反硝化
好氧反硝化
生物化学
化学
硝化作用
同步硝化反硝化
异养
反硝化细菌
氮气
微生物代谢
氮气循环
微生物学
环境化学
细菌
新陈代谢
生物
遗传学
有机化学
作者
Peng Jin,Yinyan Chen,Rui Yao,Zhanwang Zheng,Qizhen Du
标识
DOI:10.1016/j.jhazmat.2019.03.023
摘要
Here, the draft genome of simultaneous nitrification-denitrification strain (SND) Klebsiella sp. KSND revealed possible existence of genes involved in N-assimilation and -dissimilation pathways. The change levels of genes under defined N-sources were analyzed by Quantitative Real-Time PCR. It suggested that NH4+-assimilation via NADP-glutamate dehydrogenase pathway would occur preferentially. NirBD genes were tightly regulated in a lower level, so that nitrite was rapidly consumed for detoxication by denitrification. Three types of nitrate reductase homologues are surprisingly present in KSND, whereas the dominant nitrate reduction for assimilation and denitrification processes mediates by NapA-type nitrate reductase. Nitric oxide reductase homologues FlRd and FlRd-red provide an adequate capacity for NO detoxification. The recombinant hydroxylamine reductase showed high activity in hydroxylamine to generate ammonium, which might contribute to detoxification mechanism in nitrogen cycling. Overall, this study firstly provides valuable insights into the genes expression and enzyme action, which helps understanding the mechanism of SND processes.
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