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Characterization of Legionella Species from Watersheds in British Columbia, Canada

机译:加拿大不列颠哥伦比亚省流域的军团菌物种特征

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Legionella spp. present in some human-made water systems can cause Legionnaires’ disease in susceptible individuals. Although legionellae have been isolated from the natural environment, variations in the organism’s abundance over time and its relationship to aquatic microbiota are poorly understood. Here, we investigated the presence and diversity of legionellae through 16S rRNA gene amplicon and metagenomic sequencing of DNA from isolates collected from seven sites in three watersheds with varied land uses over a period of 1?year. Legionella spp. were found in all watersheds and sampling sites, comprising up to 2.1% of the bacterial community composition. The relative abundance of Legionella tended to be higher in pristine sites than in sites affected by agricultural activity. The relative abundance levels of Amoebozoa , some of which are natural hosts of legionellae, were similarly higher in pristine sites. Compared to other bacterial genera detected, Legionella had both the highest richness and highest alpha diversity. Our findings indicate that a highly diverse population of legionellae may be found in a variety of natural aquatic sources. Further characterization of these diverse natural populations of Legionella will help inform prevention and control efforts aimed at reducing the risk of Legionella colonization of built environments, which could ultimately decrease the risk of human disease. IMPORTANCE Many species of Legionella can cause Legionnaires’ disease, a significant cause of bacterial pneumonia. Legionella in human-made water systems such as cooling towers and building plumbing systems are the primary sources of Legionnaires’ disease outbreaks. In this temporal study of natural aquatic environments, Legionella relative abundance was shown to vary in watersheds associated with different land uses. Analysis of the Legionella sequences detected at these sites revealed highly diverse populations that included potentially novel Legionella species. These findings have important implications for understanding the ecology of Legionella and control measures for this pathogen that are aimed at reducing human disease.
机译:军团菌属在某些人造水系统中存在的水会在易感人群中引起军团病。尽管军团菌已经从自然环境中分离出来,但是人们对这种生物的丰度随时间的变化及其与水生微生物的关系知之甚少。在这里,我们调查了军团菌通过16S rRNA基因扩增子的存在和多样性,以及在1年内从三个流域的七个流域的七个地点收集的分离株中提取的DNA的宏基因组测序。军团菌属在所有流域和采样点都发现了细菌,占细菌群落组成的2.1%。原始地区的军团菌相对丰度往往高于受农业活动影响的地区。变形虫的相对丰度水平(其中一些是军团菌的天然宿主)在原始位点同样较高。与检测到的其他细菌属相比,军团菌具有最高的丰富度和最高的α多样性。我们的发现表明,可以在多种天然水生资源中发现高度多样的军团菌种群。军团菌的这些不同自然种群的进一步特征将有助于为旨在降低军团菌在建筑环境中定殖的风险的预防和控制工作提供信息,这最终可以降低人类疾病的风险。重要提示军团菌的许多种都可以引起军团菌病,这是细菌性肺炎的重要原因。冷却水塔和建筑物水暖系统等人造水系统中的军团菌是军团菌病暴发的主要来源。在对自然水生环境的时间研究中,军团菌相对丰度在不同土地利用相关的流域中表现出差异。对在这些位点检测到的军团菌序列的分析揭示了高度多样化的种群,其中包括潜在的新型军团菌物种。这些发现对于理解军团菌的生态学以及针对该病原体的旨在减少人类疾病的控制措施具有重要意义。

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