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首页> 外文期刊>Applied and Environmental Microbiology >Temporal Stability of the Microbial Community in Sewage-Polluted Seawater Exposed to Natural Sunlight Cycles and Marine Microbiota
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Temporal Stability of the Microbial Community in Sewage-Polluted Seawater Exposed to Natural Sunlight Cycles and Marine Microbiota

机译:暴露于自然阳光循环和海洋微生物群落的污水污染海水中微生物群落的时间稳定性

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Billions of gallons of untreated wastewater enter the coastal ocean each year. Once sewage microorganisms are in the marine environment, they are exposed to environmental stressors, such as sunlight and predation. Previous research has investigated the fate of individual sewage microorganisms in seawater but not the entire sewage microbial community. The present study used next-generation sequencing (NGS) to examine how the microbial community in sewage-impacted seawater changes over 48 h when exposed to natural sunlight cycles and marine microbiota. We compared the results from microcosms composed of unfiltered seawater (containing naturally occurring marine microbiota) and filtered seawater (containing no marine microbiota) to investigate the effect of marine microbiota. We also compared the results from microcosms that were exposed to natural sunlight cycles with those from microcosms kept in the dark to investigate the effect of sunlight. The microbial community composition and the relative abundance of operational taxonomic units (OTUs) changed over 48 h in all microcosms. Exposure to sunlight had a significant effect on both community composition and OTU abundance. The effect of marine microbiota, however, was minimal. The proportion of sewage-derived microorganisms present in the microcosms decreased rapidly within 48 h, and the decrease was the most pronounced in the presence of both sunlight and marine microbiota, where the proportion decreased from 85% to 3% of the total microbial community. The results from this study demonstrate the strong effect that sunlight has on microbial community composition, as measured by NGS, and the importance of considering temporal effects in future applications of NGS to identify microbial pollution sources.
机译:每年有数十亿加仑未经处理的废水进入沿海海洋。污水微生物一旦进入海洋环境,便会暴露于环境压力下,例如日光和捕食。先前的研究已经调查了海水中单个污水微生物的命运,而不是整个污水微生物群落的命运。本研究使用下一代测序(NGS)来研究暴露于自然阳光循环和海洋微生物群落中的污水在经过48小时后受海水影响的微生物群落如何变化。我们比较了由未过滤的海水(包含自然发生的海洋微生物群)和过滤的海水(不包含海洋的微生物群)组成的微观世界的结果,以研究海洋微生物群的影响。我们还比较了暴露在自然阳光下的微观世界的结果与黑暗中保存的微观世界的结果,以研究阳光的影响。在所有微观世界中,微生物群落组成和操作分类单位(OTU)的相对丰度在48小时内发生了变化。暴露在阳光下对群落组成和OTU丰度都有显着影响。然而,海洋微生物群的影响很小。微生物中污水来源的微生物的比例在48小时内迅速下降,并且这种减少在阳光和海洋微生物群落的存在下最为明显,其比例从总微生物群落的85%降至3%。这项研究的结果表明,如NGS所测量的那样,日光对微生物群落组成具有强大的影响,并且在NGS的未来应用中应考虑时间影响以识别微生物污染源,这一点很重要。

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