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Optimization of Procedures for Counting Viruses by Flow Cytometry

机译:流式细胞术计数病毒的程序优化

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摘要

The development of sensitive nucleic acid stains, in combination with flow cytometric techniques, has allowed the identification and enumeration of viruses in aquatic systems. However, the methods used in flow cytometric analyses of viruses have not been consistent to date. A detailed evaluation of a broad range of sample preparations to optimize counts and to promote the consistency of methods used is presented here. The types and concentrations of dyes, fixatives, dilution media, and additives, as well as temperature and length of incubation, dilution factor, and storage conditions were tested. A variety of different viruses, including representatives of phytoplankton viruses, cyanobacteriophages, coliphages, marine bacteriophages, and natural mixed marine virus communities were examined. The conditions that produced optimal counting results were fixation with glutaraldehyde (0.5% final concentration, 15 to 30 min), freezing in liquid nitrogen, and storage at −80°C. Upon thawing, samples should be diluted in Tris-EDTA buffer (pH 8), stained with SYBR Green I (a 5 × 10−5 dilution of commercial stock), incubated for 10 min in the dark at 80°C, and cooled for 5 min prior to analysis. The results from examinations of storage conditions clearly demonstrated the importance of low storage temperatures (at least −80°C) to prevent strong decreases (occasionally 50 to 80% of the total) in measured total virus abundance with time.
机译:与流式细胞仪技术相结合,敏感的核酸染色剂的发展已允许在水生系统中鉴定和枚举病毒。但是,迄今为止,用于病毒的流式细胞术分析的方法还不一致。这里介绍了对各种样品制备的详细评估,以优化计数并促进所用方法的一致性。测试了染料,固定剂,稀释介质和添加剂的类型和浓度,以及孵育的温度和时间,稀释倍数和储存条件。检查了各种不同的病毒,包括浮游植物病毒,蓝藻噬菌体,噬菌体,海洋噬菌体和天然混合海洋病毒群落的代表。产生最佳计数结果的条件是用戊二醛固定(终浓度为0.5%,15至30分钟),在液氮中冷冻,并在-80°C下储存。解冻后,应将样品在Tris-EDTA缓冲液(pH 8)中稀释,并用SYBR Green I(5×10 −5 稀释的商业原料)染色,并在黑暗中于室温孵育10分钟。 80°C,并在分析前冷却5分钟。储存条件检查的结果清楚地表明了低储存温度(至少-80°C)对于防止随时间推移测得的总病毒丰度大幅下降(有时占总数的50%至80%)的重要性。

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