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首页> 外文期刊>Water Research >Discovery and metagenomic analysis of an anammox bacterial enrichment related to Candidatus 'Brocadia caroliniensis' in a full-scale glycerol-fed nitritation-denitritation separate centrate treatment process
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Discovery and metagenomic analysis of an anammox bacterial enrichment related to Candidatus 'Brocadia caroliniensis' in a full-scale glycerol-fed nitritation-denitritation separate centrate treatment process

机译:在由甘油喂养的硝化-硝化分离离心分离液全处理过程中发现与念珠菌“卡洛迪亚氏菌”相关的厌氧细菌富集和宏基因组学分析

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A distinctive red biofilm was observed in a glycerol-fed digester liquid effluent treatment process coupling partial nitrification (nitritation) and partial denitrification (denitritation) processes. Based on initial phylogenetic screening using 16S rRNA clone libraries and quantitative polymerase chain reaction, the biofilm was enriched in novel anaerobic ammonium oxidizing bacteria (AMX/anammox) closely related to Candidatus "Brocadia caroliniensis". The metabolic functionality of the C. "Brocadia caroliniensis" enrichment was further explored using high-throughput sequencing and de novo metagenome assembly. The population anammox genome that was binned from the metagenome consisted of 209 contigs with a total of 3.73 Mbp consensus sequences having 43.3% GC content, and 27.4 average coverage depth. The assembled metagenome bin was comprised of 3582 open reading frames (ORFs). Based on 16S rRNA similarity the binned metagenome was closely related with Candidatus "Brocadia caroliniensis", Candidatus "Brocadia fulgida", planctomycete KSU-1, and Candidatus "Kuenenia stuttgartiensis" with 99%, 96%, 92% and 93% similarity, respectively. Essential genes in anammox metabolic functions including ammonium and nitrite transport, hydrazine synthesis, electron transfer for catabolism, and inorganic carbon fixation, among several other anabolic pathways, were also observed in the population genome of the C "Brocadia caroliniensis" related enrichment. Our results demonstrate the wider profusion of anammox bacteria in engineered nitrogen removal systems than expected. The utility of metagenomics approaches to deciphering such novel functionality in these systems is also highlighted. (C) 2017 Published by Elsevier Ltd.
机译:在甘油供料的消化器液体出水处理过程中,结合部分硝化(硝化)和部分反硝化(反硝化)过程,观察到了独特的红色生物膜。基于初步的系统发育筛选,使用16S rRNA克隆文库和定量聚合酶链反应,生物膜中富含与念珠菌“卡罗氏杆菌”密切相关的新型厌氧铵氧化细菌(AMX / anammox)。使用高通量测序和从头基因组组装,进一步探索了C.“ Brocadia caroliniensis”富集的代谢功能。从元基因组分装的种群厌氧菌基因组由209个重叠群组成,共有3.73 Mbp共有序列,GC含量为43.3%,平均覆盖深度为27.4。组装的元基因组箱由3582个开放阅读框(ORF)组成。基于16S rRNA的相似性,装箱的基因组与念珠菌“ Brocadia caroliniensis”,念珠菌“ Brocadia fulgida”,念珠菌KSU-1和念珠菌“ Kuenenia stuttgartiensis”密切相关,分别具有99%,96%,92%和93%的相似性。 。厌氧氨氧化代谢功能中的重要基因,包括铵和亚硝酸盐的转运,肼的合成,分解代谢的电子转移和无机碳固定,以及其他几种合成代谢途径,也在“ C.Brocadia caroliniensis”相关的种群基因组中被观察到。我们的结果表明,在工程脱氮系统中厌氧菌的扩散比预期的要广泛。还强调了宏基因组学方法在这些系统中破译这种新颖功能的实用性。 (C)2017由Elsevier Ltd.发布

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