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1.
J Clin Microbiol ; 42(2): 841-3, 2004 Feb.
Article in English | MEDLINE | ID: mdl-14766868

ABSTRACT

We report on the use of West Nile virus Armored RNA as an internal positive control (IPC) for the extraction and reverse transcription-PCR (RT-PCR) of RNA extracted from field-collected mosquitoes and on a multiplex real-time Taqman RT-PCR to simultaneously detect the 3' noncoding region of West Nile virus and the West Nile virus NS5-2 region comprising the IPC. Mosquito pools from the province of British Columbia, Canada (n = 635), were tested in duplicate and found to be negative for West Nile virus and positive for the IPC. Known West Nile virus-positive supernatants from mosquito pools from the provinces of Alberta and Manitoba were tested in duplicate and found to be positive for both regions of the West Nile virus genome. The mean cycle threshold (Ct) value for the IPC in batch extraction controls +/- 2 standard deviations was found to be 36.43 +/- 1.78 cycles. IPCs of 98.4% (624) of West Nile virus-negative pools fell within this range, indicating the reproducibility of RNA extraction and RT-PCR for pools varying in mosquito genus and number. A comparison of mosquito pool genera revealed no significant genus effect on the Ct value of the IPC. The incorporation of West Nile virus Armored RNA as an IPC allows monitoring of RNA extraction and RT-PCR and detection of false-negative results due to failures in these processes or to PCR inhibition, respectively.


Subject(s)
Culicidae/virology , RNA, Viral/genetics , Reverse Transcriptase Polymerase Chain Reaction/methods , West Nile virus/genetics , Animals , Base Sequence , DNA Probes , Molecular Sequence Data , RNA, Viral/isolation & purification , Reference Values , West Nile virus/isolation & purification
2.
Emerg Infect Dis ; 8(3): 263-8, 2002 Mar.
Article in English | MEDLINE | ID: mdl-11927023

ABSTRACT

In this study, we genotyped parasites from the fecal specimens of sporadic cryptosporidiosis cases in British Columbia from 1995 to 1999. Genotyping was conducted by polymerase chain amplification of the internal transcribed spacer region, a hypervariable region in the 18S rRNA gene and the Cryptosporidium oocyst wall protein gene. Subsequent analysis was by restriction fragment length polymorphism and DNA sequencing. We identified two new Cryptosporidium genotypes in humans. One of these genotypes has been found recently in deer in New York state. The other genotype has not been identified in humans or animals. These results have important implications for drinking water quality strategies, especially for communities that obtain drinking water supplies from surface sources located in forested regions with deer populations.


Subject(s)
Cryptosporidiosis/genetics , Cryptosporidium/genetics , Animals , British Columbia , Cryptosporidium/isolation & purification , Deer , Feces/parasitology , Genome , Genotype , Humans , New York , Polymerase Chain Reaction , Polymorphism, Restriction Fragment Length , RNA, Ribosomal, 18S/genetics
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