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土壤细菌多样性、预测功能及共生模式对纳米氧化铈和离子铈暴露的响应

Response of Soil Bacterial Diversity, Predicted Functions and Co-Occurrence Patterns to Nanoceria and Ionic Cerium Exposure.

作者信息

Zhang Jie, Meng Hui-Sheng, Shang Yan-Meng, Lead Jamie R, Guo Zhang-Zhen, Hong Jian-Ping

机构信息

College of Resources and Environment, Shanxi Agricultural University, Jinzhong 030801, China.

Center for Environmental Nanoscience and Risk, Department of Environmental Health Sciences, Arnold School of Public Health, University of South Carolina, Columbia, SC 29208, USA.

出版信息

Microorganisms. 2022 Oct 6;10(10):1982. doi: 10.3390/microorganisms10101982.

Abstract

Release of nanoceria (nCeO) into the environment has caused much concern about its potential toxicity, which still remains poorly understood for soil microorganisms. In this study, nanoceria and cerium (III) nitrate at different doses (10, 100 and 500 mg/kg) were applied to bok choy ( subsp. ), grown in potting soil, to investigate the responses of soil bacterial communities to nanoceria (NC) and ionic cerium (IC) applications. The results showed that bacterial richness was slightly increased in all cerium treatments relative to the negative control without cerium amendment (CK), but a significant increase was only found in IC500. The patterns of bacterial community composition, predicted functions and phenotypes of all NC treatments were significantly differentiated from IC and CK treatments, which was correlated with the contents of cerium, available potassium and phosphorus in soil. The co-occurrence network of bacterial taxa was more complex after exposure to ionic cerium than to nanoceria. The keystone taxa of the two networks were entirely different. Predicted functions analysis found that anaerobic and Gram-negative bacteria were enriched under nanoceria exposure. Our study implies that Proteobacteria and nitrifying bacteria were significantly enriched after exposure to nanoceria and could be potential biomarkers of soil environmental perturbation from nanoceria exposure.

摘要

纳米氧化铈(nCeO)释放到环境中已引发人们对其潜在毒性的诸多担忧,而对于土壤微生物而言,其潜在毒性仍知之甚少。在本研究中,将不同剂量(10、100和500毫克/千克)的纳米氧化铈和硝酸铈(III)施用于盆栽土壤中种植的小白菜(亚种),以研究土壤细菌群落对纳米氧化铈(NC)和离子铈(IC)施用的响应。结果表明,相对于未添加铈的阴性对照(CK),所有铈处理中的细菌丰富度均略有增加,但仅在IC500中发现显著增加。所有NC处理的细菌群落组成、预测功能和表型模式与IC和CK处理有显著差异,这与土壤中铈、有效钾和磷的含量相关。暴露于离子铈后细菌类群的共现网络比暴露于纳米氧化铈后更复杂。两个网络的关键类群完全不同。预测功能分析发现,纳米氧化铈暴露下厌氧细菌和革兰氏阴性细菌富集。我们的研究表明,暴露于纳米氧化铈后变形菌门和硝化细菌显著富集,可能是纳米氧化铈暴露引起土壤环境扰动的潜在生物标志物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a87e/9607988/8e5cb3aa25e8/microorganisms-10-01982-g001.jpg

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