硝化作用
代谢途径
异养
好氧反硝化
反硝化
生物化学
磷
氮气循环
生物
化学
环境化学
微生物学
细菌
氮气
酶
反硝化细菌
遗传学
有机化学
作者
Zuhao Chen,Yongyou Hu,Guanglei Qiu,Donghui Liang,Yiyong Li,Jianhua Cheng,Yuancai Chen,Guobin Wang,Jieyun Xie,Xiaoqiang Zhu
标识
DOI:10.1016/j.biortech.2024.130322
摘要
This study provides for the first time a systematic understanding of Acinetobacter indicus CZH-5 performance, metabolic pathway and genomic characteristics for aerobic nitrogen (N) and phosphorus (P) removal. Acinetobacter indicus CZH-5 showed promising performance in heterotrophic nitrification aerobic denitrification and aerobic phosphorus removal. Under optimal conditions, the maximum ammonia-N, total nitrogen and orthophosphate-P removal efficiencies were 90.17%, 86.33%, and 99.89%, respectively. The wide tolerance range suggests the strong environmental adaptability of the bacteria. The complete genome of this strain was reconstructed. Whole genome annotation was used to re-construct the N and P metabolic pathways, and related intracellular substance metabolic pathways were proposed. The transcription levels of related functional genes and enzyme activities further confirmed these metabolic mechanisms. N removal was achieved via the nitrification–denitrification pathway. Furthermore, CZH-5 exhibited significant aerobic P uptake, with phosphate diesters as the main species of intracellular P.
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