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Restructuring of the Aquatic Bacterial Community by Hydric Dynamics Associated with Superstorm Sandy

机译:水动力细菌与超级风暴桑迪相关的水动力重组

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Bacterial community composition and longitudinal fluctuations were monitored in a riverine system during and after Superstorm Sandy to better characterize inter- and intracommunity responses associated with the disturbance associated with a 100-year storm event. High-throughput sequencing of the 16S rRNA gene was used to assess microbial community structure within water samples from Muddy Creek Run, a second-order stream in Huntingdon, PA, at 12 different time points during the storm event (29 October to 3 November 2012) and under seasonally matched baseline conditions. High-throughput sequencing of the 16S rRNA gene was used to track changes in bacterial community structure and divergence during and after Superstorm Sandy. Bacterial community dynamics were correlated to measured physicochemical parameters and fecal indicator bacteria (FIB) concentrations. Bioinformatics analyses of 2.1 million 16S rRNA gene sequences revealed a significant increase in bacterial diversity in samples taken during peak discharge of the storm. Beta-diversity analyses revealed longitudinal shifts in the bacterial community structure. Successional changes were observed, in which Betaproteobacteria and Gammaproteobacteria decreased in 16S rRNA gene relative abundance, while the relative abundance of members of the Firmicutes increased. Furthermore, 16S rRNA gene sequences matching pathogenic bacteria, including strains of Legionella , Campylobacter , Arcobacter , and Helicobacter , as well as bacteria of fecal origin (e.g., Bacteroides ), exhibited an increase in abundance after peak discharge of the storm. This study revealed a significant restructuring of in-stream bacterial community structure associated with hydric dynamics of a storm event.IMPORTANCE In order to better understand the microbial risks associated with freshwater environments during a storm event, a more comprehensive understanding of the variations in aquatic bacterial diversity is warranted. This study investigated the bacterial communities during and after Superstorm Sandy to provide fine time point resolution of dynamic changes in bacterial composition. This study adds to the current literature by revealing the variation in bacterial community structure during the course of a storm. This study employed high-throughput DNA sequencing, which generated a deep analysis of inter- and intracommunity responses during a significant storm event. This study has highlighted the utility of applying high-throughput sequencing for water quality monitoring purposes, as this approach enabled a more comprehensive investigation of the bacterial community structure. Altogether, these data suggest a drastic restructuring of the stream bacterial community during a storm event and highlight the potential of high-throughput sequencing approaches for assessing the microbiological quality of our environment.
机译:在超级风暴桑迪期间和之后,对河流系统中的细菌群落组成和纵向波动进行了监测,以更好地表征与100年风暴事件相关的干扰相关的社区间和社区内响应。在风暴事件期间(2012年10月29日至11月3日)的12个不​​同时间点,使用16S rRNA基因的高通量测序评估了宾夕法尼亚州亨廷顿市二级流域Muddy Creek Run的水样中的微生物群落结构)并在季节性匹配的基准条件下进行。 16S rRNA基因的高通量测序用于追踪超级风暴桑迪期间和之后细菌群落结构的变化和趋异。细菌群落动态与测得的理化参数和粪便指示菌(FIB)浓度相关。对210万个16S rRNA基因序列的生物信息学分析显示,在暴风雨高峰排放期间采集的样品中细菌多样性显着增加。 Beta多样性分析揭示了细菌群落结构的纵向变化。观察到连续的变化,其中16S rRNA基因相对丰度中β变形杆菌和γ变形细菌减少,而Firmicutes成员的相对丰度增加。此外,与致病菌匹配的16S rRNA基因序列(包括军团菌,弯曲杆菌,弓形杆菌和幽门螺杆菌)以及粪便起源的细菌(例如拟杆菌)在暴风雨高峰排放后显示出丰度增加。这项研究揭示了与暴风雨事件的水力动力学相关的河内细菌群落结构的重大重组。为了更好地了解暴风雨事件期间与淡水环境有关的微生物风险,需要对水生细菌的变化有更全面的了解多样性是必要的。这项研究调查了超级风暴桑迪期间和之后的细菌群落,以提供动态的细菌成分变化的精细时间点解析。这项研究通过揭示暴风雨过程中细菌群落结构的变化,为当前文献增添了色彩。这项研究采用了高通量DNA测序技术,该技术对重大暴风雨期间社区间和社区内的反应进行了深入分析。这项研究强调了将高通量测序应用于水质监测目的的实用性,因为这种方法能够更全面地调查细菌群落结构。总而言之,这些数据表明在暴风雨期间河流细菌群落发生了巨大的重组,并突显了高通量测序方法在评估环境微生物质量方面的潜力。

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