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Appl Environ Microbiol ; 72(5): 3111-8, 2006 May.
Article in English | MEDLINE | ID: mdl-16672448

ABSTRACT

Aerobic heterotrophs were isolated from subsurface soil samples obtained from the U.S. Department of Energy's (DOE) Field Research Center (FRC) located at Oak Ridge, Tenn. The FRC represents a unique, extreme environment consisting of highly acidic soils with co-occurring heavy metals, radionuclides, and high nitrate concentrations. Four hundred isolates obtained from contaminated soil were assayed for heavy metal resistance, and a smaller subset was assayed for tolerance to uranium. The vast majority of the isolates were gram-positive bacteria and belonged to the high-G+C- and low-G+C-content genera Arthrobacter and Bacillus, respectively. Genomic DNA from a randomly chosen subset of 50 Pb-resistant (Pb(r)) isolates was amplified with PCR primers specific for P(IB)-type ATPases (i.e., pbrA/cadA/zntA). A total of 10 pbrA/cadA/zntA loci exhibited evidence of acquisition by horizontal gene transfer. A remarkable dissemination of the horizontally acquired P(IB)-type ATPases was supported by unusual DNA base compositions and phylogenetic incongruence. Numerous Pb(r) P(IB)-type ATPase-positive FRC isolates belonging to the genus Arthrobacter tolerated toxic concentrations of soluble U(VI) (UO(2)(2+)) at pH 4. These unrelated, yet synergistic, physiological traits observed in Arthrobacter isolates residing in the contaminated FRC subsurface may contribute to the survival of the organisms in such an extreme environment. This study is, to the best of our knowledge, the first study to report broad horizontal transfer of P(IB)-type ATPases in contaminated subsurface soils and is among the first studies to report uranium tolerance of aerobic heterotrophs obtained from the acidic subsurface at the DOE FRC.


Subject(s)
Adenosine Triphosphatases/genetics , Arthrobacter/genetics , Bacillus/genetics , Gene Transfer, Horizontal , Metals, Heavy/pharmacology , Soil Microbiology , Soil Pollutants/pharmacology , Adenosine Triphosphatases/metabolism , Arthrobacter/drug effects , Arthrobacter/enzymology , Bacillus/drug effects , Bacillus/enzymology , DNA, Bacterial/analysis , DNA, Ribosomal/analysis , Drug Resistance, Bacterial , Lead/pharmacology , Molecular Sequence Data , Polymerase Chain Reaction , RNA, Ribosomal, 16S , Sequence Analysis, DNA , Uranium/pharmacology
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