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PMID: 7946297 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S.

A molecular technique for identification of bacteria using small subunit ribosomal RNA sequences.

BioTechniques ·Vol. 17 ·No. 1 ·1994-07-00 ·Pages 144-6, 148-9

Avaniss-Aghajani E, Jones K, Chapman D, Brunk C

Abstract

We have recently developed a novel molecular technique for identification of specific bacterial species within a complex mixture. The technique uses PCR to amplify small subunit ribosomal RNA (SSU rRNA) genes from a mixture of bacteria. One of the PCR primers is labeled with a fluorescent dye to allow detection of the amplified product. The PCR product is then digested with restriction enzymes and a capillary electrophoresis unit equipped with a laser-induced fluorescence detector is employed to analyze the restriction fragments. Only restriction fragments that contain the fluorescent-labeled primer are detected. Generally, the nucleotide sequence of the SSU rRNA genes is unique for each bacterial species. Consequently, the fluorescent-labeled restriction fragments from different bacterial species often have characteristic lengths. Thus, the different fluorescent peaks that appear in a capillary electropherogram correspond to labeled restriction fragments from different bacterial species. This protocol allows us to identify a number of different bacterial species in a complex mixture. Only a minute sample of bacterial DNA and a minimal amount of time (8-10 h) are required for this analysis. The protocol is sensitive, rapid and capable of identifying a broad spectrum of bacterial species.

MeSH Terms
Bacteria/isolation & purification Base Sequence Electrophoresis Molecular Sequence Data Polymerase Chain Reaction RNA, Ribosomal/genetics
Chemicals
RNA, Ribosomal
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Avaniss-Aghajani E
University of California, Los Angeles.
Jones K
Chapman D
Brunk C
Article Info
Journal
BioTechniques
Abbr.
Biotechniques
ISSN
0736-6205
Published
1994-07-00
Pages
144-6, 148-9
Language
English
Region
England
NLM ID
8306785
Subset
IM
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