Abstract Microbial community response to silver nanoparticles and Ag~+ in nitrifying activated sludge revealed by ion semiconductor sequencing
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Microbial community response to silver nanoparticles and Ag~+ in nitrifying activated sludge revealed by ion semiconductor sequencing

机译:离子半导体测序揭示硝化活性污泥中微生物对银纳米颗粒和Ag〜+的响应

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AbstractSilver nanoparticles (AgNPs), which are known to act as biocides, are incorporated into medical and consumer products including athletic clothing, stuffed animals, liquid dietary supplements, and more. The increasing use of AgNPs in these products is likely to lead to their entry into both natural and engineered systems, which has the potential to disrupt bacterial processes including those involved in nutrient cycling in wastewater treatment. In the present study, sequencing batch reactors (SBR) mimicking secondary wastewater treatment were operated to determine the effects of AgNPs on the microbial communities contained within activated sludge of wastewater treatment plants (WWTP). SBRs were treated with 0.2 and 2ppm of either gum Arabic (GA)-coated AgNPs, citrate (Ca)-coated AgNPs, or Ag+as AgNO3. Cell samples were collected and DNA isolated periodically throughout SBR operation. DNA was used for Ion Torrent Next Gen Sequencing of the V3 region of the 16S rDNA gene. Subsequent analyses revealed that the microbial community both shifted and recovered quickly in response to Ag+. Both AgNP treatments resulted in slower initial community shifts than that observed with the Ag+treatment. GA-AgNPs elicited the longest lasting effect. Additional examination of nitrogen removal bacteria suggested the possibility of an increase in sludge bulking species with increased concentrations of AgNPs in WWTPs. This study supports the hypothesis that Ag+release from AgNPs is largely coating-dependent and thus a key driver in dictating AgNP toxicity.Graphical abstractDisplay OmittedHighlightsGum Arabic-coated silver nanoparticles had long lasting impact on diversity and community structure.High proportion ofZoogloea-related OTUs were detected.Increase of silver nanoparticles in wastewater treatment plants has potential for increased sludge bulking.Silver nanoparticles, not ionic silver, negatively affected Bacteroidetes.
机译: 摘要 银纳米颗粒(AgNPs)被称为杀生物剂,被掺入医疗和消费产品中,包括运动服,填充动物,液体膳食补充剂等。这些产品中不断增加的AgNP的使用可能会导致它们进入天然系统和工程系统,这有可能破坏细菌过程,包括废水处理中涉及营养循环的细菌过程。在本研究中,模拟二次废水处理的顺序批处理反应器(SBR)用于确定AgNPs对废水处理厂(WWTP)活性污泥中所含微生物群落的影响。用0.2和2ppm的阿拉伯树胶(GA)涂层的AgNP,柠檬酸盐(Ca)涂层的AgNP或Ag + 作为AgNO 3 。收集细胞样品,并在整个SBR操作中定期分离DNA。 DNA用于16S rDNA基因V3区域的离子激流下一代测序。随后的分析表明,微生物群体对Ag + 的响应既迅速迁移又迅速恢复。与使用Ag + 处理所观察到的结果相比,两种AgNP处理都导致较慢的初始社区迁移。 GA-AgNPs引起最长的持续作用。对除氮细菌的进一步检查表明,随着污水处理厂中AgNPs浓度的增加,污泥膨胀物质可能会增加。这项研究支持以下假设:AgNPs中的Ag + 释放很大程度上取决于涂层,因此是决定AgNP毒性的关键驱动力。 图形摘要 省略显示 突出显示 阿拉伯胶涂银纳米银颗粒对多样性和群落结构具有长期影响。 < ce:para id =“ p0010” view =“ all”>检测到与 Zoogloea 相关的OTU的比例很高。 < ce:list-item id =“ li0015”> 废水处理厂中银纳米颗粒的增加可能会增加污泥散装。 银纳米颗粒,而不是离子银,会对拟杆菌产生不利影响。

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