Molecular cloning and characterization of sequences from the regulatory cluster of the Pseudomonas plasmid alk system
Author:
Publisher
Springer Science and Business Media LLC
Subject
Genetics,Molecular Biology
Link
http://link.springer.com/content/pdf/10.1007/BF00330385.pdf
Reference29 articles.
1. Barth P, Grinter N (1977) Map of plasmid RP4 derived by insertion of transposon C. J Mol Biol 113:455–474
2. Benson S (1978) Alkane oxidation in Pseudomonas putida. Ph.D. Thesis, University of Chicago
3. Benson S, Shapiro JA (1975) Induction of alkane hydroxylase proteins by unoxidised alkanes in Pseudomonas putida. J Bacteriol 123:759–760
4. Benson S, Shapiro JA (1976) Plasmid-determined alcohol dehydrogenase activity in alkane-utilizing strains of Pseudomonas putida. J Bacteriol 126:794–798
5. Benson S, Fennewald M, Shapiro JA, Huettner C (1977) Fractionation of inducible alkane hydroxylase activity in Pseudomonas putida and characterization of hydroxylase negative plasmid mutations. J Bacteriol 132:614–621
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1. Degradative Plasmids;Plasmid Biology;2014-04-08
2. Detection of alkanes, alcohols, and aldehydes using bioluminescence;Biotechnology and Bioengineering;2004
3. Alkane Degradation by Pseudomonads;Pseudomonas;2004
4. Analysis of Pseudomonas putida alkane-degradation gene clusters and flanking insertion sequences: evolution and regulation of the alk genes The EMBL accession numbers for the sequences reported in this paper are AJ245436 [P. putida (oleovorans) GPo1 alk gene clusters and flanking DNA], AJ233397 (P. putida P1 alk gene clusters and flanking DNA), AJ249793 (P. putida P1 nahKJ genes), AJ249825 [P. putida (oleovorans) GPo1 16S RNA gene] and AJ271219 (P. putida P1 16S RNA gene).;Microbiology;2001-06-01
5. An Alkane-Responsive Expression System for the Production of Fine Chemicals;Applied and Environmental Microbiology;1999-06
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