DIFFERENTIATION OF RUMINAL AND HUMAN STREPTOCOCCUS-BOVIS STRAINS BY DNA HOMOLOGY AND 16S RIBOSOMAL-RNA PROBES

被引:22
作者
NELMS, LF
ODELSON, DA
WHITEHEAD, TR
HESPELL, RB
机构
[1] CENT MICHIGAN UNIV,DEPT BIOL,MT PLEASANT,MI 48859
[2] USDA ARS,NATL CTR AGR UTILIZAT RES,FERMENTAT BIOCHEM RES UNIT,PEORIA,IL 61604
关键词
D O I
10.1007/BF00314583
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Streptococcus bovis is commonly present in the rumen, but strains of S. bovis have also occasionally been isolated from human blood or fecal samples. Studies were undertaken with 16s rRNA gene sequences and DNA hybridizations to define the genetic relationships between these two groups of strains. Ruminal strains were found to yield genomic DNA restriction endonuclease digest patterns different from human strains when either the 16s rRNA gene amplified from ruminal S. bovis strain JB1 or a conserved universal 23s rRNA fragment was used as probes. A DNA probe based on the V1 region of the 16s rRNA of S. bovis JB1 was found to hybridize to DNAs of other ruminal S. bovis strains (K27FF4, 21-09-6C, five new ruminal isolates, and weak hybridization was found with DNAs from S. bovis 33317 (type strain), S. equinus 9812, and six other ruminal isolates. No hybridization occurred with strains representing different major human biotypes/homology groups (43143, 43144, 27960, V1387). All ruminal S. bovis strains had a guanosine plus cytosine DNA content of 37.4-38.8 mol% and, based on DNA-DNA genomic hybridizations, could be separated into two homology groups, one of which included S. equinus 9812 and S. bovis 33317. Both ruminal groups had less than 38% DNA homology to the human strains, indicating ruminal strains are clearly two separate species distinct from the human strains.
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页码:294 / 300
页数:7
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[31]   IMAGES OF 16S RIBOSOMAL-RNA BY SCANNING TUNNELING MICROSCOPY [J].
FLAMION, PJ ;
CACHIA, C ;
SCHREIBER, JP ;
DAVID, T ;
LESNIEWSKA, E ;
GOUDONNET, JP .
JOURNAL OF MICROSCOPY, 1991, 163 :287-294
[32]   PARTIAL SEQUENCE OF 16S RIBOSOMAL-RNA AND THE PHYLOGENY OF PROCHLORON [J].
SEEWALDT, E ;
STACKEBRANDT, E .
NATURE, 1982, 295 (5850) :618-620
[33]   MYCOPLASMA-GALLISEPTICUM 16S RIBOSOMAL-RNA GENES [J].
SKAMROV, A ;
GOLDMAN, M ;
KLASOVA, J ;
BEABEALASHVILLI, R .
FEMS MICROBIOLOGY LETTERS, 1995, 128 (03) :321-325
[34]   SCANNING TUNNELING MICROSCOPY OF 16S RIBOSOMAL-RNA IN WATER [J].
LESNIEWSKA, E ;
FLAMION, PJ ;
CACHIA, C ;
SCHREIBER, JP ;
GOUDONNET, JP .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1991, 178 (03) :1280-1287
[35]   PROPOSAL FOR A NEW SWITCH IN 5S RIBOSOMAL-RNA SECONDARY STRUCTURE INVOLVING 16S RIBOSOMAL-RNA [J].
ROHL, R .
BIOCHEMISTRY INTERNATIONAL, 1982, 5 (01) :7-14
[36]   DIFFERENTIATION OF FUSOBACTERIUM-NUCLEATUM SUBSPECIES BY 16S RIBOSOMAL-RNA GENE RESTRICTION ANALYSIS [J].
HARPEROWEN, R ;
DYMOCK, D ;
WADE, WG ;
WEIGHTMAN, AJ .
JOURNAL OF DENTAL RESEARCH, 1995, 74 (03) :885-885
[37]   DETECTION AND IDENTIFICATION OF TREPONEMA-HYODYSENTERIAE BY USING OLIGODEOXYNUCLEOTIDE PROBES COMPLEMENTARY TO 16S RIBOSOMAL-RNA [J].
JENSEN, NS ;
CASEY, TA ;
STANTON, TB .
JOURNAL OF CLINICAL MICROBIOLOGY, 1990, 28 (12) :2717-2721
[38]   RIBOSOMAL-RNA TOPOGRAPHY IN RIBOSOME .4. ACCESSIBILITY OF THE 5'-END REGION OF 16S RIBOSOMAL-RNA [J].
SKRIPKIN, EA ;
KOPYLOV, AM ;
BOGDANOV, AA ;
VINOGRADOV, SV ;
BERLIN, YA .
MOLECULAR BIOLOGY REPORTS, 1979, 5 (04) :221-224
[39]   NUCLEOTIDE-SEQUENCE OF AN EUGLENA CHLOROPLAST 16S RIBOSOMAL-RNA GENE NOT INTEGRATED IN A RIBOSOMAL-RNA OPERON [J].
ROUX, E ;
STUTZ, E .
EXPERIENTIA, 1983, 39 (06) :672-672
[40]   GROUP-SPECIFIC 16S RIBOSOMAL-RNA HYBRIDIZATION PROBES TO DESCRIBE NATURAL COMMUNITIES OF METHANOGENS [J].
RASKIN, L ;
STROMLEY, JM ;
RITTMANN, BE ;
STAHL, DA .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1994, 60 (04) :1232-1240