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EFFECTS OF C_(60) FULLERENE NANOPARTICLES ON SOIL BACTERIA AND PROTOZOANS

机译:C_(60)富勒烯纳米粒子对土壤细菌和原生动物的影响

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摘要

Nanotechnology should produce numerous new materials in the coming years. Because of the novel design of nano-materials with new physicochemical characteristics, their potential adverse impact on the environment and human health must be addressed. In the present study, agglomerates of pristine C_(60) fullerenes (50 nm to μm-size) were applied to soil at 0, 5, 25, and 50 mg/kg dry soil to assess their effect on the soil microbiota by measuring total respiration; biomass, number, and diversity of bacteria; and total number and diversity of protozoans during 14 d. Respiration and microbial biomass were unaffected by the fullerenes at any time, whereas the number of fast-growing bacteria was decreased by three- to fourfold just after incorporation of the nanomaterial. Protozoans seemed not to be very sensitive to C_(60), because their number decreased only slightly in the beginning of the experiment. With polymerase chain reaction and denaturing gradient gel electrophoresis analysis of eubacteria and kinetoplastids from the soil, however, a difference between the fullerene treatments and nonamended controls was demonstrated. The fullerenes did not induce more than 20 to 30% of relative dissimilarity (with both bacteria and protozoans) between treatments, but this effect was persistent throughout the experiment. It therefore is recommended that fullerene nanomaterial not be spread deliberately in the environment and that their ecotoxicology be further clarified.
机译:纳米技术将在未来几年中生产出许多新材料。由于具有新物理化学特性的纳米材料的新颖设计,必须解决它们对环境和人类健康的潜在不利影响。在本研究中,将原始C_(60)富勒烯(50 nm至μm大小)的团聚体分别以0、5、25和50 mg / kg的干燥土壤施于土壤,以通过测量土壤中的微生物总量来评估其对土壤微生物的影响。呼吸;细菌的生物量,数量和多样性;和14天内原生动物的总数和多样性。富勒烯在任何时候都不会影响呼吸和微生物生物量,而在加入纳米材料后,快速生长的细菌数量却减少了三到四倍。原生动物似乎对C_(60)不太敏感,因为它们的数量在实验开始时仅略有下降。通过聚合酶链反应和变性梯度凝胶电泳分析土壤中的真细菌和运动质体,但是,富勒烯处理与未修饰的对照之间存在差异。在处理之间,富勒烯的相对相异性(细菌和原生动物)不会引起超过20%到30%的相对差异,但是这种效果在整个实验过程中都是持久的。因此,建议不要在环境中故意散布富勒烯纳米材料,并进一步阐明其生态毒理学。

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