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Species-specific oligonucleotides and multiplex PCR for forensic discrimination of two species of scallops, Placopecten magellanicus and Chlamys islandica.

Characterization of DNA that remains in seafood products after skin, scales, and shells are removed is widely used in forensic species identification, however, ordinary methods may be prohibitively expensive or time-consuming if large sample series need to be discriminated. Forensic discrimination of two species of bivalves commercially harvested from the North Atlantic, sea scallops (Placopecten magellanicus) and Icelandic scallops (Chlamys islandica), was made by means of species-specific oligonucleotides (SSOs) in a multiplex polymerase chain reaction (PCR). The test is a simultaneous in vitro amplification of a portion of the mitochondrial Cytochrome Oxidase I locus with a PCR anchor primer for a sequence identical in both species, and two alternative SSOs that selectively amplify either a 619-bp in Placopecten or a 459-bp DNA fragment in Chlamys. Fragment size and thus species identity are determined directly by gel electrophoresis. In the forensic application, analysis of more than 900 scallops from a series of samples seized from two fishing vessels showed significantly variable proportions of the species from the closed and open fisheries (Placopecten versus Chlamys, respectively). The multiplex SSO test provides a direct means of forensic identification of large population sample series, without the necessity of secondary DNA sequencing, RFLP mapping, or fingerprinting, and can be adapted to other loci and species.

Animals↗

Multiplex PCR for the direct detection of Salmonella enterica from chicken, lamb and beef food products.

Three sets of known Salmonella enterica-specific primers were used collectively, for the first time, to evaluate the use of multiplex polymerase chain reaction (m-PCR) as a diagnostic tool to detect Salmonella enterica in naturally contaminated meat and poultry products. For this purpose a total of 300 samples representing the most frequently used fresh and frozen meat (beef and lamb) and poultry (chicken) products (whole, cut, ground, and processed) were collected from eight locations within Irbid city (Jordan). After an enrichment step, DNA was extracted directly from each food sample and amplified using six Salmonella enterica specific primers. Samples were also analyzed using conventional microbiological methods for the confirmation of Salmonella enterica presence. Out of 300 samples, 93 samples were positive by m-PCR. On the other hand, 67 samples were positive by conventional microbiological methods and only 26 samples were positive by m-PCR alone. The primer pairs, used here, proved to be highly specific for Salmonella enterica. Using m-PCR, Salmonella enterica detection could be achieved easily and the results had been confirmed effortlessly within a short period of time (24-36 hours) compared to 3-8 days for the conventional microbiological methods. Our findings emphasize the value of using a combination of specific primer pairs instead of a single primer pair in the detection process to minimize any chance for any inherent experimental or natural error.

Animals↗

A new multiplex PCR strategy for the simultaneous determination of four genetic polymorphisms affecting HIV-1 disease progression.

The CCR5 Delta32, CCR2 64I, SDF1 3'A, and CCR5 promoter 59029 polymorphisms have been suggested to influence HIV-1 disease progression. Furthermore, the CCR5 Delta32 and the CCR2 64I polymorphisms have been associated with various other diseases. The purpose of the present study was to develop a multiplex assay for the simultaneous determination of these four polymorphisms. Results obtained with the multiplex assay were compared to results obtained by conventional RFLP-PCR and no differences were observed. The multiplex assay offers a quick tool for the determination of the CCR5 Delta32, CCR2 64I, SDF1 3'A, and CCR5 promoter 59029 A/G polymorphisms.

Chemokine CXCL12↗

Multiplex PCR for the detection of toxigenic cyanobacteria in dietary supplements produced for human consumption.

The production of food supplements containing cyanobacteria is a growing worldwide industry. While there have been several reports of health benefits that can be gained from the consumption of these supplements, there have also been a growing number of studies showing the presence of toxins some of which (for example microcystins) are known to affect human health. In this paper, we report a multiplex polymerase chain reaction (PCR) technique that can be used to identify microcystin contamination in dietary supplements produced for human consumption. This method involves a PCR reaction containing three primer pairs, the first of which is used to amplify a 220-bp fragment of 16s rDNA specific to Microcystis, the most common microcystin-producing cyanobacterium. The second primer pair is used to amplify a 300-bp fragment of the mcyA gene, linked to microcystin biosynthesis in Anabaena, Microcystis, and Planktothrix. A third primer pair, used as a positive control, results in the amplification of a 650-bp fragment from the phycocyanin operon common to all cyanobacteria. This technique was found to be useful for detecting the presence of toxigenic Microcystis in all dietary supplements produced from the nontoxic cyanobacterium Aphanizomenon flos-aquae.

Cyanobacteria↗

Analysis of clonality in T-lymphoproliferative diseases by multiplex PCR.

Distinction between benign and malignant T-cell lymphoproliferative diseases can be difficult using morphological criteria. Using multiplex polymerase chain reaction system we have tested a series of patients with various lymphoproliferative disorders to detect clonal T-lymphocyte populations. Results show that clonal amplification products were obtained from all 10 patients with T-cell lymphoproliferative disorders while the amplification of DNA samples from B-cell neoplasms and normal individuals revealed polyclonal amplification products. By splitting the multiplex primer mix, the patient specific T-cell receptor gamma rearrangement was determined: five out of ten patients showed the exclusive presence of a single T-cell receptor gamma gene rearrangement. Three patients exhibited two rearranged T-cell receptor gamma genes, while in two patients positive reactions were obtained with three pairs of primers for variable and joining segments. Molecular analysis of rearranged T-cell receptor genes by multiplex polymerase chain reaction represents a useful and rapid tool for confirming diagnosis, to determine the extent of disease and to monitor the response to therapy.

Gene Rearrangement, T-Lymphocyte↗

Molecular identification of two species of myiasis-causing Cuterebra by multiplex PCR and RFLP.

The myiasis-causing flies Cuterebra grisea (Coquillet) and Cuterebra fontinella (Clark) (Diptera: Oestridae) are normally parasites of mice, predominantly of the genus Peromyscus. The morphological similarities of these species and the existence of intermediate morphotypes bearing characters of both species make the identification of adults problematic; furthermore the identification of larvae is apparently not possible. This study presents two molecular approaches to discriminate between these species using specific band patterns: (i) species-specific primers designed in the cytochrome oxidase II (COII) region used in multiplex polymerase chain reaction (PCR) and (ii) restriction fragment length polymorphism (RFLP) on amplified segments of cytochrome oxidase I (COI) gene. Both methods were tested on Cuterebra larvae and on adult museum specimens. The two techniques showed a clear difference between C. grisea and C. fontinella, although species-specific primers were more successful than RFLP for degraded DNA. No intraspecific variation in RFLP and species-specific amplifications were detected for the two species of Cuterebra. The results exhibit discrepancies between molecular and morphological identification, suggesting that some of the adults were misidentified.

Animals↗

Development of a multiplex-PCR for rapid detection of the enteric pathogens Lawsonia intracellularis, Brachyspira hyodysenteriae, and Brachyspira pilosicoli in porcine faeces.

AIMS: To develop an assay to simultaneously detect Lawsonia intracellularis, Brachyspira hyodysenteriae and Brachyspira pilosicoli in pig faeces. METHODS AND RESULTS: A multiplex-polymerase chain reaction (M-PCR) was designed to amplify a 655-base pair (bp) portion of the L. intracellularis 16S rRNA gene, a 354-bp portion of the B. hyodysenteriae NADH oxidase gene, and a 823-bp portion of the B. pilosicoli 16S rRNA gene. Specificity was assessed using 80 strains of Brachyspira spp. and 30 other enteric bacteria. Bacterial DNA was extracted from faeces using the QIAamp DNA Stool Mini Kit. The M-PCR was tested in parallel with culture and/or PCR on 192 faecal samples from eight piggeries. Faeces also were seeded with known cell concentrations of the three pathogenic species, and the limits of detection of the M-PCR tested. The M-PCR was specific, with limits of detection of 10(2)-10(3) cells of the respective species per gram of faeces. CONCLUSIONS: The M-PCR is a rapid, sensitive and specific test for detecting three important enteric bacterial pathogens of pigs. SIGNIFICANCE AND IMPACT OF THE STUDY: The availability of a new diagnostic M-PCR will allow rapid detection and control of three key porcine enteric pathogens.

Animals↗

Multiplex PCR assay for malaria vector Anopheles minimus and four related species in the Myzomyia Series from Southeast Asia.

Mosquitoes (Diptera: Culicidae) of the Anopheles (Cellia) Myzomyia Series are important malaria vectors in Africa, India and Southeast Asia. Among 10 named species of Myzomyia known from the Oriental Region, seven form the An. minimus group. Even for expert taxonomists, the adults of these species remain difficult to identify morphologically. For technical staff of malaria control programmes, confusion may extend to misidentification of species that are not formally within the minimus group. For identification of specimens from Indochina (Cambodia, Laos, Vietnam), we describe a multiplex polymerase chain reaction (PCR) assay, based on rDNA internal transcribed spacer 2 (ITS2) sequences, that employs a cocktail of primers to identify An. minimus Theobald sibling species A and C (sensu; Green et al., 1990) and three other species in the An. minimus group (An. aconitus Dönitz, An. pampanai Büttiker & Beales, An. varuna Iyengar), as well as An. jeyporiensis James, also belonging to the Myzomyia Series. As the test is DNA-based, it can be applied to all life stages of these mosquitoes for ecological investigations and vector incrimination studies. This PCR assay is simpler, quicker, cheaper and more readily interpreted than previous assays.

Animals↗

Development of two multiplex PCR systems for the analysis of 12 X-chromosomal STR loci in a northwestern Italian population sample.

Two multiplex polymerase chain reaction systems for the automated profiling of 12 X-chromosomal short tandem repeat (STR) markers were developed. Multiplex A consisted of DXS6789, DXS6809, GATA172D05, DXS101, DXS8378, and DXS8377. Multiplex B consisted of DXS7132, DXS6800, DXS6801, DXS7424, HPRTB, and DXS10011. The set of amplified X-STRs was designed to include groups of closely linked markers (DXS101-DXS7424 and DXS6789-DXS6801-DXS6809) to generate highly informative haplotypes for kinship testing. A population genetics study of the 12 X-STRs was conducted in a northwestern Italian population sample (n=160, 80 women and 80 men). A diallelic pattern at locus DXS6789 was observed in one man.

Chromosomes, Human, X↗

Mupirocin resistance in methicillin-resistant Staphylococcus aureus clinical isolates in a Spanish hospital. Co-application of multiplex PCR assay and conventional microbiology methods.

A total of 1785 Staphylococcus aureus clinical isolates were collected in our hospital during 1998 (526), 1999 (564) and 2000 (695). Among them, one hundred and thirty (39, 33 and 58, respectively) were phenotypically assigned as methicillin-resistant Staphylococcus aureus (MRSA); sixteen of these isolates (3, 2 and 11, respectively) were detected as highly mupirocin-methicillin resistant Staphylococcus aureus (MMRSA). In this work, our goal was to characterize MRSA and MMRSA clinical isolates by co-application of phenotypic and genotypic methods in order to determine the MMRSA incidence in our hospital during the period 1998-2000. With this purpose we compared and integrated the results obtained using conventional microbiology methods with those obtained using a multiplex polymerase chain reaction (PCR) assay. Our results showed a good complementation between these two approximations to determine the incidence of MMRSA clinical isolates and permitted to estimate that such incidence increased from 7.7% in 1998 to 19% in 2000.

Bacterial Proteins↗

Multiplex PCR screening to detect cry9 genes in Bacillus thuringiensis strains.

An extended PCR method was established to rapidly identify and classify Bacillus thuringiensis strains containing cry (crystal protein) genes toxic to lepidopteran, coleopteran, and dipteran pests (Ben-Dov et al., Appl. Environ. Microbiol. 63:4883-4890, 1997). To optimize identification of all reported cry genes, this methodology needs a complete PCR set of primers. In the study reported here, a set of universal (Un9) and specific primers for multiplex rapid screening for all four known genes from the cry9 group was designed. PCR analyses were performed for cry9 genes on 16 standard strains and 215 field isolates of B. thuringiensis. Among the standard strains, only B. thuringiensis subsp. aizawai HD-133, which harbors cry1 and cry2 genes, was positive with Un9 but negative to all four specific primers for cry9 genes. DNA of 22 field-collected isolates was also found to be positive with Un9. These isolates were classified into three cry9 profiles using specific primers; all of them harbor cry1 and cry2. This newly designed set of primers complements the existing PCR methodology for most currently known cry genes.

Bacillus thuringiensis↗

Real-time multiplex PCR assay for detection of Brucella spp., B. abortus, and B. melitensis.

The identification of Brucella can be a time-consuming and labor-intensive process that places personnel at risk for laboratory-acquired infection. Here, we describe a real-time PCR assay for confirmation of presumptive Brucella isolates. The assay was designed in a multiplex format that will allow the rapid identification of Brucella spp., B. abortus, and B. melitensis in a single test.

Base Sequence↗

Real-time reverse transcription-multiplex PCR for simultaneous and specific detection of rfbE and eae genes of Escherichia coli O157:H7.

A real-time reverse transcription multiplex polymerase chain reaction (rRT-MPCR) was developed for detection of mRNA encoded by rfbE and eae genes of enterohemorrhagic Escherichia coli (EHEC) O157:H7. A 129-bp and a 106-bp sequence specific to rfbE and eae, respectively, were targeted for reverse transcription, amplification, and real-time detection. A single-step RT-PCR kit containing a mixture of reverse transcriptases converted mRNA into cDNA, which was subsequently amplified by Taq polymerase included in the same kit. The real-time detection of amplification products was achieved by incorporating rfbE(O157)- and eae(O157:H7)-specific TaqMan probes in rRT-MPCR. The ability of two sets of primers and probes for specific detection of rfbE(O157) and eae(O157:H7) was initially verified by screening RNA of eight E. coli serotypes possessing different O antigens and eae alleles. These two sets of primers and probes were also tested in a standard real-time PCR (rPCR) using DNA prepared from several E. coli and non-E. coli strains to verify that only rfbE(O157)- and eae(O157:H7)-specific sequences were amplified and detected. The rRT-MPCR was then evaluated for detecting low-level contamination of EHEC O157:H7 in feces. When RNA prepared from bovine feces, which were artificially seeded with EHEC O157:H7 cells and cultured for five hours, was tested in rRT-MPCR as low as 1cfu/g of feces could be detected. The detection range for the two genes in fecal cultures was 5.1 x 10(-1)-5.1 x 10(4) cfu/g of feces. Thus, the described procedure could be applied to rapid detection of very low levels of EHEC O157:H7 using total RNA as a template. Since the presence of rfbE(O157)- and eae(O157:H7)-specific mRNA is dependent on replicating cells, rRT-MPCR could provide important information about the viability of EHEC O157:H7 in feces.

Adhesins, Bacterial↗

Analysis of dystrophin gene deletions by multiplex PCR in eastern India.

The most common genetic neuromuscular disease of childhood, Duchenne and Becker muscular dystrophy (DMD/BMD) is caused by deletion, duplication or point mutation of the dystrophin gene located at Xp 21.2. In the present study DNA from seventy unrelated patients clinically diagnosed as having DMD/BMD referred from different parts of West Bengal, a few other states and Bangladesh are analyzed using the multiplex polymerase chain reaction (m-PCR) to screen for exon deletions and its distribution within the dystrophin gene. Out of seventy patients forty six (63%) showed large intragenic deletion in the dystrophin gene. About 79% of these deletions are located in the hot spot region i.e, between exon 42 to 53. This is the first report of frequency and distribution of deletion in dystrophin gene in eastern Indian DMD/BMD population.

Age of Onset↗

Rapid assay for detection of methicillin-resistant Staphylococcus aureus using multiplex PCR.

The presence or absence of the mecA gene, the determinant of resistance to all beta-lactam antibiotics, was examined in clinical isolates of Staphylococcus aureus by multiplex polymerase chain reaction (MPCR). Two pairs of primers were used, which yielded two specific products; a 280-bp nuc- based PCR fragment (amplification product of the nuc gene encoding specific Staphylococcus aureus nuclease) and a 533-bp mecA-based PCR fragment (amplification product of the mecA gene). The MPCR system was designed to be incorporated into the work flow in clinical diagnostic laboratories as a routine analysis.

Genes, Bacterial↗

Detection of ileS-2 gene encoding mupirocin resistance in methicillin-resistant Staphylococcus aureus by multiplex PCR.

The presence of the ileS-2 gene, responsible for mupirocin resistance, in clinical isolates of methicillin-resistant Staphylococcus aureus was determined by multiplex polymerase chain reaction. Three pairs of primers were used, which yielded specific fragments of femA (encoding a unique feature of S. aureus), mecA (encoding resistance to methicillin) and ileS-2 genes. The multiplex polymerase chain reaction system is an easy and time-saving technique that, together with a rapid method for DNA extraction by boiling, may be incorporated as a routine analysis in clinical diagnostic laboratories.

Anti-Bacterial Agents↗

Point mutations and polymorphisms in the human dystrophin gene identified in genomic DNA sequences amplified by multiplex PCR.

About one third of Duchenne muscular dystrophy (DMD) patients have no gross DNA rearrangements in the dystrophin gene detectable by Southern blot analysis or multiplex exon amplification. Presumably, in these cases, the deficiency is caused by minor structural lesions of the dystrophin gene. However, to date, only a single human DMD case has been described where a point mutation, producing a stop codon, accounts for the DMD phenotype. To screen for microheterogeneities in the dystrophin gene, we applied analysis by chemical mismatch cleavage to thirteen exons amplified in multiplex sets by the polymerase chain reaction. This analysis covers approximately 20% of the dystrophin-coding sequence. Sixty DMD patients without detectable deletions or duplications were investigated, leading to the identification of two point mutations and four polymorphisms with a frequency higher than 5%. Both point mutations are frameshift mutations in exons 12 and 48, respectively, and are closely followed by stop codons, thus explaining the functional deficiency of the dystrophin gene products in both patients.

Base Sequence↗

Post-PCR multiplex fluorescent ligation detection assay and flow cytometry for rapid detection of gene-specific translocations in leukemia.

We describe a novel method to detect specific polymerase chain reaction (PCR) target amplicons, involving thermostable ligation of fluorescent and biotinylated oligonucleotides, microparticle bead capture of the ligated products, and flow cytometric analysis. This approach, termed fluorescent ligation detection reaction (f-LDR) is more rapid and cost-effective than oligoprobe Southern blot hybridization (SBH). A standard f-LDR protocol was developed to detect the leukemia-associated chimeric transcripts bcr-abl and promyelocytic leukemia-retinoic acid receptor a (PML-RARalpha) in 2 multiplex and multicolor assays. The f-LDR platform was 100% specific and demonstrated comparable or better sensitivity than standard oligoprobe SBH. The usefulness of f-LDR was evaluated in 94 posttherapy samples from 13 patients with acute promyelocytic leukemia with the PML-RARalpha gene fusion. The f-LDR method was highly concordant (93%) with oligoprobe SBH; essentially all discrepancies were noted to be due to the enhanced sensitivity of f-LDR. We conclude that f-LDR is a highly specific and sensitive post-PCR method with wide potential application.

Cell Line, Tumor↗