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Determination of ammonia-oxidizing bacteria based on time-resolved fluorescence and tandem probe

机译:基于时间分辨荧光和串联探针的氨氧化细菌的测定

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摘要

To study the ecology of ammonia-oxidizing bacteria (AOB), quantitative techniques are essential. In this report, the authors introduced an innovative method based on time-resolved fluorescence to quantify AOB as a representative of the major functional microorganisms in sewage water treatment. A bifunctional europium complex with the characteristics of long lifetime and intense luminescence was used as labels in the experiments. In the detection, the capture probe and dye-labeled reporter probe could form a two-probe tandem with the target sequence, and the determination of target DNA was done by monitoring the time-resolved fluorescence signals of europium complex-labeled reporter probe left on the glass slide surface. The experiment conditions consisting of concentration of capture probe, hybridization temperature, hybridization time and washing time were optimized. This method presents satisfactory specificity to common bacteria such as Nitrobacter winogradskyi, Escherichia coli and Paenibacillus polymyxa. The detection limit was 3.65 × 10 ~(-11) mol L ~(-1). This detection system enables us to rapidly and sensitively analyze the microbial population variety in sewage water treatment.
机译:为了研究氨氧化细菌(AOB)的生态学,定量技术至关重要。在本报告中,作者介绍了一种基于时间分辨荧光的创新方法,以量化AOB作为污水处理中主要功能微生物的代表。实验中使用具有长寿命和强发光特性的双功能functional络合物作为标记。在检测中,捕获探针和染料标记的报告探针可以与目标序列形成两个探针串联,通过监测留在complex上的complex复合标记的报告探针的时间分辨荧光信号来确定目标DNA。玻璃载玻片表面。优化了由捕获探针浓度,杂交温度,杂交时间和洗涤时间组成的实验条件。该方法对常见细菌,如白杆菌硝化杆菌,大肠埃希氏菌和多粘芽孢杆菌具有令人满意的特异性。检出限为3.65×10〜(-11)mol L〜(-1)。该检测系统使我们能够快速灵敏地分析污水处理中的微生物种群多样性。

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