Analysis of Bacterial Community Composition by Oligonucleotide Fingerprinting of rRNA Genes
Open Access
- 1 July 2002
- journal article
- Published by American Society for Microbiology in Applied and Environmental Microbiology
- Vol. 68 (7) , 3243-3250
- https://doi.org/10.1128/aem.68.7.3243-3250.2002
Abstract
One of the first steps in characterizing an ecosystem is to describe the organisms inhabiting it. For microbial studies, experimental limitations have hindered the ability to depict diverse communities. Here we describe oligonucleotide fingerprinting of rRNA genes (OFRG), a method that permits identification of arrayed rRNA genes (rDNA) through a series of hybridization experiments using small DNA probes. To demonstrate this strategy, we examined the bacteria inhabiting two different soils. Analysis of 1,536 rDNA clones revealed 766 clusters grouped into five major taxa: Bacillus , Actinobacteria , Proteobacteria , and two undefined assemblages. Soil-specific taxa were identified and then independently confirmed through cluster-specific PCR of the original soil DNA. Near-species-level resolution was obtained by this analysis as clones with average sequence identities of 97% were grouped in the same cluster. A comparison of these OFRG results with the results obtained in a denaturing gradient gel electrophoresis analysis of the same two soils demonstrated the significance of this methodological advance. OFRG provides a cost-effective means to extensively analyze microbial communities and should have applications in medicine, biotechnology, and ecosystem studies.Keywords
This publication has 26 references indexed in Scilit:
- Single-Base-Pair Discrimination of Terminal Mismatches by Using Oligonucleotide Microarrays and Neural Network AnalysesApplied and Environmental Microbiology, 2002
- Direct Detection of 16S rRNA in Soil Extracts by Using Oligonucleotide MicroarraysApplied and Environmental Microbiology, 2001
- Biological Suppression and Natural Population Decline ofHeterodera schachtiiin a California FieldPhytopathology®, 1999
- Gene-Representing cDNA Clusters Defined by Hybridization of 57,419 Clones from Infant Brain Libraries with Short Oligonucleotide ProbesGenomics, 1996
- Taxonomic Note: A Place for DNA-DNA Reassociation and 16S rRNA Sequence Analysis in the Present Species Definition in BacteriologyInternational Journal of Systematic and Evolutionary Microbiology, 1994
- Hybridization analyses of arrayed cDNA librariesTrends in Genetics, 1991
- Diversity in biological controlCrop Protection, 1991
- Genetic diversity in Sargasso Sea bacterioplanktonNature, 1990
- Optimization by Simulated AnnealingScience, 1983
- Conservation of primary structure in 16S ribosomal RNANature, 1975