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首页> 外文期刊>Environmental Science: Nano >Toxic interactions of different silver forms with freshwater green algae and cyanobacteria and their effects on mechanistic endpoints and the production of extracellular polymeric substances
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Toxic interactions of different silver forms with freshwater green algae and cyanobacteria and their effects on mechanistic endpoints and the production of extracellular polymeric substances

机译:不同形式的银与淡水绿藻和蓝细菌的毒性相互作用及其对机械终点和细胞外聚合物产生的影响

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摘要

This study investigated the magnitude and mechanisms of toxicity that ionic silver and two silver nano-particles (AgNPs) of differing size and stabiliser imparted on two model organisms, green algae (Chlamydomonas reinhardtii) and cyanobacteria (Synechococcus teopoliensis), and their effect on the extracellular polymeric substances (EPS) produced. Major silver losses were detected during the 72 h of exposure compared with introduced nominal concentrations. Cell viability and production of reactive oxygen species (ROS) were investigated to assess mechanisms of toxicity. All silver forms had a significant effect on viability for C. reinhardtii but only ionic silver significantly affected ROS production. For S. leopoliensis, only ionic silver affected viability. Levels of EPS produced by both species were similar between all treatments. Compositional differences were noted for C. reinhardtii with greater levels of lower molecular weight material produced in the presence of all silver forms. The results indicate that ionic silver has the greatest effect on the toxic stress endpoints. Variations between the ionic control and the two AgNP treatments are possibly due to differences in the ionic release dynamics and interactions with EPS produced by microorganisms. S, teopoliensis showing greater reduction in growth rates but lower impact on viability and ROS than C. reinhardtii is likely related to differences in relevant biological properties such as size and cell wall composition.
机译:这项研究调查了不同大小和稳定剂的离子银和两种大小不同的银纳米颗粒(AgNPs)对两种藻类(Chlamydomonas reinhardtii)和蓝细菌(Synechococcus teopoliensis)赋予的毒性的大小和机理,以及它们对黑藻的影响。产生了细胞外聚合物(EPS)。与引入的标称浓度相比,在暴露的72小时内检测到主要的银损失。研究了细胞活力和活性氧(ROS)的产生,以评估毒性机制。所有银的形式都对莱茵衣藻的生存能力有显着影响,但只有离子银会显着影响ROS的产生。对于S. leopoliensis,仅离子银会影响生存力。在所有处理之间,两种物种产生的EPS含量相似。注意到莱茵衣藻的成分差异,在所有银形式存在下产生的低分子量物质含量更高。结果表明,离子银对毒性应激终点的影响最大。离子控制和两种AgNP处理之间的差异可能是由于离子释放动力学的差异以及与微生物产生的EPS的相互作用所致。 S. teopoliensis表现出比Reinhardtii更快的生长速率降低,但对生存力和ROS的影响较小,这可能与相关生物学特性(例如大小和细胞壁组成)的差异有关。

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