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定量 PCR 法测定混浊碱性湖泊中霍乱弧菌的时空动态。

Spatiotemporal Dynamics of Vibrio cholerae in Turbid Alkaline Lakes as Determined by Quantitative PCR.

机构信息

Medical University of Vienna, Institute for Hygiene and Applied Immunology, Vienna, Austria.

Armament and Defence Technology Agency, NBC & Environmental Protection Technology Division, Vienna, Austria.

出版信息

Appl Environ Microbiol. 2018 May 17;84(11). doi: 10.1128/AEM.00317-18. Print 2018 Jun 1.

Abstract

In recent years, global warming has led to a growing number of infections in bathing water users in regions formerly unaffected by this pathogen. It is therefore of high importance to monitor in aquatic environments and to elucidate the main factors governing its prevalence and abundance. For this purpose, rapid and standardizable methods that can be performed by routine water laboratories are prerequisite. In this study, we applied a recently developed multiplex quantitative PCR (qPCR) strategy (i) to monitor the spatiotemporal variability of abundance in two small soda pools and a large lake that is intensively used for recreation and (ii) to elucidate the main factors driving dynamics in these environments. was detected with qPCR at high concentrations of up to 970,000 genomic units 100 ml during the warm season, up to 2 orders of magnitude higher than values obtained by cultivation. An independent cytometric approach led to results comparable to qPCR data but with significantly more positive samples due to problems with DNA recovery for qPCR. Not a single sample was positive for toxigenic , indicating that only nontoxigenic (NTVC) was present. Temperature was the main predictor of NTVC abundance, but the quality and quantity of dissolved organic matter were also important environmental correlates. Based on this study, we recommend using the developed qPCR strategy for quantification of toxigenic and nontoxigenic in bathing waters with the need for improvements in DNA recovery. There is a definitive need for rapid and standardizable methods to quantify waterborne bacterial pathogens. Such methods have to be thoroughly tested for their applicability to environmental samples. In this study, we critically tested a recently developed multiplex qPCR strategy for its applicability to determine the spatiotemporal variability of abundance in lakes with a challenging water matrix. Several qPCR protocols for detection have been developed in the laboratory, but comprehensive studies on the application to environmental samples are extremely scarce. In our study, we demonstrate that our developed qPCR approach is a valuable tool but that there is a need for improvement in DNA recovery for complex water matrices. Furthermore, we found that nontoxigenic is present in very high numbers in the investigated ecosystems, while toxigenic is apparently absent. Such information is of importance for public health.

摘要

近年来,由于全球变暖,在以前不受这种病原体影响的地区,浴场水中使用者感染的病例越来越多。因此,监测水中的病原体并阐明控制其流行和丰度的主要因素非常重要。为此,需要常规水质实验室能够进行的快速且标准化的方法。在本研究中,我们应用了一种最近开发的多重定量 PCR(qPCR)策略:(i)监测两个小苏打池和一个大型湖泊中 的时空变化,这些湖泊被广泛用于娱乐;(ii)阐明驱动这些环境中 动态的主要因素。在温暖季节,qPCR 检测到高达 970000 基因组单位 100ml 的高浓度,比培养法获得的值高 2 个数量级。一种独立的细胞计数方法得出的结果与 qPCR 数据相当,但由于 qPCR 中 DNA 回收存在问题,导致阳性样本明显更多。没有一个样本对产毒 呈阳性,表明只有非产毒 (NTVC)。温度是 NTVC 丰度的主要预测因子,但溶解有机物的质量和数量也是重要的环境相关因素。基于这项研究,我们建议使用开发的 qPCR 策略来量化浴场水中的产毒和非产毒 ,需要改进 DNA 回收。迫切需要快速和标准化的方法来量化水中的细菌病原体。此类方法必须经过彻底测试,以确定其对环境样品的适用性。在本研究中,我们批判性地测试了一种最近开发的多重 qPCR 策略,以确定其在具有挑战性的水质的湖泊中确定 丰度的时空变化的适用性。已经在实验室中开发了几种用于 检测的 qPCR 方案,但对环境样品应用的综合研究极为稀缺。在我们的研究中,我们证明我们开发的 qPCR 方法是一种有价值的工具,但需要改进复杂水质的 DNA 回收。此外,我们发现,在所研究的生态系统中,非产毒 存在于非常高的数量,而产毒 显然不存在。此类信息对公共卫生非常重要。

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