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西玛津的生物降解及生物强化土壤中氨氧化微生物的群落结构:氨氮和硝态氮源的影响。

Simazine biodegradation and community structures of ammonia-oxidizing microorganisms in bioaugmented soil: impact of ammonia and nitrate nitrogen sources.

机构信息

College of Environmental Sciences and Engineering, The Key Laboratory of Water and Sediment Sciences (Ministry of Education), Peking University, Beijing, 100871, China.

出版信息

Environ Sci Pollut Res Int. 2014 Feb;21(4):3175-81. doi: 10.1007/s11356-013-2268-7. Epub 2013 Nov 6.

Abstract

The objective of the present study was to investigate the impact of ammonia and nitrate nitrogen sources on simazine biodegradation by Arthrobacter sp. strain SD1 and the community structures of ammonia-oxidizing archaea (AOA) and bacteria (AOB) in non-agricultural soil. Soil microcosms with different treatments were constructed for herbicide biodegradation test. The relative abundance of the strain SD1 and the structures of AOA and AOB communities were assessed using quantitative PCR (q-PCR) and terminal restriction fragment length polymorphism (TRFLP), respectively. The co-existence of two inorganic nitrogen sources (ammonia and nitrate) had certain impact on simazine dissipation by the strain SD1. Bioaugmentation could induce a shift in the community structures of both AOA and AOB, but AOA were more responsive. Nitrogen application had significant impacts on AOA and AOB communities in bioaugmented soils. Moreover, in non-bioaugmented soil, the community structure of AOA, instead of AOB, could be quickly recovered after herbicide application. This study could add some new insights towards the impacts of nitrogen sources on s-triazine bioremediation and ammonia-oxidizing microorganisms in soil ecosystem.

摘要

本研究的目的是探讨氨氮和硝氮源对土壤中甲草胺生物降解的影响,以及非农业土壤中氨氧化古菌(AOA)和细菌(AOB)的群落结构。通过构建不同处理的土壤微宇宙来进行除草剂生物降解试验。采用定量 PCR(q-PCR)和末端限制性片段长度多态性(TRFLP)分别评估了菌株 SD1 的相对丰度以及 AOA 和 AOB 群落的结构。两种无机氮源(氨和硝酸盐)共存对菌株 SD1 对甲草胺的降解有一定的影响。生物强化可以诱导 AOA 和 AOB 群落结构的转变,但 AOA 更为敏感。氮素的施加对生物强化土壤中的 AOA 和 AOB 群落有显著影响。此外,在非生物强化土壤中,施加除草剂后,AOA 群落结构而不是 AOB 群落结构可以迅速得到恢复。本研究可为氮源对三嗪类化合物生物修复和土壤生态系统中氨氧化微生物的影响提供一些新的见解。

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