首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >Bioaerosol Sampling with a Wetted Wall Cyclone: Cell Cuiturability and DNA Integrity of Escherichia coli Bacteria
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Bioaerosol Sampling with a Wetted Wall Cyclone: Cell Cuiturability and DNA Integrity of Escherichia coli Bacteria

机译:湿壁旋风的生物气溶胶采样:细胞细菌性和大肠杆菌细菌的DNA完整性。

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Contemporary near-real-time bioaerosol Identifiers that read labeled DNA require a minimum DNA length of about 500,000 base pairs; and for critical applications, instrumental identification results must be verified through the use of classical microbiological culturing techniques. A 300 L/min Wetted Wall Cyclone (WWC) and an 800 L/min inertial impactor were used in a comparative study to collect aerosolized single cells of Escherichia coli (E. coli) at temperatures of 24°C and 46° C. Classical microbiological plating techniques showed that the cuiturability of E. coli collected with a WWC is a factor of about 100 higher than that of the impactor when the sampled aerosol is at room temperature (RT) and a factor of about 4000 higher when the sampled aerosol is at 46° C. DNA integrity was qualitatively evaluated with pulsed field gel electrophoresis (PFGE) and photographic evidence shows a significant difference in the amount of high molecular weight DNA (molecules larger than 500,000 base pairs) collected with the WWC compared with the Impactor. Extracted DNA was also digested by the NotI enzyme, and the qualitative results of the restriction analysis showed there to be high integrity of the WWC-coUected DNA, whereas the impactor-collected DNA showed considerable fragmentation. Real-Time polymerase chain reaction (RT-PCR) showed samples required for E. coli identification need to be about 100 times more concentrated if they are collected with the impactor rather than that of the WWC. Also, it appears that only the Intact genomic DNA of the culturable cells provides adequate templates for traditional and RT-PCR amplification.
机译:读取标记DNA的当代近实时生物气溶胶标识符至少需要约500,000个碱基对的DNA长度。对于关键应用,必须通过使用经典的微生物培养技术来验证仪器鉴定结果。在一项比较研究中,使用了一个300 L / min的湿壁旋风分离器(WWC)和一个800 L / min的惯性冲击器来收集在24°C和46°C的温度下大肠杆菌(E. coli)的气雾化单细胞。微生物平板技术显示,当采样的气溶胶处于室温(RT)时,用WWC收集的大肠杆菌的可比性比撞击器的可固化性高约100倍,而当采样的气溶胶在室温下时,其可固化性约高4000倍。在46°C下,通过脉冲场凝胶电泳(PFGE)定性评估了DNA的完整性,照相证据显示,与撞击器相比,WWC收集的高分子量DNA(大于500,000个碱基对的分子)的数量存在显着差异。提取的DNA也被NotI酶消化,限制性酶切分析的定性结果表明,WWC收集的DNA具有很高的完整性,而撞击子收集的DNA则显示出相当大的碎片。实时聚合酶链反应(RT-PCR)显示,如果使用撞击器而不是WWC进行收集,则用于鉴定大肠杆菌的样品需要浓缩大约100倍。同样,似乎只有可培养细胞的完整基因组DNA为传统扩增和RT-PCR扩增提供了足够的模板。

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