作者
Yuan Ge, John H Priester, Laurie C Van De Werfhorst, Sharon L Walker, Roger M Nisbet, Youn-Joo An, Joshua P Schimel, Jorge L Gardea-Torresdey, Patricia A Holden
发表日期
2014/11/10
期刊
Environmental Science & Technology
卷号
48
期号
22
页码范围
13489-13496
出版商
American Chemical Society
简介
Engineered nanoparticles (ENPs) are entering agricultural soils through land application of nanocontaining biosolids and agrochemicals. The potential adverse effects of ENPs have been studied on food crops and soil bacterial communities separately; however, how ENPs will affect the interacting plant–soil system remains unknown. To address this, we assessed ENP effects on soil microbial communities in soybean-planted, versus unplanted, mesocosms exposed to different doses of nano-CeO2 (0–1.0 g kg–1) or nano-ZnO (0–0.5 g kg–1). Nano-CeO2 did not affect soil bacterial communities in unplanted soils, but 0.1 g kg–1 nano-CeO2 altered soil bacterial communities in planted soils, indicating that plants interactively promote nano-CeO2 effects in soil, possibly due to belowground C shifts since plant growth was impacted. Nano-ZnO at 0.5 g kg–1 significantly altered soil bacterial communities, increasing …
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Y Ge, JH Priester, LC Van De Werfhorst, SL Walker… - Environmental science & technology, 2014