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Title: Frequency of horizontal gene transfer of a large catabolic plasmid (pJP4) in soil.

Authors: Neilson, J W; Josephson, K L; Pepper, I L; Arnold, R B; Di Giovanni, G D; Sinclair, N A

Published In Appl Environ Microbiol, (1994 Nov)

Abstract: Limited work has been done to assess the bioremediation potential of transfer of plasmid-borne degradative genes from introduced to indigenous organisms in the environment. Here we demonstrate the transfer by conjugation of the catabolic plasmid pJP4, using a model system with donor and recipient organisms. The donor organism was Alcaligenes eutrophus JMP134 and the recipient organism was Variovorax paradoxus isolated from a toxic waste site. Plasmid pJP4 contains genes for mercury resistance and 2,4-dichlorophenoxyacetic (2,4-D) acid degradation. A transfer frequency of approximately 1/10(3) donor and recipient cells (parent cells) was observed on solid agar media, decreasing to 1/10(5) parent cells in sterile soil and finally 1/10(6) parent cells in 2,4-D-amended, nonsterile soil. Presumptive transconjugants were confirmed to be resistant to Hg, to be capable of degrading 2,4-D, and to contain a plasmid of size comparable to that of pJP4. In addition, we confirmed the transfer through PCR amplifications of the tfdB gene. Although transfer of pJP4 did occur at a high frequency in pure culture, the rate was significantly decreased by the introduction of abiotic (sterile soil) and biotic (nonsterile soil) stresses. An evaluation of the data from this model system implies that the reliance on plasmid transfer from a donor organism as a remediative strategy has limited potential.

PubMed ID: 7993092 Exiting the NIEHS site

MeSH Terms: 2,4-Dichlorophenoxyacetic Acid/metabolism; Biodegradation, Environmental; Conjugation, Genetic; Culture Media; Gene Transfer, Horizontal; Gram-Negative Bacteria/genetics*; Models, Biological; Plasmids/genetics*; Soil Microbiology*; Sterilization

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