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固相反硝化对循环水养殖系统中硝酸盐去除及细菌群落结构的影响

Effects of solid-phase denitrification on the nitrate removal and bacterial community structure in recirculating aquaculture system.

作者信息

Qiu Tianlei, Liu Lili, Gao Min, Zhang Lanhe, Tursun Haireti, Wang Xuming

机构信息

Beijing Engineering Research Center of Environmental Material for Water Purification, Beijing University of Chemical Technology, Beijing, 100029, People's Republic of China.

Beijing Agro-Biotechnology Research Center, Beijing Key Laboratory of Agricultural Genetic Resources and Biotechnology, Beijing Academy of Agriculture and Forestry Sciences, Haidian District, Beijing, 100097, People's Republic of China.

出版信息

Biodegradation. 2016 Jun;27(2-3):165-78. doi: 10.1007/s10532-016-9764-7. Epub 2016 Apr 28.

Abstract

A solid-phase denitrification (SPD) reactor packed with poly (3-hydroxybutyrate-co-3-hydroxyvalerate) as a carbon source was incorporated into a recirculating aquaculture system (RAS) to remove accumulated nitrate. Bacterial community structures in different parts of the RAS, including biofilter unit, SPD reactor, and culture water, were analyzed using Illumina MiSeq sequencing technology. The data showed that nitrate levels decreased remarkably in the RAS connected with SPD reactor (RAS-DR). In contrast, nitrate levels increased continuously in the conventional RAS without SPD reactor (RAS-CK). Biofilter unit and culture water in RAS-DR developed lower species richness and higher bacterial community diversity than that in RAS-CK. The bacterial community structure of RAS was significantly affected by the SPD process and the changes included an increase in the proportion of Proteobacteria and Firmicutes and a decrease in Nitrospira abundance in RAS-DR. Firmicutes was the most abundant phylum (56.9 %) and mainly consisted of Clostridium sensu stricto (48.3 %) in SPD reactor.

摘要

一个填充聚(3-羟基丁酸酯-co-3-羟基戊酸酯)作为碳源的固相反硝化(SPD)反应器被纳入循环水养殖系统(RAS)以去除积累的硝酸盐。使用Illumina MiSeq测序技术分析了RAS不同部分(包括生物滤池单元、SPD反应器和养殖水)的细菌群落结构。数据表明,与SPD反应器相连的RAS(RAS-DR)中的硝酸盐水平显著降低。相比之下,没有SPD反应器的传统RAS(RAS-CK)中的硝酸盐水平持续升高。与RAS-CK相比,RAS-DR中的生物滤池单元和养殖水的物种丰富度较低,细菌群落多样性较高。RAS的细菌群落结构受到SPD过程的显著影响,变化包括RAS-DR中变形菌门和厚壁菌门的比例增加以及硝化螺旋菌丰度降低。厚壁菌门是SPD反应器中最丰富的门(56.9%),主要由严格意义上的梭菌属(48.3%)组成。

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