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Application of real-time PCR for total airborne bacterial assessment: Comparison with epifluorescence microscopy and culture-dependent methods

机译:实时荧光定量PCR在空气中细菌总数评估中的应用:与落射荧光显微镜和培养相关方法的比较

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摘要

Traditional culture-dependent methods to quantify and identify airborne microorganisms are limited by factors such as short-duration sampling times and inability to count non-culturable or non-viable bacteria. Consequently, the quantitative assessment of bioaerosols is often underestimated. Use of the real-time quantitative polymerase chain reaction (Q-PCR) to quantify bacteria in environmental samples presents an alternative method, which should overcome this problem. The aim of this study was to evaluate the performance of a real-time Q-PCR assay as a simple and reliable way to quantify the airborne bacterial load within poultry houses and sewage treatment plants, in comparison with epifluorescence microscopy and culture-dependent methods. The estimates of bacterial load that we obtained from real-time PCR and epifluorescence methods, are comparable, however, our analysis of sewage treatment plants indicate these methods give values 270-290 fold greater than those obtained by the "impaction on nutrient agar" method. The culture-dependent method of air impaction on nutrient agar was also inadequate in poultry houses, as was the impinger-culture method, which gave a bacterial load estimate 32-fold lower than obtained by Q-PCR. Real-time quantitative PCR thus proves to be a reliable, discerning, and simple method that could be used to estimate airborne bacterial load in a broad variety of other environments expected to carry high numbers of airborne bacteria.
机译:传统的依赖于培养物的定量和鉴定空气中微生物的方法受到诸如短时采样时间和无法计数不可培养或不可生存细菌等因素的限制。因此,对生物气溶胶的定量评估常常被低估了。使用实时定量聚合酶链反应(Q-PCR)定量环境样品中的细菌提供了一种替代方法,该方法应克服此问题。这项研究的目的是与定量荧光显微镜和依赖培养物的方法相比,评估实时Q-PCR分析的性能,该方法是量化家禽场和污水处理厂中空气传播细菌负荷的一种简单可靠的方法。我们通过实时PCR和落射荧光方法获得的细菌载量估计值是可比的,但是,我们对污水处理厂的分析表明,这些方法的值比“对营养琼脂的影响”法获得的值高270-290倍。 。依靠空气对营养琼脂进行培养的依赖方法在禽舍中也是不充分的,如冲击培养法,其细菌载量估计比通过Q-PCR降低32倍。因此,实时定量PCR被证明是一种可靠,独特且简单的方法,可用于估计在预期携带大量空气传播细菌的多种其他环境中的空气传播细菌负荷。

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