Affiliation:
1. Graduate School of Pharmaceutical Sciences, Osaka University, Osaka, Japan
Abstract
ABSTRACT
Detection of plasmid DNA uptake in river bacteria at the single-cell level was carried out by rolling-circle amplification (RCA). Uptake of a plasmid containing the green fluorescent protein gene (
gfp
) by indigenous bacteria from two rivers in Osaka, Japan, was monitored for 506 h using this in situ gene amplification technique with optimized cell permeabilization conditions. Plasmid uptake determined by in situ RCA was compared to direct counts of cells expressing
gfp
under fluorescence microscopy to examine differences in detection sensitivities between the two methods. Detection of DNA uptake as monitored by in situ RCA was 20 times higher at maximum than that by direct counting of
gfp
-expressing cells. In situ RCA could detect bacteria taking up the plasmid in several samples in which no
gfp
-expressing cells were apparent, indicating that in situ gene amplification techniques can be used to determine accurate rates of extracellular DNA uptake by indigenous bacteria in aquatic environments.
Publisher
American Society for Microbiology
Subject
Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology
Reference47 articles.
1. Aliotta, J. M., J. J. Pelletier, J. L. Ware, L. S. Moran, J. S. Benner, and H. Kong. 1996. Thermostable Bst DNA polymerase I lacks a 3′→5′ proofreading exonuclease activity. Genet. Anal.12:185-195.
2. New Unstable Variants of Green Fluorescent Protein for Studies of Transient Gene Expression in Bacteria
3. Araya, R., K. Tani, T. Takagi, N. Yamaguchi, and M. Nasu. 2003. Bacterial activity and community composition in stream water and biofilm from an urban river determined by fluorescent in situ hybridization and DGGE analysis. FEMS Microbiol. Ecol.43:111-119.
4. Böckelmann, U., W. Manz, T. R. Neu, and U. Szewzyk. 2000. Characterization of the microbial community of lotic organic aggregates (′river snow') in the Elbe river of Germany by cultivation and molecular methods. FEMS Microbiol. Ecol.33:157-170.
5. Chen, I., and D. Dubnau. 2004. DNA uptake during bacterial transformation. Nat. Rev. Microbiol.2:241-249.
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