亚硝基单胞菌
硝化细菌
亚硝酸盐
硝化作用
铵
氨单加氧酶
环境化学
微生物种群生物学
细菌
生物
厌氧氨氧化菌
微生物联合体
硝基螺
化学
微生物学
食品科学
反硝化
硝酸盐
微生物
生态学
反硝化细菌
氮气
遗传学
有机化学
作者
Alireza Neissi,Gholamreza Rafiee,Shadi Rahimi,Hamid Farahmand,Santosh Pandit,Ivan Mijaković
出处
期刊:Chemosphere
[Elsevier BV]
日期:2022-02-03
卷期号:295: 133811-133811
被引量:23
标识
DOI:10.1016/j.chemosphere.2022.133811
摘要
The aim of this study was the enrichment of high-performance microbial communities in biofilters for removal of ammonium and nitrite from aquaculture water. Ammonium oxidizing bacteria (AOB) and nitrite oxidizing bacteria (NOB) were enriched from different environmental water samples. The microbial communities with higher ammonium and nitrite removal activity were selected and adapted to different temperatures [9 °C, 15 °C, room temperature (25 °C), and 30 °C]. The expression of genes involved in nitrification including ammonia monooxygenase (AMO) and nitrite oxidoreductase (NXR) were measured in temperature-adapted AOB and NOB microbiomes. The microbial species present in the selected microbiomes were identified via 16s rRNA sequencing. The microbial communities containing Nitrosomonas oligotropha and Nitrobacter winogradskyi showed the highest ammonium and nitrite removal activity at all temperatures used for adaptation. Furthermore, the microbial communities do not contain any pathogenic bacteria. They also exhibited the highest expression of AMO and NXR genes. Using the enriched microbial communities, we achieved a 288% and 181% improvement in ammonium and nitrite removal over the commonly used communities in biofilters at 9 °C, respectively. These results suggest that the selected microbiomes allowed for a significant improvement of water quality in a recirculating aquaculture system (RAS).
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