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An Inexpensive, Accurate, and Precise Wet-Mount Method for Enumerating Aquatic Viruses

机译:一种价廉,准确,精确的湿式枚举水生病毒的方法

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Viruses affect biogeochemical cycling, microbial mortality, gene flow, and metabolic functions in diverse environments through infection and lysis of microorganisms. Fundamental to quantitatively investigating these roles is the determination of viral abundance in both field and laboratory samples. One current, widely used method to accomplish this with aquatic samples is the “filter mount” method, in which samples are filtered onto costly 0.02-μm-pore-size ceramic filters for enumeration of viruses by epifluorescence microscopy. Here we describe a cost-effective (ca. 500-fold-lower materials cost) alternative virus enumeration method in which fluorescently stained samples are wet mounted directly onto slides, after optional chemical flocculation of viruses in samples with viral concentrations of 7 viruses ml?1. The concentration of viruses in the sample is then determined from the ratio of viruses to a known concentration of added microsphere beads via epifluorescence microscopy. Virus concentrations obtained by using this wet-mount method, with and without chemical flocculation, were significantly correlated with, and had precision equivalent to, those obtained by the filter mount method across concentrations ranging from 2.17 × 106 to 1.37 × 108 viruses ml?1 when tested by using cultivated viral isolates and natural samples from marine and freshwater environments. In summary, the wet-mount method is significantly less expensive than the filter mount method and is appropriate for rapid, precise, and accurate enumeration of aquatic viruses over a wide range of viral concentrations (≥1 × 106 viruses ml?1) encountered in field and laboratory samples.
机译:病毒通过感染和裂解微生物,在不同的环境中影响生物地球化学循环,微生物死亡率,基因流和代谢功能。定量研究这些作用的基础是测定田间和实验室样品中病毒的丰度。一种使用水生样品完成此操作的当前广泛使用的方法是“过滤器安装”方法,其中将样品过滤到昂贵的0.02μm孔径的陶瓷过滤器上,以通过落射荧光显微镜对病毒进行计数。在这里,我们描述了一种经济高效的方法(大约可降低材料成本500倍),这种方法是将荧光染色的样品湿法直接装在载玻片上,然后对病毒浓度为7毫升/毫升的病毒进行化学絮凝,然后将其直接湿润。 1。然后通过落射荧光显微镜从病毒与已知添加微球珠浓度的比率确定样品中病毒的浓度。在不使用化学絮凝的情况下,通过这种湿式安装方法获得的病毒浓度与通过过滤器安装方法获得的浓度在2.17×106至1.37×108毫升ml?1之间具有显着相关性,并具有相同的精度。当使用海洋和淡水环境中的栽培病毒分离物和天然样品进行测试时。总之,湿式安装方法比过滤器安装方法便宜得多,并且适用于快速,精确和准确地枚举在多种病毒浓度范围内(≥1×106病毒ml?1)的水生病毒。现场和实验室样本。

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