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题名

Silver nanoparticles and Fe(III) co-regulate microbial community and N2O emission in river sediments

作者
通讯作者Niu, Lihua; Wang, Chao
发表日期
2020
DOI
发表期刊
ISSN
18791026
EISSN
1879-1026
卷号706
摘要

The effects of environmental concentration silver nanoparticles (ecAgNPs) on microbial communities and the nitrogen cycling in river sediments remain largely uncharacterized. As a fundamental component of sediments, Fe(III) can interact with AgNPs and participate in nitrogen transformation processes. N2O is an important intermediate in nitrogen transformation processes and can be a potent greenhouse gas with significant environmental effects. However, the impacts of the co-existence of AgNPs and Fe(III) on microbial communities and N2O emission in river sediments are still unclear. In the present study, mesocosm experiments were conducted to assess the changes of microbial communities and N2O emission in response to the co-existence of AgNPs and environmental concentration Fe(III). Our results revealed that the microbial community diversity and N2O emission in river sediments responded differently to ecAgNPs (0.05 mg/kg) and high-polluting concentration AgNPs (hcAgNPs, 5 mg/kg), which was further regulated by the environmental concentration Fe(III) (1 mg/g and 10 mg/g). After ecAgNPs treatments, a marked increase was observed in microbial diversity compared to hcAgNPs treatments, regardless of the Fe(III) concentration in the sediment. The β-NTI index indicated that AgNPs had stronger impacts on phylogenetic distance of bacterial communities in sediments containing 1 mg/g Fe(III) than that containing 10 mg/g Fe(III). In sediments containing 1 mg/g Fe(III), ecAgNPs did not affect N2O emission, but hcAgNPs significantly inhibited the emission of N2O. However, in sediments containing 10 mg/g Fe(III), N2O emission was significantly stimulated upon exposure to ecAgNPs, but the inhibition effect of hcAgNPs was barely observed. Functional prediction and real-time PCR analyses indicated that AgNPs and Fe(III) predominantly affected N2O emissions by affecting the abundance of the nirK gene. Our results provide new insights into the ecological impacts of the co-existence of environmental concentration AgNPs and Fe(III) in altering microbial communities and nitrogen transformation functions in river sediments.
© 2018

关键词
相关链接[来源记录]
收录类别
SCI ; EI
语种
英语
学校署名
通讯
资助项目
Priority Academic Program Development of Jiangsu Higher Education Institutions[] ; Fundamental Research Funds for the Central Universities[] ; Natural Science Foundation of Jiangsu Province[2018B01314] ; Foundation for Innovative Research Groups of the National Natural Science Foundation of China[51421006] ; National Natural Science Foundation of China[51779076]
WOS研究方向
Environmental Sciences & Ecology
WOS类目
Environmental Sciences
WOS记录号
WOS:000506376300119
出版者
EI入藏号
20200207990570
EI主题词
Bacteria ; Greenhouse Gases ; Metal Nanoparticles ; Nitrogen ; Polymerase Chain Reaction ; Rivers ; Sediments ; Silver Compounds ; Silver Nanoparticles
EI分类号
Air Pollution Sources:451.1 ; Soil Mechanics And Foundations:483 ; Nanotechnology:761 ; Biochemistry:801.2 ; Chemical Products Generally:804
ESI学科分类
ENVIRONMENT/ECOLOGY
来源库
Web of Science
引用统计
被引频次[WOS]:12
成果类型期刊论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/104761
专题工学院_环境科学与工程学院
作者单位
1.Key Laboratory of Integrated Regulation and Resource Development on Shallow Lakes, Ministry of Education, College of Environment, Hohai University, Nanjing; 210098, China
2.School of Environmental Science and Engineering, Southern University of Science and Technology, Shenzhen; 518055, China
通讯作者单位环境科学与工程学院
推荐引用方式
GB/T 7714
Li, Yi,Zhao, Ruiqi,Wang, Longfei,et al. Silver nanoparticles and Fe(III) co-regulate microbial community and N2O emission in river sediments[J]. Science of the Total Environment,2020,706.
APA
Li, Yi.,Zhao, Ruiqi.,Wang, Longfei.,Niu, Lihua.,Wang, Chao.,...&Wang, Peifang.(2020).Silver nanoparticles and Fe(III) co-regulate microbial community and N2O emission in river sediments.Science of the Total Environment,706.
MLA
Li, Yi,et al."Silver nanoparticles and Fe(III) co-regulate microbial community and N2O emission in river sediments".Science of the Total Environment 706(2020).
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