ZnO Nanoparticles and Soil Fauna Affect Nutrient Transfer via Effects on Soil Fungal Community During Returned Wheat Straw Decomposition

IF 2.6 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES
Yanyan Jia, Dalu Gu, Xiaofeng Du, Wenfei Yang, Xiaodong Yin, Qisheng Li, Xiangshi Kong, Yuehong Gao, Qin Kong, Tingwu Liu
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Abstract

The decomposition of returned straw is increasing facing the negative impacts by metal nanoparticles (NPs), however, which may be modulated by soil fauna and this modulation effect is unclear. Here, the interactive effects of ZnO NPs with soil fauna on wheat straw decomposition were investigated in a potted rice cropping system. The results showed that ZnO NP below middle concentrations did not significantly influence straw decomposition, and mass loss was mainly driven by microfauna and microbes. High concentrations of ZnO NPs significantly impeded decomposition, mainly by reducing the complexity of fungal communities. This negative effect was ascribed to the promotion of Zn solubilization by bacterial taxa such as unclassified Acidobacteria, Bacteroidetes and Gemmatimonadetes. ZnO NPs had a greater impact on soil microorganisms than on fauna, reduced microbial activity, promoted the released straw nutrients entering into the soil by damaging nutrient transferring microorganisms and dominated the effects on soil stoichiometry. However, soil fauna significantly increased the activities of C- and N-releasing enzymes, decreased the activity of P-releasing enzymes, regardless of ZnO NP concentration, and promoted straw C decomposition. ZnO NPs altered soil microbial community composition, but these changes were modulated by soil fauna. Nonetheless, nutrient transport by fungi such as Ascomycota and Zygomycota and grazing by fauna were the predominant modulators on straw stoichiometry. The results of this study revealed that rational control of soil fauna will be helpful for promoting straw decomposition and efficient recycling of straw nutrients by crops under ZnO NP contamination.

Abstract Image

氧化锌纳米颗粒和土壤动物群落通过影响小麦秸秆还田分解过程中的土壤真菌群落来影响养分转移
还田秸秆的分解正面临着金属纳米颗粒(NPs)越来越多的负面影响,但这些影响可能会受到土壤中动物的调节,而这种调节作用尚不明确。本文研究了在盆栽水稻种植系统中,氧化锌纳米粒子与土壤动物对小麦秸秆分解的交互影响。结果表明,中等浓度以下的氧化锌氮氧化物对秸秆分解没有显著影响,秸秆的质量损失主要由微生物和微生物驱动。高浓度的氧化锌氮氧化物主要通过降低真菌群落的复杂性,明显阻碍了秸秆的分解。这种负面影响可归因于细菌类群对锌溶解的促进作用,例如未分类的酸细菌、类杆菌和革囊菌。氧化锌氮氧化物对土壤微生物的影响大于对动物群的影响,降低了微生物的活性,通过破坏养分转移微生物促进了进入土壤的秸秆养分的释放,并主导了对土壤化学计量的影响。然而,无论氧化锌氮氧化物的浓度如何,土壤动物都能明显提高C和N释放酶的活性,降低P释放酶的活性,促进秸秆C的分解。氧化锌氮氧化物改变了土壤微生物群落的组成,但这些变化受到土壤动物群落的调节。然而,真菌(如子囊菌群和接合菌群)的养分运输和动物的放牧是秸秆生物量的主要调节因素。研究结果表明,合理控制土壤动物群落有助于促进氧化锌氮磷污染条件下作物对秸秆的分解和秸秆养分的有效回收利用。
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来源期刊
CiteScore
5.40
自引率
0.00%
发文量
104
审稿时长
1.7 months
期刊介绍: International Journal of Environmental Research is a multidisciplinary journal concerned with all aspects of environment. In pursuit of these, environmentalist disciplines are invited to contribute their knowledge and experience. International Journal of Environmental Research publishes original research papers, research notes and reviews across the broad field of environment. These include but are not limited to environmental science, environmental engineering, environmental management and planning and environmental design, urban and regional landscape design and natural disaster management. Thus high quality research papers or reviews dealing with any aspect of environment are welcomed. Papers may be theoretical, interpretative or experimental.
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