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How do stream organisms respond to, and influence, the concentration of titanium dioxide nanoparticles? A mesocosm study with algae and herbivores

机译:流有机体如何应对和影响二氧化钛纳米粒子的浓度?用藻类和食草动物研究中核科学研究

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摘要

The biologically active properties of many nanomaterials, coupled with their rapidly expanding production and use, has generated concern that certain types of nanoparticles could have unintended impacts when released into natural ecosystems. In the present study, the authors report the results of an experiment in which they grew three common species of stream algae as monocultures and together as polycultures in the biofilms of stream mesocosms that were exposed to 0, 0.1, or 1.0 ppm nanoparticle titanium dioxide (nTiO 2 ). The nTiO 2 did not alter the growth trajectory of any algal biofilm over 10+ generations. However, Ti accrual in biofilms not only differed among the algal species but was also higher in polycultures than in the average monoculture. Variation in accrual among species compositions was readily predicted by differences in the total biomass achieved by the different biofilms. When biofilms were fed to the herbivorous snail Physa acuta at the end of the experiment, initial concentrations of nTiO 2 did not alter short‐term rates of herbivory. However, because of differences in palatability among the algae, biofilm composition influenced the amount of nTiO 2 that accumulated in the herbivore tissue. The results have important implications for understanding how efficiently nTiO 2 is removed from surface waters and the potential transfer of nanomaterials to higher trophic levels. Environ. Toxicol. Chem. 2012; 31: 2414–2422. © 2012 SETAC
机译:许多纳米材料的生物活性性质,与其迅速扩张的生产和使用相结合,产生了某些类型的纳米颗粒可能在释放到自然生态系统中产生意外的影响。在本研究中,作者报告了一种实验结果,其中它们将三种常见的流藻类作为单栽培品种,并且作为暴露于0,0.1或1.0ppm纳米粒子钛二氧化钛的流叶片的生物膜中的多种植物( ntio 2)。 NTIO 2没有改变任何藻类生物膜的生长轨迹超过10多代。然而,生物膜中的Ti应计不仅不同于藻类物种,但在普通单一栽培中的多种植体中也较高。物种组合物中应计的变异易于通过不同生物膜实现的总生物量的差异预测。当在实验结束时将生物膜喂入食草蜗牛菌射时,NTIO 2的初始浓度没有改变草食病的短期率。然而,由于藻类之间的适口性差异,生物膜组合物影响了在食草动物组织中积聚的NTIO 2的量。结果对了解NTIO 2从表面水中除去的效率以及纳米材料的潜在转移至更高的营养水平,因此结果具有重要意义。环境。毒素。化学。 2012; 31:2414-2422。 ©2012 SetAc.

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