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鱼类分枝杆菌感染的免疫组织化学和 Taqman 实时 PCR 检测。

Immunohistochemical and Taqman real-time PCR detection of mycobacterial infections in fish.

机构信息

National Veterinary Institute, Oslo, Norway.

出版信息

J Fish Dis. 2011 Mar;34(3):235-46. doi: 10.1111/j.1365-2761.2010.01231.x.

Abstract

Real-time PCR and immunohistochemistry (IHC) assays were developed to detect fish mycobacterial infections at the genus level, based on the RNA polymerase β subunit (rpoB) gene and polyclonal anti-Mycobacterium rabbit serum, respectively. The PCR assay positively identified a number of pathogenic mycobacteria including Mycobacterium abscessus, M. avium ssp. avium, M. bohemicum, M. chelonae ssp. chelonae, M. farcinogenes, M. flavescens, M. fortuitum ssp. fortuitum, M. gastri, M. gordonae, M. immunogenicum, M. malmoense, M. marinum, M. montefiorense, M. phlei, M. phocaicum, M. pseudoshottsii, M. salmoniphilum, M. senegalense, M. shottsii, M. smegmatis, M. szulgi and M. wolinskyi. A detection limit equivalent to 10(2)  cfu g(-1) was registered for M. salmoniphilum-infected fish tissue. The IHC precisely localized both free and intracellular mycobacteria in tissues and detected mycobacterial infections down to 10(2) cfu g(-1) tissue. Both assays were found to be more sensitive than Ziehl-Neelsen (ZN) staining, where the detection limit was below 8 × 10(3) cfu g(-1) tissue. Although specificity testing of the real-time PCR against a panel of non-Mycobacterium spp. revealed a degree of cross-reaction against pure DNA extracted from Nocardia seriolae and Rhodococcus erythropolis, no cross-reactions were identified (by either real-time PCR or IHC) on testing of formalin-fixed paraffin-embedded (FFPE) tissues confirmed to be infected with these bacteria. The broad applicability of both assays was confirmed by analysis of FFPE tissues from a range of fish species infected with diverse Mycobacterium spp. The results indicate that both assays, alone or in combination, constitute sensitive tools for initial, rapid diagnosis of mycobacteriosis in fish. This should in turn allow rapid application of more specific studies, i.e. culture based, to identify the specific Mycobacterium sp. involved.

摘要

建立了实时 PCR 和免疫组织化学(IHC)检测方法,用于基于 RNA 聚合酶β亚基(rpoB)基因和多克隆抗兔分枝杆菌血清,分别在属水平检测鱼类分枝杆菌感染。PCR 检测方法可特异性识别多种致病性分枝杆菌,包括脓肿分枝杆菌、禽分枝杆菌亚种禽分枝杆菌、波氏分枝杆菌、龟分枝杆菌亚种龟分枝杆菌、脓肿分枝杆菌、黄分枝杆菌、偶然分枝杆菌亚种偶然分枝杆菌、胃分枝杆菌、戈登分枝杆菌、免疫分枝杆菌、马尔莫分枝杆菌、海分枝杆菌、蒙氏分枝杆菌、石氏分枝杆菌、假诺卡氏分枝杆菌、鲑鱼分枝杆菌、塞内加尔分枝杆菌、肖氏分枝杆菌、耻垢分枝杆菌、斯氏分枝杆菌和沃尔辛分枝杆菌。对于感染鲑鱼分枝杆菌的鱼组织,检测限相当于 10(2)cfu/g(-1)。IHC 精确地在组织中定位游离和细胞内分枝杆菌,并检测到 10(2)cfu/g(-1)组织的分枝杆菌感染。两种检测方法均比 Ziehl-Neelsen(ZN)染色更敏感,ZN 染色的检测限低于 8×10(3)cfu/g(-1)组织。虽然实时 PCR 对非分枝杆菌属的特异性测试显示对从黄杆菌属和红球菌属提取的纯 DNA 有一定程度的交叉反应,但在对已确认感染这些细菌的福尔马林固定石蜡包埋(FFPE)组织进行测试时,无论是实时 PCR 还是 IHC,均未发现交叉反应。通过分析感染不同分枝杆菌属的多种鱼类的 FFPE 组织,证实了这两种检测方法的广泛适用性。结果表明,这两种检测方法单独或联合使用,是鱼类分枝杆菌病快速初始诊断的敏感工具。这反过来又可以快速应用更具特异性的研究,即基于培养,以鉴定所涉及的特定分枝杆菌种。

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