首页> 外文期刊>Environmental Science and Pollution Research >Effects of fullerene (C60), multi-wall carbon nanotubes (MWCNT), single wall carbon nanotubes (SWCNT) and hydroxyl and carboxyl modified single wall carbon nanotubes on riverine microbial communities
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Effects of fullerene (C60), multi-wall carbon nanotubes (MWCNT), single wall carbon nanotubes (SWCNT) and hydroxyl and carboxyl modified single wall carbon nanotubes on riverine microbial communities

机译:富勒烯(C60),多壁碳纳米管(MWCNT),单壁碳纳米管(SWCNT)以及羟基和羧基改性的单壁碳纳米管对河流微生物群落的影响

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Commercial production of nanoparticles (NP) has created a need for research to support regulation of nanotechnology. In the current study, microbial biofilm communities were developed in rotating annular reactors during continuous exposure to 500 mu g L-1 of each nanomaterial and subjected to multimetric analyses. Scanning transmission X-ray spectromicroscopy (STXM) was used to detect and estimate the presence of the carbon nanomaterials in the biofilm communities. Microscopy observations indicated that the communities were visibly different in appearance with changes in abundance of filamentous cyanobacteria in particular. Microscale analyses indicated that fullerene (C60) did not significantly (p < 0.05) impact algal, cyanobacterial or bacterial biomass. In contrast, MWCNT exposure resulted in a significant decline in algal and bacteria biomass. Interestingly, the presence of SWCNT products increased algal biomass, significantly in the case of SWCNT-COOH (p < 0.05) but had no significant impact on cyanobacterial or bacterial biomass. Thymidine incorporation indicated that bacterial production was significantly reduced (p < 0.05) by all nanomaterials with the exception of fullerene. Biolog assessment of carbon utilization revealed few significant effects with the exception of the utilization of carboxylic acids. PCA and ANOSIM analyses of denaturing gradient gel electrophoresis (DGGE) results indicated that the bacterial communities exposed to fullerene were not different from the control, the MWCNT and SWNT-OH differed from the control but not each other, whereas the SWCNT and SWCNT-COOH both differed from all other treatments and were significantly different from the control (p < 0.05). Fluorescent lectin binding analyses also indicated significant (p < 0.05) changes in the nature and quantities of exopolymer consistent with changes in microbial community structure during exposure to all nanomaterials. Enumeration of protozoan grazers showed declines in communities exposed to fullerene or MWCNT but a trend for increases in all SWCNT exposures. Observations indicated that at 500 mu g L-1, carbon nanomaterials significantly alter aspects of microbial community structure and function supporting the need for further evaluation of their effects in aquatic habitats.
机译:纳米颗粒(NP)的商业化生产引起了对研究的需求,以支持纳米技术的监管。在当前研究中,在连续暴露于每种纳米材料500μgL-1的过程中,在旋转的环形反应器中开发了微生物生物膜群落,并进行了多指标分析。扫描透射X射线光谱显微镜(STXM)用于检测和估计生物膜群落中碳纳米材料的存在。显微镜观察表明,这些群落的外观明显不同,尤其是丝状蓝细菌的丰度变化。微观分析表明,富勒烯(C60)不会显着(p <0.05)影响藻类,蓝细菌或细菌生物量。相反,MWCNT暴露导致藻类和细菌生物量显着下降。有趣的是,SWCNT产品的存在显着增加了藻类生物量,在SWCNT-COOH的情况下(p <0.05),但对蓝细菌或细菌生物量没有显着影响。胸腺嘧啶核苷的掺入表明,除富勒烯外,所有纳米材料的细菌产生量均显着降低(p <0.05)。 Biolog对碳利用的评估显示,除羧酸利用外,几乎没有任何显着影响。 PCA和ANOSIM对变性梯度凝胶电泳(DGGE)结果的分析表明,暴露于富勒烯的细菌群落与对照无差异,MWCNT和SWNT-OH与对照无差异,而SWCNT和SWCNT-COOH两者均与所有其他治疗方法不同,并且与对照组有显着差异(p <0.05)。荧光凝集素结合分析还表明,在暴露于所有纳米材料期间,外聚合物的性质和数量发生了显着(p <0.05)变化,与微生物群落结构的变化一致。原生动物放牧者的计数显示,暴露于富勒烯或MWCNT的社区数量有所减少,但所有SWCNT暴露的数量都有增加的趋势。观察表明,在500μg L-1浓度下,碳纳米材料会显着改变微生物群落结构和功能的方面,从而有必要进一步评估其在水生生境中的作用。

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