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TiO2 nanoparticles affect the bacterial community structure and Eisenia fetida (Savigny 1826) in an arable soil

机译:TiO2纳米颗粒影响可耕土壤中的细菌群落结构和Fetida Eisenia(Savigny1826)

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摘要

The amount of nanoparticles (NP), such as TiO2, has increased substantially in the environment. It is still largely unknown, however, how NP might interact with earthworms and organic material and how this might affect the bacterial community structure and their functionality. Therefore, an arable soil was amended with TiO2 NP at 0, 150 or 300 mg kg−1 and subjected to different treatments. Treatments were soil amended with ten earthworms (Eisenia fetida ()) with fully developed clitellum and an average fresh mass of 0.5 to 500 g dry soil, 1.75 g tyndallized Quaker® oat seeds Avena sativa (L.) kg−1, or earthworms plus oat seeds, or left unamended. The bacterial community structure was monitored throughout the incubation period. The bacterial community in the unamended soil changed over time and application of oats, earthworm and a combination of both even further, with the largest change found in the latter. Application of NP to the unamended soil and the earthworm-amended soil altered the bacterial community, but combining it by adding oats negated that effect. It was found that the application of organic material, that is, oats, reduced the effect of the NP applied to soil. However, as the organic material applied was mineralized by the soil microorganisms, the effect of NP increased again over time.
机译:在环境中,纳米颗粒(NP)(例如TiO2)的数量已大大增加。但是,NP可能如何与worm和有机物质相互作用以及如何影响细菌群落结构及其功能仍是未知之数。因此,用0、150或300 mg kg -1 的TiO2 NP改良了可耕土壤,并对其进行了不同的处理。用十个worm(Eisenia fetida())改良土壤,处理后的fully草充分发育,平均新鲜质量为0.5至500 g干燥土壤,并用1.75 g tyallallized Quaker ®燕麦种子Avena sativa(L.) kg −1 ,或者earth加燕麦种子,或者不做任何修改。在整个孵育过程中监测细菌群落结构。未经改良的土壤中的细菌群落随时间而变化,燕麦,earth以及二者的组合的使用甚至进一步变化,其中后者的变化最大。在未改良的土壤和worm改良的土壤上施用NP改变了细菌群落,但通过添加燕麦将其结合起来却消除了这种作用。发现有机材料即燕麦的施用降低了NP施用于土壤的影响。但是,由于施用的有机材料被土壤微生物矿化,NP的影响随着时间的推移再次增加。

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