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通过逆转录聚合酶链反应检测环境水浓缩物中单个活的微小隐孢子虫卵囊

Detection of a single viable Cryptosporidium parvum oocyst in environmental water concentrates by reverse transcription-PCR.

作者信息

Stinear T, Matusan A, Hines K, Sandery M

机构信息

WATER ECOscience Pty.Ltd., Mount Waverley, Victoria, Australia.

出版信息

Appl Environ Microbiol. 1996 Sep;62(9):3385-90. doi: 10.1128/aem.62.9.3385-3390.1996.

Abstract

Current methods for detection of Cryptosporidium parvum oocysts in water are time-consuming and difficult. We have developed a reverse transcription (RT)-PCR which can detect the presence of a single viable oocyst spiked into concentrated environmental water samples. The test is based on the detection of mRNA from a C. parvum heat shock protein (hsp). The synthesis of hsp was induced by a short 45 degrees C incubation followed by oocyst lysis by a freeze-thaw process. Hsp70 mRNA, produced only from viable oocysts, was then isolated by hybridization to oligo(dT)25-coated magnetic beads. Detection was achieved by RT-PCR amplification of a 590-bp region of hsp70 mRNA specific for C. parvum. To test the method, samples of reticulated, reservoir, bore, and river water were concentrated by chemical flocculation and Percoll-sucrose gradient centrifugation and then spiked with dilutions of oocysts. In all four of the water types examined, the detection of single oocysts was possible by RT-PCR combined with Southern hybridization. RT-PCR products were not obtained from formalin-inactivated oocysts. An RNA internal positive control fragment was synthesized that was included with each reaction to guard against RT-PCR false-negative results that may be caused by the presence of inhibitory substances. However, when the magnetic beads were used to extract and concentrate mRNA, no inhibition was observed. The technique is versatile, straightforward, and rapid (1 day) and provides a sensitive and economic means of screening concentrated water samples for the presence of C. parvum.

摘要

目前检测水中微小隐孢子虫卵囊的方法既耗时又困难。我们开发了一种逆转录(RT)-PCR技术,它能够检测出添加到浓缩环境水样中的单个活卵囊的存在。该检测基于对微小隐孢子虫热休克蛋白(hsp)mRNA的检测。通过在45℃短暂孵育诱导hsp的合成,随后通过冻融过程使卵囊裂解。仅由活卵囊产生的Hsp70 mRNA,然后通过与寡聚(dT)25包被的磁珠杂交进行分离。通过对微小隐孢子虫特异性的hsp70 mRNA的590-bp区域进行RT-PCR扩增来实现检测。为了测试该方法,通过化学絮凝和Percoll-蔗糖梯度离心对网状水、水库水、井水和河水样本进行浓缩,然后添加不同稀释度的卵囊。在所检测的所有四种水类型中,通过RT-PCR结合Southern杂交能够检测到单个卵囊。从福尔马林灭活的卵囊中未获得RT-PCR产物。合成了一个RNA内部阳性对照片段,每个反应都包含该片段,以防止可能由抑制性物质的存在导致的RT-PCR假阴性结果。然而,当使用磁珠提取和浓缩mRNA时,未观察到抑制作用。该技术通用、简单且快速(1天),为筛选浓缩水样中微小隐孢子虫的存在提供了一种灵敏且经济的方法。

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