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利用单叠氮碘化丙啶定量实时PCR检测和定量牛奶中活的蜡样芽孢杆菌群菌种

Detection and quantification of viable Bacillus cereus group species in milk by propidium monoazide quantitative real-time PCR.

作者信息

Cattani Fernanda, Barth Valdir C, Nasário Jéssica S R, Ferreira Carlos A S, Oliveira Sílvia D

机构信息

Laboratório de Imunologia e Microbiologia, Faculdade de Biociências, PUCRS, Porto Alegre, RS, Brazil.

Laboratório de Imunologia e Microbiologia, Faculdade de Biociências, PUCRS, Porto Alegre, RS, Brazil.

出版信息

J Dairy Sci. 2016 Apr;99(4):2617-2624. doi: 10.3168/jds.2015-10019. Epub 2016 Jan 29.

Abstract

The Bacillus cereus group includes important spore-forming bacteria that present spoilage capability and may cause foodborne diseases. These microorganisms are traditionally evaluated in food using culturing methods, which can be laborious and time-consuming, and may also fail to detect bacteria in a viable but nonculturable state. The purpose of this study was to develop a quantitative real-time PCR (qPCR) combined with a propidium monoazide (PMA) treatment to analyze the contamination of UHT milk by B. cereus group species viable cells. Thirty micrograms per milliliter of PMA was shown to be the most effective concentration for reducing the PCR amplification of extracellular DNA and DNA from dead cells. The quantification limit of the PMA-qPCR assay was 7.5 × 10(2) cfu/mL of milk. One hundred thirty-five UHT milk samples were analyzed to evaluate the association of PMA to qPCR to selectively detect viable cells. The PMA-qPCR was able to detect B. cereus group species in 44 samples (32.6%), whereas qPCR without PMA detected 78 positive samples (57.8%). Therefore, the PMA probably inhibited the amplification of DNA from cells that were killed during UHT processing, which avoided an overestimation of bacterial cells when using qPCR and, thus, did not overvalue potential health risks. A culture-based method was also used to detect and quantify B. cereus sensu stricto in the same samples and showed positive results in 15 (11.1%) samples. The culture method and PMA-qPCR allowed the detection of B. cereus sensu stricto in quantities compatible with the infective dose required to cause foodborne disease in 3 samples, indicating that, depending on the storage conditions, even after UHT treatment, infective doses may be reached in ready-to-consume products.

摘要

蜡样芽孢杆菌群包括重要的产芽孢细菌,这些细菌具有腐败能力,可能会引起食源性疾病。传统上,食品中这些微生物是通过培养方法进行评估的,这种方法既费力又耗时,而且可能无法检测出处于活的但不可培养状态的细菌。本研究的目的是开发一种结合单叠氮碘化丙锭(PMA)处理的定量实时聚合酶链反应(qPCR)方法,以分析超高温瞬时灭菌(UHT)牛奶中蜡样芽孢杆菌群活菌的污染情况。结果表明,每毫升30微克的PMA是减少细胞外DNA和死细胞DNA的PCR扩增的最有效浓度。PMA-qPCR检测方法的定量限为每毫升牛奶7.5×10² 菌落形成单位(cfu)。分析了135份UHT牛奶样品,以评估PMA与qPCR结合用于选择性检测活菌的相关性。PMA-qPCR能够在44份样品(32.6%)中检测到蜡样芽孢杆菌群,而未使用PMA的qPCR检测到78份阳性样品(57.8%)。因此,PMA可能抑制了超高温瞬时灭菌过程中死亡细胞的DNA扩增,避免了使用qPCR时对细菌细胞的高估,从而没有高估潜在的健康风险。还使用基于培养的方法检测和定量同一样品中的狭义蜡样芽孢杆菌,结果显示15份(11.1%)样品呈阳性。培养方法和PMA-qPCR在3份样品中检测到的狭义蜡样芽孢杆菌数量与引起食源性疾病所需的感染剂量相符,这表明,根据储存条件,即使经过超高温瞬时灭菌处理,即食产品中仍可能达到感染剂量。

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