Abstract
Molecular information about the bacterial composition of a coculture capable of sulfate reduction after exposure to oxic and microoxic conditions was used to identify and subsequently to isolate the components of the mixture in pure culture. PCR amplification of 16S ribosomal DNA fragments from the coculture, analyzed by denaturing gradient gel electrophoresis, resulted in two distinct 16S ribosomal DNA bands, indicating two different bacterial components. Sequencing showed that the bands were derived from a Desulfovibrio strain and an Arcobacter strain. Since the phylogenetic positions of bacteria are often consistent with their physiological properties and culture requirements, molecular identification of the two components of this coculture allowed the design of specific culture conditions to separate and isolate both strains in pure culture. This approach facilitates the combined molecular and physiological analysis of mixed cultures and microbial communities.
MeSH Terms
Bacteria/classification,genetics,isolation & purification
Campylobacter/genetics,isolation & purification,metabolism
DNA, Bacterial/genetics,isolation & purification
DNA, Ribosomal/genetics,isolation & purification
Desulfovibrio/genetics,isolation & purification,metabolism
Electron Transport
Electrophoresis, Agar Gel
Gram-Negative Bacteria/genetics,isolation & purification,metabolism
Molecular Sequence Data
Oxidation-Reduction
Phylogeny
RNA, Bacterial/genetics
RNA, Ribosomal, 16S/genetics
Sulfates/metabolism
Chemicals
DNA, Bacterial
DNA, Ribosomal
RNA, Bacterial
RNA, Ribosomal, 16S
Sulfates
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Teske A
Molecular Ecology Group, Max Planck Institute for Marine Microbiology, Bremen, Germany.
Sigalevich P
Cohen Y
Muyzer G
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