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Journal of Clinical Microbiology, July 1999, p. 2230-2235, Vol. 37, No. 7
Istituto di Microbiologia, Facoltà di
Medicina e Chirurgia "A. Gemelli," Università Cattolica
del Sacro Cuore, 00168 Rome, Italy
Received 1 February 1999/Returned for modification 8 March
1999/Accepted 17 April 1999
Although vaginitis caused by Saccharomyces cerevisiae
is extremely rare, in recent years we have experienced an increasing frequency of S. cerevisiae isolation from the vaginas of
fertile-age women. In order to investigate the epidemiology of these
vaginal infections, a total of 40 isolates of S. cerevisiae
derived from symptomatic and asymptomatic women were characterized by
two DNA typing approaches, named ribosomal DNA (rDNA)
hybridization and Ty917 hybridization, based on the Southern blotting
technique. After transfer, the polymorphic DNA restriction fragments
were hybridized with the entire repeat of S. cerevisiae
rDNA for one method and with the entire sequence of the Ty917
retrotransposon for the other. After elaboration with computer-assisted
analysis, the results of each method showed that Ty917 hybridization is endowed with a discriminatory power higher than that of rDNA
hybridization. With the Ty917 hybridization method, all of the S. cerevisiae isolates tested appeared very heterogeneous, with the
exception of those collected from individual patients with recurrent
vaginitis. This allowed us to exclude a possible common source of
infection while the high relatedness among S. cerevisiae
sequential isolates from recurrent-vaginitis patients could suggest a
pattern of relapse rather than frequent reinfection.
0095-1137/99/$04.00+0
Copyright © 1999, American Society for Microbiology. All rights reserved.
Molecular and Epidemiological Characterization of
Vaginal Saccharomyces cerevisiae Isolates
*
Corresponding author. Present address: Istituto di
Microbiologia, Facoltà di Medicina e Chirurgia,
Università degli Studi di Milano, Via Pascal, 36, 20133 Milan,
Italy. Phone: 39+226601215. Fax: 39+226601218. E-mail:
morace{at}imiucca.csi.unimi.it.
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