Affiliation:
1. Department of Bioengineering, Nagaoka University of Technology, Nagaoka, Niigata 940-2188, Japan
Abstract
ABSTRACT
Benzoate catabolism is thought to play a key role in aerobic bacterial degradation of biphenyl and polychlorinated biphenyls (PCBs). Benzoate catabolic genes were cloned from a PCB degrader,
Rhodococcus
sp. strain RHA1, by using PCR amplification and temporal temperature gradient electrophoresis separation. A nucleotide sequence determination revealed that the deduced amino acid sequences encoded by the RHA1 benzoate catabolic genes,
benABCDK
, exhibit 33 to 65% identity with those of
Acinetobacter
sp. strain ADP1. The gene organization of the RHA1
benABCDK
genes differs from that of ADP1. The RHA1
benABCDK
region was localized on the chromosome, in contrast to the biphenyl catabolic genes, which are located on linear plasmids.
Escherichia coli
cells containing RHA1
benABCD
transformed benzoate to catechol via 2-hydro-1,2-dihydroxybenzoate. They transformed neither 2- nor 4-chlorobenzoates but did transform 3-chlorobenzoate. The RHA1
benA
gene was inactivated by insertion of a thiostrepton resistance gene. The resultant mutant strain, RBD169, neither grew on benzoate nor transformed benzoate, and it did not transform 3-chlorobenzoate. It did, however, exhibit diminished growth on biphenyl and growth repression in the presence of a high concentration of biphenyl (13 mM). These results indicate that the cloned
benABCD
genes could play an essential role not only in benzoate catabolism but also in biphenyl catabolism in RHA1. Six rhodococcal benzoate degraders were found to have homologs of RHA1
benABC
. In contrast, two rhodococcal strains that cannot transform benzoate were found not to have RHA1
benABC
homologs, suggesting that many
Rhodococcus
strains contain benzoate catabolic genes similar to RHA1
benABC
.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Cited by
74 articles.
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