Abstract
Arthrobacter globiformis D47 was shown to degrade a range of substituted phenylurea herbicides in soil. This strain contained two plasmids of approximately 47 kb (pHRIM620) and 34 kb (pHRIM621). Plasmid-curing experiments produced plasmid-free strains as well as strains containing either the 47- or the 34-kb plasmid. The strains were tested for their ability to degrade diuron, which demonstrated that the degradative genes were located on the 47-kb plasmid. Studies on the growth of these strains indicated that the ability to degrade diuron did not offer a selective advantage to A. globiformis D47 on minimal medium designed to contain the herbicide as a sole carbon source. The location of the genes on a plasmid and a lack of selection would explain why the degradative phenotype, as with many other pesticide-degrading bacteria, can be lost on subculture. A 22-kb EcoRI fragment of plasmid pHRIM620 was expressed in Escherichia coli and enabled cells to degrade diuron. Transposon mutagenesis of this fragment identified one open reading frame that was essential for enzyme activity. A smaller subclone of this gene (2.5 kb) expressed in E. coli coded for the protein that degraded diuron. This gene and its predicted protein sequence showed only a low level of protein identity (25% over ca. 440 amino acids) to other database sequences and was named after the enzyme it encoded, phenylurea hydrolase (puhA gene).
MeSH Terms
Amidohydrolases/genetics,metabolism
Arthrobacter/enzymology,genetics,growth & development
Bacterial Proteins/genetics,metabolism
Biodegradation, Environmental
Cloning, Molecular
Culture Media
DNA Transposable Elements
Diuron/metabolism
Genes, Bacterial
Herbicides/metabolism
Hydrolases/genetics,metabolism
Mutagenesis
Phenylurea Compounds/metabolism
Plasmids/genetics
Sequence Analysis, DNA
Chemicals
Bacterial Proteins
Culture Media
DNA Transposable Elements
Herbicides
Phenylurea Compounds
Diuron
Hydrolases
Amidohydrolases
phenylurea hydrolase
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Turnbull G A
Department of Plant Pathology and Microbiology, Horticulture Research International, Wellesbourne, Warwick CV35 9EF, United Kingdom.
[email protected]
Ousley M
Walker A
Shaw E
Morgan J A
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