Zhang Yang, Wang Xiujie, Wang Weiqi, Sun Zhitao, Li Jun
The College of Architecture and Civil Engineering, Beijing University of Technology, Beijing 100124, People's Republic of China.
R Soc Open Sci. 2019 Dec 4;6(12):191275. doi: 10.1098/rsos.191275. eCollection 2019 Dec.
A denitrifying strain ZY04 with a high nitrite-accumulating rate was isolated and purified from activated sludge in a laboratory-scale A/O reactor. The strain was characterized and identified as by 16S rDNA phylogenetic analysis. The sequences of the key functional genes (, , ) involved in partial denitrification were amplified via polymerase chain reaction, which provided a basis for exploring gene expression. The effects of different environmental factors (C/N ratio, pH and temperature) on the partial denitrification performance and transcriptional levels of the functional genes during the logarithmic growth phase were investigated by batch experiments. The results showed that the partial denitrification performance was optimal when the C/N ratio was 5, the pH value was 6-8 and the temperature was 25°C. The gene expression during the logarithmic growth phase indicated the good performance of partial denitrification under different environmental conditions. All three functional genes exhibited the highest expression levels at 25°C. The results of inhibitory kinetics analysis revealed that three biokinetic models (Aiba, Edwards and Andrews) simulated the growth pattern of strain ZY04 inhibited by a single substrate (nitrate or sodium acetate) well. In the double-substrate inhibitory model, five models of nine combinations successfully fitted the growth characteristics of the strain affected by the double substrate of nitrate and sodium acetate. The relevant semi-saturation parameters and substrate inhibition parameters were obtained, and the correlation coefficient ( ) reached 98%.
从实验室规模的A/O反应器的活性污泥中分离并纯化出一株具有高亚硝酸盐积累率的反硝化菌株ZY04。通过16S rDNA系统发育分析对该菌株进行了表征和鉴定。通过聚合酶链反应扩增了参与部分反硝化的关键功能基因( 、 、 )的序列,为探索基因表达提供了依据。通过批次实验研究了不同环境因素(碳氮比、pH值和温度)对对数生长期部分反硝化性能和功能基因转录水平的影响。结果表明,当碳氮比为5、pH值为6 - 8且温度为25℃时,部分反硝化性能最佳。对数生长期的基因表达表明在不同环境条件下部分反硝化性能良好。所有三个功能基因在25℃时均表现出最高表达水平。抑制动力学分析结果表明,三种生物动力学模型(相羽不二雄模型、爱德华兹模型和安德鲁斯模型)能很好地模拟单一底物(硝酸盐或乙酸钠)抑制下菌株ZY04的生长模式。在双底物抑制模型中,九种组合中的五种模型成功拟合了受硝酸盐和乙酸钠双底物影响的菌株生长特性。获得了相关的半饱和参数和底物抑制参数,相关系数( )达到98%。