechol 2, 3-dioxygenase (C23O) genes. The C120-targeting primer set (12O primers) was designed based on the homologous regions of 11 C12O genes listed in the GenBank, while the C23O-targeting one (C23O primers) was designed based on those of 17 known C23O genes. Oligonucleotide probes (C12Op and C23Op) were also designed from the internal homologous regions to identify the amplified fragments. The specificity of the primer sets and probes was confirmed using anthentic bacterial strains known to carry the C12O and/or C23O genes used for the primer and probe design. Various authentic bacterial strains carrying neither C12O nor C23O genes were used as negative controls. PCR with the C12O primers amplified DNA fragments of the expected sizes from 5 of the 6 known C12O-carrying bacterial strains tested, and positive signals were obtained from 4 of the 5 amplified fragments on Southern hybridization with the C12Op. The C23O primers amplified DNA fragments of the expected size from all the 11 tested C23O-carrying bacterial strains used for their design, while the C23Op detected positive signals in the amplified fragments from 9 strains. On the other hand, no DNA fragments were amplified from the negative controls. To evaluae the applicability of the designed primers and probes for the general detection of aromatic compound-degrading bacteria, they were applied to wild-type phenol- and/or benzoate-degrading bacteria newly isolated from a variety of environments. The C12O and/or C23O primers amplified DNA fragments of the expected sizes from 69 of the 106 wild-type strains tested, while the C12Op and/or C23Op detected positive signals in the amplified fragments from 63 strains. These results suggest that our primer and probe systems can detect a considerable proportion of bacteria which can degrade aromatic compounds via catechol cleavage pathways.
- 社団法人日本生物工学会の論文
- 1999-11-25
著者
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MORI Kazuhiro
Department of Pediatrics, School of Medicine, University of Tokushima
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Ike Michihiko
Department Of Environmental Engineering Graduate School Of Engineering Osaka University
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Mori K
Department Of Civil And Environmental Engineering University Of Yamanashi
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SEI KAZUNARI
Department of Civil and Environmental Engineering, University of Yamanashi
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ASANO Ken-ichiro
Department of Environmental Engineering, Osaka University
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TATEISHI Naohiro
Department of Environmental Engineering, Osaka University
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FUJITA Masanori
Department of Environmental Engineering, Osaka University
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Fujita M
Kochi National College Of Technology
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Tateishi Naohiro
Department Of Environmental Engineering Osaka University
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Asano K
Department Of Environmental Engineering Osaka University
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Sei Kazunari
Dept. Mat. Env. Energy. Osaka Univ.
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Mori K
College Of Liberal Arts Toyama University
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Mori K
Faculty Of Engineering Toyama University
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Mori Katunori
Department Of Physics Faculty Of Science Toyama University
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Fujita Masanori
Kochi National College of Technology
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Fujita Masanori
Environ. Eng. Osaka Univ.
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Fujita Masanori
Graduate School Of Engineering Osaka University
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Mori K
Institute Of Materials Structure Science High Energy Accelerator Research Organization
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Ike Michihiko
Division Of Sustainable Energy And Environmental Engineering Osaka University
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Ike Michihiko
大阪大学 環境・エネルギー工学専攻
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Ike Michihiko
Environ. Eng. Osaka Univ.
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Fujita Masanori
Kochi National Coll. Of Technol. 200-1 Monobe Otsu Nankoku Kochi 783-8508 Jpn
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Fujita M
Department Of Environmental Engineering Osaka University
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Ike Michihiko
Department Of Environmental Engineering Faculty Of Engineering Osaka University
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Sei K
Dept. Mat. Env. Energy. Osaka Univ.
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Asano Ken-ichiro
Department Of Environmental Engineering Osaka University
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Mori Kazuhiro
Department Of Anatomy Okayama University Medical School:(present Address) Section Of Pathology Osaka
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Ike M
Division Of Sustainable Energy And Environmental Engineering Graduate School Of Engineering Osaka Un
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Fujita Masanori
Department Of Environmental Engineering Faculty Of Engineering Osaka University
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Fujita Masanori
Department Of Cardiology Saiseikai Izuo Hospital
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Fujita Masanori
Department Of Animal Science Faculty Of Agriculture Tohoku University:(present Address) Department O
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Mori Kazuhiro
Department of Civil and Environmental Engineering, University of Yamanashi
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