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Identification and monitoring of nitrification and denitrification genes in Klebsiella pneumoniae EGD-HP19-C for its ability to perform heterotrophic nitrification and aerobic denitrification

机译:鉴定和监测肺炎克雷伯菌EGD-HP19-C的硝化和反硝化基因进行异养硝化和好氧反硝化的能力

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Microbes capable of performing heterotrophic nitrification and aerobic denitrification simultaneously have application in nitrogen level management in effluent treatment plants. Klebsiella pneumoniae EGD-HP19-C is a metabolically versatile bacterium capable of utilising NH3-N, NO2-N and NO3-N as sole sources of nitrogen. The annotation was done for the genes involved in N-assimilation and N-dissimilation pathways from the draft genome sequences of this bacterium (NCBI GenBank accession no. AUTW02000000.1). The sequence data also suggested possible existence of plasmid associated with this bacterium. Multiple gene sequence alignments of glutamine synthetase (gln), hydroxylamine reductase (har), nitrite reductase (nir), nitric oxide reductase (nor), assimilatory nitrate reductase (nas) and respiratory nitrate reductase (nar) genes from EGD-HP19-C genome were performed to compare sequence identities with that of closely related bacterial species. The metabolic pathways were mapped using KAAS and 3D structures for representative enzyme sub-units were also elucidated. The study suggested that the organism, though it has incomplete nitrification and denitrification pathways still removes the inorganic nitrogen content from the system via ammonification reaction.
机译:能够同时进行异养硝化和好氧反硝化的微生物已应用于污水处理厂的氮水平管理中。肺炎克雷伯氏菌EGD-HP19-C是一种代谢通用的细菌,能够利用NH3-N,NO2-N和NO3-N作为唯一的氮源。对来自该细菌的基因组序列草案的N同化和N异化途径涉及的基因进行了注释(NCBI GenBank登录号AUTW02000000.1)。序列数据还暗示可能存在与此细菌相关的质粒。来自EGD-HP19-C的谷氨酰胺合成酶(gln),羟胺还原酶(har),亚硝酸还原酶(nir),一氧化氮还原酶(nor),同化硝酸还原酶(nas)和呼吸硝酸还原酶(nar)基因的多个基因序列比对进行基因组比较序列同一性与密切相关的细菌物种。使用KAAS对代谢途径进行了定位,并阐明了3D结构,以阐明代表性的酶亚基。研究表明,尽管有机体的硝化和反硝化途径不完全,但仍然可以通过氨化反应从系统中去除无机氮。

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