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[Coagulase gene polymorphism in Staphylococcus aureus--a new epidemiologic marker].

Nosocomial infections with Staphylococcus aureus necessitate the prompt recognition of the infectious chain as well as a rapid investigation and exclusion of infectious sources. Conventional typification procedures (e.g. phage typing) and genotyping methods with pulsed-field gel electrophoresis (PFGE) are labor-intensive and time-consuming and can be performed only in a few laboratories. A new attractive typing technique for S. aureus utilizes the polymorphism of the coagulase (coa) gene as an epidemiological marker. This typing method is performed with primers, homologous to a conserved region within the coa gene, in order to amplify the sequences encoding the C-terminal region of this molecule. Since the number of repetitive sequences varies within the coa gene, the resulting PCR products of individual strains can be of different lengths. We have assessed the coa gene length polymorphism in 150 strains of S. aureus. By the sizes of the PCR products these strains could be categorized into 10 subgroups. AluI restriction analysis of the PCR products resulted in a significantly higher degree of discrimination. Since the repeated sequences, consisting of 81 base pairs, possess a high variability of the nucleotides, a characteristic restriction fragment length polymorphism (coa-RFLP) pattern is yielded. Overall, we could distinguish 64% of the clinical isolates by RFLP analysis; in strains sharing identical antibiograms, 56% could be distinguished. 46% oxacillin-resistant strains, some of which originated from epidemic outbreaks, could be discriminated by their RFLP pattern. Comparing these results with those obtained from the PFGE method, isolates which differed by their coagulase gene RFLP also differed by their PFGE patterns.(ABSTRACT TRUNCATED AT 250 WORDS)

Bacteriophage Typing↗

Differentiation of Salmonella enterica serotype gallinarum biotype pullorum from biotype gallinarum by analysis of phase 1 flagellin C gene (fliC).

Salmonella enterica serotype gallinarum biotype gallinarum and biotype pullorum are non-motile and pathogenic avian strains. Biotype gallinarum causes fowl typhoid and biotype pullorum is the cause of pullorum disease in chickens. The two biotypes could be differentiated based on biochemical characteristics. However, conventional culture and biochemical assays are time-consuming, laborious and need sterile laboratory practices. Although the two biotypes, gallinarum and pullorum are non-motile, they possess the phase 1 flagellin C gene. The variable regions of the flagellin C gene from 41 biotype pullorum and 52 biotype gallinarum were amplified by colony-PCR and analyzed by single strand conformational polymorphism (SSCP) method. Differences in SSCP electrophoretic patterns were confirmed by nucleotide sequencing. In addition, PCR-RFLP with Hinp1I was also successfully applied to differentiate the two biotypes. These results suggested that the variable regions of fliC could be used as a genetic marker to differentiate biotype gallinarum from biotype pullorum.

Animals↗

A pre-Columbian Y chromosome-specific transition and its implications for human evolutionary history.

A polymorphic C-->T transition located on the human Y chromosome was found by the systematic comparative sequencing of Y-specific sequence-tagged sites by denaturing high-performance liquid chromatography. The results of genotyping representative global indigenous populations indicate that the locus is polymorphic exclusively within the Western Hemisphere. The pre-Columbian T allele occurs at > 90% frequency within the native South and Central American populations examined, while its occurrence in North America is approximately 50%. Concomitant genotyping at the polymorphic tetranucleotide microsatellite DYS19 locus revealed that the C-->T mutation displayed significant linkage disequilibrium with the 186-bp allele. The data suggest a single origin of linguistically diverse native Americans with subsequent haplotype differentiation within radiating indigenous populations as well as post-Columbian European and African gene flow. The mutation may have originated either in North America at a very early time during the expansion or before it, in the ancestral population(s) from which all Americans may have originated. The analysis of linkage of the DYS199 and the DYS19 tetranucleotide loci suggests that the C-->T mutation may have occurred around 30,000 years ago. We estimate the nucleotide diversity over 4.2 kb of the nonrecombining portion of the Y chromosome to be 0.00014. compared to autosomes, the majority of variation is due to the smaller effective population size of the Y chromosome rather than selective sweeps. There begins to emerge a pattern of pronounced geographical localization of Y-specific nucleotide substitution polymorphisms.

Alleles↗

Absence of RET proto-oncogene point mutations in sporadic hyperplastic and neoplastic lesions of the parathyroid gland.

We investigated the possible role of RET proto-oncogene mutations in the development of sporadic hyperplastic, benign, and malignant parathyroid lesions. DNA extracted from paraffin-embedded specimens of forty parathyroid lesions was screened for RET proto-oncogene point mutations in exons 10, 11, and 16 by nonisotopic polymerase chain reaction-based single-strand conformation polymorphism and heteroduplex gel electrophoresis. The nucleotide sequence of samples with aberrant band patterns was identified by nonisotopic direct sequencing of polymerase chain reaction-amplified DNA. Parathyroids of seven patients with multiple endocrine neoplasia type 2A (MEN 2A) and MEN 2B served as positive controls. None of the eight hyperplastic lesions, three cases of parathyromatosis, ten parathyroid adenomas, eleven carcinomas or one normal parathyroid gland contained mutations in each of the three RET exons tested. Six MEN-2A-associated hyperplastic glands exhibited identical band shifts in the polymerase chain reaction single-strand conformation polymorphism analysis of exon 11, which corresponded to a Cys 634-->Arg substitution in the nucleotide sequence analysis (TGC-->CGC), whereas in the MEN 2B parathyroid specimen a point mutation was found at codon 918 of exon 16 (ATG-->ACG), causing a Met 918-->Thr substitution. Our data indicate that RET mutations of the MEN 2 loci in exons 10, 11, and 16 are not involved in the development of sporadically occurring benign or malignant parathyroid lesions. Furthermore, our results are in accordance with the observation that MEN 2A patients with Cys 634-->Arg (germline) mutations have a higher risk of developing parathyroid disease than those with other mutations at codon 634.

Adenoma↗

Nucleotide sequence diversity in non-coding regions of ALDH2 as revealed by restriction enzyme and SSCP analysis.

The simultaneous analysis of closely linked nucleotide substitutions has recently become possible. However, it is not known whether the construction of molecular haplotypes will be a generally useful strategy for nuclear genes. Furthermore, whereas mobility-shift methods are widely used for the discovery of nucleotide substitutions, the yield of these methods has rarely been evaluated. This paper investigates these issues in non-coding regions of ALDH2, the gene that encodes aldehyde dehydrogenase 2 (ALDH2). Screening 20 Europeans, 20 native Americans, and 20 Asians by using restriction enzyme and single-strand conformation polymorphism (SSCP) analysis has revealed 16 variable sites. SSCP yields slightly fewer than the number of nucleotide substitutions predicted by the restriction enzyme digests. Estimates of nucleotide diversity are similar to those of other genes, suggesting that the pattern of polymorphism in ALDH2 offers a preview of what can be expected in many human nuclear genes. Eight of the variable sites discovered here and four sites discovered by others have been genotyped in 756 people from 17 populations across five continents. An expectation-maximization method has used to estimate haplotype states and frequencies. Only three haplotypes are common worldwide, and a fourth haplotype is common in, but private to, Asia. Although allele frequencies differ among sites, linkage disequilibrium is almost maximal across ALDH2. This suggests that haplotype construction at ALDH2 is particularly successful. The ALDH2 result, in conjunction with linkage disequilibrium results from other genes, indicates that haplotype construction will be a generally useful genomic strategy.

Aldehyde Dehydrogenase↗

Single-strand conformation polymorphism analysis is a rapid and effective method for the identification of mutations and polymorphisms in the gene for glycoprotein IIIa.

Glanzmann thrombasthenia (GT) is the most common inherited disorder of platelets. Most of the molecular defects previously identified in GT have been caused by point (or other small) mutations in the genes for glycoprotein (GP) IIb or GPIIIa. We have used single-strand conformation polymorphism (SSCP) analysis to rapidly identify single-base changes in the GPIIIa gene. Using genomic DNA from normal individuals and patients with GT, each GPIIIa exon and a short stretch of flanking intronic sequence was amplified, heat-denatured, and separated in nondenaturing acrylamide gels. Only those fragments with an abnormal migration pattern were isolated and the nucleotide sequence determined. Using SSCP, we detected the polymorphism in the HPA-1 (P1A) system and all three known silent polymorphisms in the GPIIIa gene. Screening 14 GPIIIa exons from 5 patients with GT, one mutant allele was identified. The nucleotide sequence of the abnormal 240-bp SSCP fragment was determined and a G-->A substitution in the splice donor site of exon iv was identified. Analysis of platelet RNA resulting from this mutation showed two mRNA species: one contained a deletion of exon iv, whereas the other had a 27-bp addition to exon iv due to the use of a cryptic splice site in the downstream intron. Single-base substitutions are the most common mutation in GT and often result in abnormal mRNA splicing. SSCP is a rapid and sensitive technique for identifying mutations or polymorphisms in the GPIIIa gene.

Base Sequence↗

Tandemly repeated sequences in the mitochondrial DNA control region and phylogeography of the Pike-Perches Stizostedion.

DNA sequences from the mitochondrial DNA control region are used to test the phylogeographic relationships among the pike-perches, Stizostedion (Teleostei: Percidae) and to examine patterns of variation. Sequences reveal two types of variability: single nucleotide polymorphisms and 6 to 14 copies of 10- to 11-base-pair tandemly repeated sequences. Numbers of copies of the tandem repeats are found to evolve too rapidly to detect phylogenetic signal at any taxonomic level, even among populations. Sequence similarities of the tandem repeats among Stizostedion and other percids suggest concerted evolutionary processes. Predicted folding of the tandem repeats and their proximity to termination-associated sequences indicate that secondary structure mediates slipped-strand mispairing among the d-loop, heavy, and light strands. Neighbor-joining and maximum parsimony analyses of sequences indicate that the genus is divided into clades on the continents of North America and Eurasia. Calibrating genetic distances with divergence times supports the hypothesis that Stizostedion dispersed from Eurasia to North America across a North Pacific Beringial land bridge approximately 4 million years before present, near the beginning of the Pliocene Epoch. The North American S. vitreum and S. canadense appear separated by about 2.75 million years, and the Eurasian S. lucioperca and S. volgensis are diverged by about 1.8 million years, suggesting that speciation occurred during the late Pliocene Epoch.

Animals↗

A recent common ancestry for human Y chromosomes.

The male-specific portion of the Y chromosome is especially useful for studies of human origins. Patterns of nucleotide variation that are neutral with respect to fitness should permit estimates of when and where ancestral Y chromosomes existed. However, variation on the human Y chromosome has been observed to be greatly reduced relative to the autosomes and the X chromosome. One explanation is that selection for a favourable mutation on the non-recombining portion of the Y chromosome has resulted in the recent fixation of a single Y haplotype. A 2.6-kilobase fragment encompassing a polymorphic Alu insertion was sequenced from 16 human and four chimpanzee Y chromosomes. Patterns of nucleotide sequence diversity and divergence provide no evidence for a recent, strong selective sweep on the human Y chromosome. The time back to a common ancestral human Y chromosome is estimated to be 188,000 years, with a 95% confidence interval from 51,000 to 411,000 years. These results are consistent with autosomal and mitochondrial DNA studies that suggest a long-term human effective population size of 10,000 and a sex ratio of 1 (ref. 7). These inferences contradict predictions of the multiregional hypothesis positing a widespread transformation of Homo erectus populations into Homo sapiens.

Animals↗

Historical selection, amino acid polymorphism and lineage-specific divergence at the G6pd locus in Drosophila melanogaster and D. simulans.

The nucleotide diversity across 1705 bp of the G6pd gene is studied in 50 Drosophila melanogaster and 12 D. simulans lines. Our earlier report contrasted intraspecific polymorphism and interspecific differences at silent and replacement sites in these species. This report expands the number of European and African lines and examines the pattern of polymorphism with respect to the common A/B allozymes. In D. melanogaster the silent nucleotide diversity varies 2.8-fold across localities. The B allele sequences are two-to fourfold more variable than the derived A allele, and differences between allozymes are twice as among B alleles. There is strong linkage disequilibrium across the G6pd region. In both species the level of silent polymorphism increases from the 5' to 3' ends, while there is no comparable pattern in level of silent site divergence or fixation. The neutral model is not rejected in either species. Using D. yakuba as an outgroup, the D. melanogaster lineage shows a twofold greater rate of silent fixation, but less than half the rate of amino acid replacement. Lineage-specific differences in mutation fixation are inconsistent with neutral expectations and suggest the interaction of species-specific population size differences with both weakly advantageous and deleterious selection.

Animals↗

Analysis of genetic diversity at the DQA loci in African cattle: evidence for a BoLA-DQA3 locus.

We describe the development of a polymerase chain reaction (PCR)-based approach for analysis of genetic diversity at the DQA loci in African Bos indicus and Bos taurus cattle. This approach, equally effective in European and Asian cattle breeds, detects the presence or absence of DQA1 and most duplicated DQA2 genes. Nucleotide and predicted amino acid sequence analysis of the highly polymorphic second exons, in addition to analysis of the locus-specific and relatively non-polymorphic transmembrane, cytoplasmic, and 3-prime untranslated regions, has provided evidence for considerable diversity between each of the duplicated DQA2 genes. Therefore, we propose the designation BoLA-DQA3 for the previously unpublished alleles at the second DQA2 locus. Fourteen distinct PCR restriction fragment length polymorphism (RFLP) patterns, each identifying families of alleles at three DQA loci, can be distinguished. Nucleotide sequence analysis of new PCR-RFLP patterns from 193 Kenyan Boran, Ethiopian Arsi (B. indicus), and Guinean N'Dama (B. taurus) cattle identified 13 DQA1 alleles within eight major allelic families, five DQA2 alleles within a single allelic family, and seven DQA3 alleles within three major allelic families.

Alleles↗

Detection of c-Ki-ras mutation by PCR/RFLP analysis and diagnosis of pancreatic adenocarcinomas.

BACKGROUND: The c-Ki-ras oncogene (also known as KRAS2) is activated by point mutations involving codon 12 in 72%-100% of primary pancreatic adenocarcinomas, but the gene is not activated in nonneoplastic tissues. Therefore, the detection of c-Ki-ras mutations can facilitate the diagnosis of pancreatic adenocarcinomas, which are not always identified with current tests. Detection is usually performed by oligonucleotide hybridization combined with polymerase chain reaction (PCR), RNAse mismatch cleavage assay, or non-isotopic mismatched PCR, methods that are not feasible for routine screening of large numbers of samples because they are time consuming and/or expensive. PURPOSE: Our purpose was to evaluate a rapid, non-radioactive method of detection of a mutation in codon 12 of the c-Ki-ras gene in pancreatic tumor samples obtained by fine-needle aspiration for diagnostic screening. METHODS: Twenty consecutive patients (15 with pancreatic adenocarcinoma, one with pancreatic cystadenocarcinoma, one with endocrine islet cell tumor, and three with chronic pancreatitis) were selected for this study. A sample of pancreatic tissue from each patient with a tumor or pancreatitis was obtained and evaluated by fine-needle aspiration biopsy under computerized tomography scan or ultrasound guidance using a two-needle coaxial technique. Pancreatic DNA from each of these samples was evaluated by PCR amplification and restriction fragment length polymorphism (RFLP) analysis with nucleotide substitution in PCR primers, creating BstNI restriction patterns that distinguished mutated from normal alleles. The accuracy of the PCR/RFLP assay was validated with DNA from SW480 and HT29 colonic carcinoma cell lines with known mutated and wild-type c-Ki-ras gene sequences. Sensitivity was tested with a series of titration experiments. RESULTS: PCR/RFLP analysis can detect a mutation present in 1% of cells. No amplification could be performed in four (20%) samples because of the absence of cells in the aspirated sample. In the 16 samples adequate for PCR/RFLP analysis, a c-Ki-ras gene mutation was detected in 11 (92%) of 12 adenocarcinomas. Overall, diagnosis was obtained by pathologic (cytomorphologic) examination alone in 13 samples (81%). The presence of malignant cells and/or mutated c-Ki-ras gene was detected in 12 of 12 adenocarcinomas but not in chronic pancreatitis or islet cell tumor. CONCLUSION: Screening of pancreatic tissue samples obtained by fine-needle aspiration for c-Ki-ras mutation using PCR/RFLP analysis combined with pathologic examination could facilitate diagnosis of pancreatic tumors.

Adenocarcinoma↗

Polymorphic pattern of the (AT)X(T)Y motif at -530 5' to the beta-globin gene in over 40 patients homozygous for various beta-thalassemia mutations.

Nucleotide sequence analysis of the 5' beta-globin gene flanking region has been carried out for numerous homozygous beta-thalassemia patients with different mutations and of various ethnic backgrounds. Four different rearrangements were found associated with numerous beta-thalassemia mutations. The (AT)X(T)Y repeat motif at -530 showed polymorphic patterns among these patients as follows: All ten IVS-II-1 (G-->A) chromosomes and the two with the -87 (C-->G) mutation are associated with the (AT)9(T)5 rearrangement, while the 30 IVS-I-6 (T-->C), the 16 codon 39 (C-->T), the six codon 8 (-AA) chromosomes, and 12 chromosomes with different promoter mutations had the (AT)7(T)7 motif. Six chromosomes with the promoter mutation at position -29 (A-->G) had the (AT)8(T)6 motif, while an (AT)8(T)4 motif appears characteristic for two IVS-I-5 (G-->A and G-->T). No direct association between any of the (AT)X(T)Y arrangements and an increased gamma gene expression [G gamma and fetal hemoglobin (Hb F)] levels could be demonstrated, suggesting that variations in the (AT)X(T)Y motif are common polymorphisms.

Adult↗

Evidence against a major role of PEG1/MEST in Silver-Russell syndrome.

Silver-Russell syndrome (SRS) is a heterogeneous disorder characterised by interauterine and postnatal growth retardation, with or without additional dysmorphic features. Most cases are sporadic but a few familial cases have been described. A subset of patients exhibit maternal uniparental disomy for chromosome 7 (mUPD7) strongly suggesting that genomic imprinting plays a role in the aetiology of the disease. We and others have recently characterised the human PEG1/MEST gene, the first imprinted gene known to be located on chromosome 7. Although the function of PEG1/MEST is unknown, the paternal-specific expression of this gene and its location at 7q32, render it a promising candidate for SRS. As a prerequisite for mutation screening in 49 patients with SRS and 9 with primordial growth retardation (PGR), we determined the complete genomic structure of the PEG1/MEST gene which consists of 12 exons. Apart from one silent mutation and two novel polymorphisms, nucleotide changes were not detected in any of these patients. Moreover, methylation patterns of the 5' region of PEG1/MEST were found to be normal in 35 SRS and 9 PGR patients and different from the pattern seen in patients with mUPD7. These findings strongly argue against a role of PEG1/MEST in the majority of Silver-Russell syndrome cases.

Abnormalities, Multiple↗

Recombinational and mutational hotspots within the human lipoprotein lipase gene.

Here an analysis is presented of the roles of recombination and mutation in shaping previously determined haplotype variation in 9.7 kb of genomic DNA sequence from the human lipoprotein lipase gene (LPL), scored in 71 individuals from three populations: 24 African Americans, 24 Finns, and 23 non-Hispanic whites. Recombination and gene-conversion events inferred from data on 88 haplotypes that were defined by 69 variable sites were tested. The analysis revealed 29 statistically significant recombination events and one gene-conversion event. The recombination events were concentrated in a 1.9-kb region, near the middle of the segment, that contains a microsatellite and a pair of tandem and complementary mononucleotide runs; both the microsatellite and the runs show length variation. An analysis of site variation revealed that 9.6% of the nucleotides at CpG sites were variable, as were 3% of the nucleotides found in mononucleotide runs of >/=5 nucleotides, 3% of the nucleotides found </=3 bp from certain putative polymerase alpha-arrest sites, and 0. 5% of the remaining nucleotides. This nonhomogeneous distribution of variation suggests that multiple mutational hits at certain sites are common, an observation that challenges the fundamental assumption of the infinite-sites-mutation model. The nonrandom patterns of recombination and mutation suggest that randomly chosen single-nucleotide polymorphisms may not be optimal for disequilibrium mapping of this gene. Overall, these results indicate that both recombinational and mutational hotspots have played significant roles in shaping the haplotype variation at the LPL locus.

Black People↗

Quinolone-resistant Salmonella typhi in Viet Nam: molecular basis of resistance and clinical response to treatment.

Nalidixic acid-resistant Salmonella typhi (NARST) was first isolated in Viet Nam in 1993. Analysis of the quinolone resistance-determining region of gyrA in 20 NARST isolates by polymerase chain reaction and single-stranded conformational polymorphism yielded two novel patterns: pattern II corresponding to a point mutation at nucleotide 87 Asp-->Gly (n = 17), and pattern III corresponding to a point mutation at nucleotide 83 Ser-->Phe (n = 3). In trials of short-course ofloxacin therapy for uncomplicated typhoid, 117 (78%) of 150 patients were infected with multidrug-resistant S. typhi, 18 (15%) of which were NARST. The median time to fever clearance was 156 hours (range, 30-366 hours) for patients infected with NARST and 84 hours (range, 12-378 hours) for those infected with nalidixic acid-susceptible strains (P < .001). Six (33.3%) of 18 NARST infections required retreatment, whereas 1 (0.8%) of 132 infections due to susceptible strains required retreatment (relative risk = 44; 95% confidence interval = 5.6-345; P < .0001). We recommend that short courses of quinolones not be used in patients infected with NARST.

4-Quinolones↗

Neutral and non-neutral evolution of Drosophila mitochondrial DNA.

To test hypotheses of neutral evolution of mitochondrial DNA (mtDNA), nucleotide sequences were determined for 1515 base pairs of the NADH dehydrogenase subunit 5 (ND5) gene in the mitochondrial DNA of 29 lines of Drosophila melanogaster and 9 lines of its sibling species Drosophila simulans. In contrast to the patterns for nuclear genes, where D. melanogaster generally exhibits much less nucleotide polymorphism, the number of segregating sites was slightly higher in a global sample of nine ND5 sequences in D. melanogaster (s = 8) than in the nine lines of D. simulans (s = 6). When compared to variation at nuclear loci, the mtDNA variation in D. melanogaster does not depart from neutral expectations. The ND5 sequences in D. simulans, however, show fewer than half the number of variable sites expected under neutrality when compared to sequences from the period locus. While this reduction in variation is not significant at the 5% level, HKA tests with published restriction data for mtDNA in D. simulans do show a significant reduction of variation suggesting a selective sweep of variation in the mtDNA in this species. Tests of neutral evolution based on the ratios of synonymous and replacement polymorphism and divergence are generally consistent with neutral expectations, although a significant excess of amino acid polymorphism within both species is localized in one region of the protein. The rate of mtDNA evolution has been faster in D. melanogaster than in D. simulans and the population structure of mtDNA is distinct in these species. The data reveal how different rates of mtDNA evolution between species and different histories of neutral and adaptive evolution within species can compromise historical inferences in population and evolutionary biology.

Amino Acid Sequence↗

Pig mitochondrial DNA: polymorphism, restriction map orientation, and sequence data.

Restriction endonuclease cleavage patterns of mitochondrial DNA (mtDNA) in pigs were analyzed using 18 enzymes which recognize six nucleotides and 1 four-nucleotide-recognizing enzyme. Pigs including Taiwan native breeds and miniature strains maintained in Japan were examined in this study; four commercial breeds of pigs and Japanese wild boars have been investigated earlier [Watanabe, T., et al. (1985). Biochem. Genet. 23:105]. mtDNA polymorphisms were observed in the cleavage patterns of five restriction enzymes, Bg1II, EcoRV, ScaI, StuI, and TaqI. The results support the previous hypothesis that pigs must be derived from two different maternal origins, European and Asian wild boars, and that a breed, Large White, arises from both European and Asian pigs. Two HindIII cleavage fragments were cloned into the HindIII site of M13mp10 and were partially sequenced by the dideoxynucleotide-chain termination method. Furthermore, DraI and StuI cleavage sites were newly determined on the restriction endonuclease map. On the basis of these results, the restriction endonuclease cleavage map of pig mtDNA was rewritten. Comparing sequence data of pig mtDNA at 237 positions with those of cow, human, mouse, and rat mtDNA, the sequence difference, silent and replacement changes, and transitions and transversions among mammalian species were estimated. The relationships among them are discussed.

Animals↗

Role of mutation in the gyrA and parC genes of nalidixic-acid-resistant salmonella serotypes isolated from animals in the United Kingdom.

To answer the question as to whether isolates of salmonella from animals with decreased susceptibility to quinolones possess the same mechanism of resistance as isolates from humans, the polymerase chain reaction (PCR) was used to amplify a 347 base pair fragment equivalent to codons 39-159 covering the quinolone resistance determining region (QRDR) of the gyrA gene of Salmonella typhimurium NCTC 74, and 196 veterinary isolates of 26 serotypes of salmonella (109 from turkeys, 29 from chickens, the remainder from cattle, parrots, pigs, dogs, a pigeon, an exotic bird, a duck, a partridge, a sheep, a horse and environmental samples including litter, a nest and water). All PCR products were electrophoresed for single-stranded conformational polymorphism (SSCP). The DNA sequence of all eight novel SSCP patterns was determined. Nucleotide substitutions were identified in the gyrA gene of all except two isolates; all substitutions conferred a substitution at serine 83 or aspartate 87, as has previously been shown for isolates from humans. No mutations conferring an amino acid substitution in parC (the gene encoding the secondary target for quinolones) were revealed in the 48 isolates requiring 0.5-1 mg/L ciprofloxacin for inhibition, or the isolates for which no mutation in gyrA was revealed. The accumulation of enrofloxacin and ciprofloxacin was determined for 30 representative isolates (of which five were multiply drug resistant). Five isolates accumulated one-quarter to one-half the concentration achieved by the corresponding wild-type serotype. For two of these five isolates no mutation in gyrA was revealed, and one lacked OmpF.

Animals↗