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Acclimation and activity of ammonia-oxidizing bacteria with respect to variations in zinc concentration, temperature, and microbial population

机译:氨氧化细菌对锌浓度,温度和微生物种群变化的适应和活性

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摘要

Activity of ammonia-oxidizing bacteria (AOB) to simultaneous variation in Zn~(2+) concentration (0.01-3.5mg/L), temperature (23-33°C), and AOB concentration (3-30×10~6gene copies/mL) in a steel industry wastewater treatment plant was evaluated. Two equations were developed to describe the lag period (i.e., AOB acclimation) and ammonia oxidation rate (i.e., growth of the AOB) depending on the variables. AOB concentration and temperature both had significant effects on lag period and the ammonia oxidation rate. Zn~(2+) concentration only had a significant effect on ammonia oxidation rate at 5% α-level. There was a significant interaction between AOB concentration and temperature for both lag period and ammonia oxidation rate. The effects of the variables were not significant when AOB concentration was higher than 2.0×10~7copies/mL. There was no visible shift or changes in AOB communities based on DGGE analysis with amoA gene primers.
机译:氨氧化细菌(AOB)对Zn〜(2+)浓度(0.01-3.5mg / L),温度(23-33°C)和AOB浓度(3-30×10〜6基因拷贝)同时变化的活性/ mL)在钢铁工业废水处理厂进行了评估。根据变量,开发了两个方程式来描述滞后时间(即AOB适应)和氨氧化速率(即AOB的生长)。 AOB浓度和温度均对滞后时间和氨氧化速率有显着影响。 Zn〜(2+)的浓度仅对5%水平的氨氧化速率有显着影响。在滞后期和氨氧化速率上,AOB浓度和温度之间存在显着的相互作用。当AOB浓度高于2.0×10〜7份/ mL时,变量的影响不显着。根据使用amoA基因引物进行的DGGE分析,AOB群落没有明显变化或变化。

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