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用于诊断牛丝状虫病和检测媒介蝇中丝状线虫的新型聚合酶链反应检测方法的开发与验证

Development and Validation of Novel PCR Assays for the Diagnosis of Bovine Stephanofilariasis and Detection of sp. Nematodes in Vector Flies.

作者信息

Naseem Muhammad Noman, Raza Ali, Allavena Rachel, McGowan Michael, Morgan Jess A T, Constantinoiu Constantin, Tabor Ala E, James Peter

机构信息

Queensland Alliance for Agriculture and Food Innovation, Centre for Animal Science, The University of Queensland, St. Lucia 4072, Australia.

School of Veterinary Science, The University of Queensland, Gatton 4343, Australia.

出版信息

Pathogens. 2021 Sep 17;10(9):1211. doi: 10.3390/pathogens10091211.

Abstract

BACKGROUND

spp. nematodes are associated with cutaneous lesions in cattle and other livestock and mammalian wildlife species. In Australia, commonly known as buffalo fly (BF) transmits a well-described but presently unnamed species of , which has been speculatively implicated in the aetiology of BF lesions. The sensitivity of current techniques for detecting spp. in skin lesions and vector species is low, and there is no genomic sequence for any member of the genus currently available in sequence databases.

METHODS

To develop molecular assays for the detection of the Australian sp., skin biopsies were collected from freshly slaughtered cattle with typical lesions near the medial canthus. Adult nematodes and microfilariae were isolated from the biopsies using a saline recovery technique. The nematodes were morphologically identified as sp. by scanning electron microscopy. DNA was extracted and the internal transcribed spacer 2 (ITS2) region of rDNA, and the cytochrome c oxidase subunit 1 () region of mtDNA was amplified and sequenced. sp. specific polymerase chain reaction (PCR) and qPCR assays (SYBR Green and TaqMan™) were developed and optimised from the novel ITS2 sequence obtained. The specificity of each assay was confirmed by testing against nematode species and , as well as host (bovine) and BF DNA.

RESULTS

Scanning electron microscopy of the anterior and posterior ends of isolated nematodes confirmed sp. A phylogenetic analysis of the sequence demonstrated that this species is most closely related to , a parasitic nematode that is a common cause of thelaziasis (or eyeworm infestation) in humans, dogs, and cats. Both conventional and qPCR assays specifically amplified DNA from sp. Conventional PCR, TaqMan™, and SYBR Green assays were shown to detect 1 ng, 1 pg, and 100 fg of DNA, respectively. Both qPCR assays detected DNA from single microfilaria.

CONCLUSION

Molecular diagnostic assays developed in this study showed high specificity and sensitivity for sp. DNA. The availability of an accurate and sensitive PCR assay for will assist in determining its role in the pathogenesis of cattle skin lesions, as well as in understanding its epidemiological dynamics. This assay may also have application for use in epidemiological studies with other species of , most particularly closely related , but this will require confirmation.

摘要

背景

某属线虫与牛及其他家畜和哺乳动物野生动物的皮肤病变有关。在澳大利亚,通常被称为水牛蝇(BF)的昆虫传播一种已被详细描述但目前未命名的该属线虫物种,该物种被推测与水牛蝇病变的病因有关。目前用于检测皮肤病变和媒介物种中该属线虫的技术灵敏度较低,并且序列数据库中目前没有该属任何成员的基因组序列。

方法

为了开发用于检测澳大利亚该属线虫物种的分子检测方法,从刚屠宰的在内眼角附近有典型病变的牛身上采集皮肤活检样本。使用盐水回收技术从活检样本中分离出成年线虫和微丝蚴。通过扫描电子显微镜将线虫形态学鉴定为该属线虫物种。提取DNA并扩增和测序核糖体DNA的内部转录间隔区2(ITS2)区域以及线粒体DNA的细胞色素c氧化酶亚基1(COI)区域。根据获得的新ITS2序列开发并优化了该属线虫物种特异性聚合酶链反应(PCR)和定量PCR检测方法(SYBR Green和TaqMan™)。通过针对该属线虫物种以及宿主(牛)和水牛蝇DNA进行检测,确认了每种检测方法的特异性。

结果

对分离出线虫的前端和后端进行扫描电子显微镜检查,确认是该属线虫物种。对COI序列的系统发育分析表明,该物种与结膜吸吮线虫关系最为密切,结膜吸吮线虫是人类、狗和猫眼部吸吮线虫病(或眼虫感染)的常见病因。传统PCR检测方法和定量PCR检测方法均能特异性地扩增该属线虫物种的DNA。传统PCR、TaqMan™和SYBR Green检测方法分别显示能检测到1 ng、1 pg和100 fg的该属线虫DNA。两种定量PCR检测方法均能检测到单个该属线虫微丝蚴的DNA。

结论

本研究中开发的分子诊断检测方法对该属线虫物种的DNA显示出高特异性和高灵敏度。一种针对该属线虫的准确且灵敏的PCR检测方法的可用性将有助于确定其在牛皮肤病变发病机制中的作用,以及了解其流行病学动态。该检测方法也可能应用于该属其他物种的流行病学研究,尤其是密切相关的物种,但这需要进一步确认。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0b1/8470425/20e29b95e448/pathogens-10-01211-g001.jpg

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