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Effects of Disinfection on Legionella spp. Eukarya and Biofilms in a Hot Water System

机译:热水系统中消毒对军团菌真核生物和生物膜的影响

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摘要

Legionella species are frequently detected in hot water systems, attached to the surface as a biofilm. In this work, the dynamics of Legionella spp. and diverse bacteria and eukarya associated together in the biofilm, coming from a pilot scale 1 system simulating a real hot water system, were investigated throughout 6 months after two successive heat shock treatments followed by three successive chemical treatments. Community structure was assessed by a fingerprint technique, single-strand conformation polymorphism (SSCP). In addition, the diversity and dynamics of Legionella and eukarya were investigated by small-subunit (SSU) ribosomal cloning and sequencing. Our results showed that pathogenic Legionella species remained after the heat shock and chemical treatments (Legionella pneumophila and Legionella anisa, respectively). The biofilm was not removed, and the bacterial community structure was transitorily affected by the treatments. Moreover, several amoebae had been detected in the biofilm before treatments (Thecamoebae sp., Vannella sp., and Hartmanella vermiformis) and after the first heat shock treatment, but only H. vermiformis remained. However, another protozoan affiliated with Alveolata, which is known as a host cell for Legionella, dominated the eukaryal species after the second heat shock and chemical treatment tests. Therefore, effective Legionella disinfection may be dependent on the elimination of these important microbial components. We suggest that eradicating Legionella in hot water networks requires better study of bacterial and eukaryal species associated with Legionella in biofilms.
机译:军团菌经常在热水系统中被检测到,并以生物膜的形式附着在表面。在这项工作中,军团菌属的动态。在连续两次热冲击处理后再经过三个连续化学处理后的6个月中,研究了整个生物膜中来自模拟真实热水系统的中试规模1系统中各种细菌和真核生物的相关性。通过指纹技术,单链构象多态性(SSCP)评估社区结构。此外,还通过小亚基(SSU)核糖体克隆和测序研究了军团菌和真核生物的多样性和动力学。我们的研究结果表明,热休克和化学处理(分别为肺炎军团菌和anisa军团菌)后仍保留了病原性军团菌。没有去除生物膜,并且细菌群落结构暂时受到处理的影响。此外,在处理之前(Thecamoebae sp。,Vannella sp。和Hartmanella vermiformis)和第一次热休克处理后,在生物膜中已检测到数个变形虫,但仅残留了H. vermiformis。然而,在第二次热休克和化学处理测试之后,另一种与肺泡有关的原生动物(被称为军团菌的宿主细胞)主导了真核生物。因此,有效的军团菌消毒可能取决于消除这些重要的微生物成分。我们建议在热水网络中根除军团菌需要对生物膜中与军团菌有关的细菌和真核生物物种进行更好的研究。

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