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美国东部开放式和封闭式犬类设施中苍蝇(双翅目)体内犬细小病毒的分子检测

Molecular detection of canine parvovirus in flies (Diptera) at open and closed canine facilities in the eastern United States.

作者信息

Bagshaw Clarence, Isdell Allen E, Thiruvaiyaru Dharma S, Brisbin I Lehr, Sanchez Susan

机构信息

Edgefield Veterinary Clinic, 218 Augusta Road, Edgefield, SC 29824, USA.

Field Entomologist, 2605 Peach Orchard Road, Augusta, GA 30906, USA.

出版信息

Prev Vet Med. 2014 Jun 1;114(3-4):276-84. doi: 10.1016/j.prevetmed.2014.02.005. Epub 2014 Feb 19.

Abstract

More than thirty years have passed since canine parvovirus (CPV) emerged as a significant pathogen and it continues to pose a severe threat to world canine populations. Published information suggests that flies (Diptera) may play a role in spreading this virus; however, they have not been studied extensively and the degree of their involvement is not known. This investigation was directed toward evaluating the vector capacity of such flies and determining their potential role in the transmission and ecology of CPV. Molecular diagnostic methods were used in this cross-sectional study to detect the presence of CPV in flies trapped at thirty-eight canine facilities. The flies involved were identified as belonging to the house fly (Mucidae), flesh fly (Sarcophagidae) and blow/bottle fly (Calliphoridae) families. A primary surveillance location (PSL) was established at a canine facility in south-central South Carolina, USA, to identify fly-virus interaction within the canine facility environment. Flies trapped at this location were pooled monthly and assayed for CPV using polymerase chain reaction (PCR) methods. These insects were found to be positive for CPV every month from February through the end of November 2011. Fly vector behavior and seasonality were documented and potential environmental risk factors were evaluated. Statistical analyses were conducted to compare the mean numbers of each of the three fly families captured, and after determining fly CPV status (positive or negative), it was determined whether there were significant relationships between numbers of flies captured, seasonal numbers of CPV cases, temperature and rainfall. Flies were also sampled at thirty-seven additional canine facility surveillance locations (ASL) and at four non-canine animal industry locations serving as negative field controls. Canine facility risk factors were identified and evaluated. Statistical analyses were conducted on the number of CPV cases reported within the past year to determine the correlation of fly CPV status (positive or negative) for each facility, facility design (open or closed), mean number of dogs present monthly and number of flies captured. Significant differences occurred between fly CPV positive vs. negative sites with regard to their CPV case numbers, fly numbers captured, and number of dogs present. At the ASL, a statistically significant relationship was found between PCR-determined fly CPV status (positive or negative) and facility design (open vs. closed). Open-facility designs were likely to have more CPV outbreaks and more likely to have flies testing positive for CPV DNA.

摘要

自犬细小病毒(CPV)成为一种重要病原体以来,三十多年过去了,它仍然对全球犬类种群构成严重威胁。已发表的信息表明,苍蝇(双翅目)可能在传播这种病毒方面发挥作用;然而,尚未对其进行广泛研究,其参与程度也不清楚。这项调查旨在评估此类苍蝇的传播能力,并确定它们在CPV传播和生态中的潜在作用。在这项横断面研究中,使用分子诊断方法检测在38个犬类设施捕获的苍蝇中CPV的存在。所涉及的苍蝇被鉴定为属于家蝇科(蝇科)、麻蝇科(麻蝇科)和丽蝇科(丽蝇科)。在美国南卡罗来纳州中南部的一个犬类设施设立了一个主要监测地点(PSL),以确定犬类设施环境中的苍蝇与病毒的相互作用。每月将在该地点捕获的苍蝇汇集起来,使用聚合酶链反应(PCR)方法检测CPV。从2011年2月到11月底,每月都发现这些昆虫的CPV呈阳性。记录了苍蝇的传播行为和季节性,并评估了潜在的环境风险因素。进行统计分析以比较捕获的三个苍蝇科各自的平均数量,并在确定苍蝇的CPV状态(阳性或阴性)后,确定捕获的苍蝇数量、CPV病例的季节性数量、温度和降雨量之间是否存在显著关系。还在另外37个犬类设施监测地点(ASL)以及四个作为阴性现场对照的非犬类动物产业地点对苍蝇进行了采样。确定并评估了犬类设施的风险因素。对过去一年报告的CPV病例数量进行统计分析,以确定每个设施的苍蝇CPV状态(阳性或阴性)、设施设计(开放式或封闭式)、每月在场犬的平均数量和捕获的苍蝇数量之间的相关性。在CPV病例数量、捕获的苍蝇数量和在场犬的数量方面,CPV阳性与阴性苍蝇地点之间存在显著差异。在ASL,通过PCR确定的苍蝇CPV状态(阳性或阴性)与设施设计(开放式与封闭式)之间存在统计学上的显著关系。开放式设施设计可能有更多的CPV疫情爆发,并且更有可能有苍蝇的CPV DNA检测呈阳性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b832/7114225/81ef9d87d5dc/gr1.jpg

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