Xiao Yong, Zheng Yue, Wu Song, Yang Zhao-Hui, Zhao Feng
Institute of Urban Environment, Chinese Academy of Sciences, Xiamen, 361021, China,
Microb Ecol. 2015 Apr;69(3):492-9. doi: 10.1007/s00248-014-0492-4. Epub 2014 Sep 12.
Few studies have been conducted to explore the community composition in denitrifying biocathode. Herein, the microbial communities of denitrifying biocathodes yielding current of 1 mA (reactor C1) and 1.5 mA (reactor C2) were characterized by 454 pyrosequencing. The nitrate removal efficiencies in C1 and C2 were about 93 and 85%, respectively. The optimization of data generated high-quality sequences of 18509 in C1 and 14857 in C2. Proteobacteria was the predominant phylum, and Bacteroidetes, Chloroflexi, and Planctomycetes were the subdominant groups. Classes of Alphaproteobacteria, Anaerolineae, and Phycisphaerae may benefit the performance of current production and nitrate removal. Twenty-nine dominant operational taxonomic units (OTUs) accounted for 64 and 65% of sequences in C1 and C2, respectively. A denitrifying pathway was constructed based on the phylogenetic analysis and function inferring of the dominant OTUs. Obviously, the 454 pyrosequencing provided a high-resolution profile of bacteria community in denitrifying biocathode.
很少有研究探索反硝化生物阴极中的群落组成。在此,通过454焦磷酸测序对产生1 mA电流的反硝化生物阴极(反应器C1)和1.5 mA电流的反硝化生物阴极(反应器C2)的微生物群落进行了表征。C1和C2中的硝酸盐去除效率分别约为93%和85%。数据优化产生了C1中18509条和C2中14857条高质量序列。变形菌门是主要的门类,拟杆菌门、绿弯菌门和浮霉菌门是次优势类群。α-变形菌纲、厌氧绳菌纲和球形杆菌纲可能有利于电流产生和硝酸盐去除性能。29个优势操作分类单元(OTU)分别占C1和C2中序列的64%和65%。基于优势OTU的系统发育分析和功能推断构建了一条反硝化途径。显然,454焦磷酸测序提供了反硝化生物阴极中细菌群落的高分辨率概况。