Development of a rapid multilocus sequence analysis (MLSA)-based identification system for Lactobacillus using pheS and rpoA genes.
The aim of this study was to evaluate the use of the phenylalanyl-tRNA synthase alpha subunit
(
pheS
) and the RNA polymerase alpha subunit (
rpoA
) partial gene sequences for species
identification of members of the genus
Lactobacillus
. Two hundred and one strains representing
the 98 species and 17 subspecies were examined. The
pheS
gene sequence analysis provided
an interspecies gap, which in most cases exceeded 10% divergence, and an intraspecies
variation of up to 3%. The
rpoA
gene sequences revealed a somewhat lower resolution, with an
interspecies gap normally exceeding 5% and an intraspecies variation of up to 2%. The
combined use of
pheS
and
rpoA
gene sequences offers a reliable identification system for nearly
all species of the genus
Lactobacillus
. The
pheS
and
rpoA
gene sequences provide a
powerful tool for the detection of potential novel
Lactobacillus
species and synonymous taxa. In
conclusion, the
pheS
and
rpoA
gene sequences can be used as alternative genomic markers to
16S rRNA gene sequences and have a higher discriminatory power for reliable identification
of species of the genus
Lactobacillus
.
Naser, S., Dawyndt, P., Hoste, B., Gevers, D., Vandemeulebroecke, K., Cleenwerck, I., Vancanneyt, M., Swings, J. (2007) Development of a rapid multilocus sequence analysis (MLSA)-based identification system for Lactobacillus using pheS and rpoA genes. Int. J. Syst. Evol. Microbiol. 57,2777–2789. |
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Contact:
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