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一种用于快速准确检测海洋来源的解淀粉芽孢杆菌 B-9987 活菌和芽孢的新型 PMA-qPCR 方法。

A new PMA-qPCR method for rapid and accurate detection of viable bacteria and spores of marine-derived Bacillus velezensis B-9987.

机构信息

State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai 200237, China.

State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai 200237, China.

出版信息

J Microbiol Methods. 2022 Aug;199:106537. doi: 10.1016/j.mimet.2022.106537. Epub 2022 Jul 4.

Abstract

Marine-derived Bacillus velezensis B-9987 is an important biocontrol bacterium with a broad-spectrum antibacterial effect. The traditional plate counting method is widely used for quantitative detection of viable bacteria and spores but has some disadvantages such as being laborious and time-consuming (at least 24-48 h). This study aimed to develop a new PMA-qPCR method for rapid and accurate detection of viable bacteria and spores of B-9987. The specific primers were designed for qPCR amplification based on the conserved region of the bmmA gene (encoding a malonyl CoA-ACP transacylase) of B-9987. According to the characteristic that propidium monoazide (PMA) dye can distinguish viable and dead bacteria, the optimal PMA concentration of 10 μg/ml and optimal exposure time of 10 min were achieved under PMA treatment conditions. The B-9987 spores' genomic DNA was successfully extracted after the spore coat was removed and spore germination was induced. The quantification limits of the PMA-qPCR method were determined for viable B-9987 bacteria, spores in pure culture, and spores in marine Bacillus wettable powder (marine Bacillus WP) and were 1.5 × 10 CFU/ml, 6.5 × 10 CFU/ml, and 10 CFU/ml, respectively. Compared with the qPCR method, the PMA-qPCR method could sensitively detect viable bacteria in the viable/dead bacterial mixture. In this study, the developed PMA-qPCR method was found to have excellent sensitivity and specificity in the context of a pure culture of B-9987 strain, which could accurately and rapidly detect viable B-9987 bacteria within 3-4 h and viable B-9987 spores in marine Bacillus WP within 4-6 h.

摘要

海洋来源的解淀粉芽孢杆菌 B-9987 是一种具有广谱抗菌作用的重要生防细菌。传统的平板计数法广泛用于活菌和孢子的定量检测,但存在费力和耗时(至少 24-48 小时)等缺点。本研究旨在开发一种新的 PMA-qPCR 方法,用于快速准确检测 B-9987 的活菌和孢子。根据 B-9987 的 bmmA 基因(编码丙二酰辅酶 A-ACP 转酰基酶)保守区设计了 qPCR 扩增的特异性引物。根据吖啶橙(PMA)染料能够区分活菌和死菌的特性,在 PMA 处理条件下,获得了 10μg/ml 的最佳 PMA 浓度和 10min 的最佳暴露时间。在去除孢子壳并诱导孢子萌发后,成功提取了 B-9987 孢子的基因组 DNA。确定了 PMA-qPCR 方法对活菌 B-9987 细菌、纯培养孢子、海洋芽孢杆菌可湿性粉剂(海洋芽孢杆菌 WP)中孢子的定量限分别为 1.5×10 CFU/ml、6.5×10 CFU/ml 和 10 CFU/ml。与 qPCR 方法相比,PMA-qPCR 方法能够灵敏地检测活菌/死菌混合物中的活菌。在本研究中,所开发的 PMA-qPCR 方法在 B-9987 菌株的纯培养物中具有优异的灵敏度和特异性,可在 3-4 小时内准确快速地检测到活菌 B-9987,在 4-6 小时内检测到海洋芽孢杆菌 WP 中的活菌 B-9987 孢子。

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