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454-Pyrosequencing Analysis of Bacterial Communities from Autotrophic Nitrogen Removal Bioreactors Utilizing Universal Primers: Effect of Annealing Temperature

机译:利用通用引物从自养氮去除生物反应器中细菌群落的454-焦磷酸测序分析:退火温度的影响

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摘要

Identification of anaerobic ammonium oxidizing (anammox) bacteria by molecular tools aimed at the evaluation of bacterial diversity in autotrophic nitrogen removal systems is limited by the difficulty to design universal primers for the Bacteria domain able to amplify the anammox 16S rRNA genes. A metagenomic analysis (pyrosequencing) of total bacterial diversity including anammox population in five autotrophic nitrogen removal technologies, two bench-scale models (MBR and Low Temperature CANON) and three full-scale bioreactors (anammox, CANON, and DEMON), was successfully carried out by optimization of primer selection and PCR conditions (annealing temperature). The universal primer 530F was identified as the best candidate for total bacteria and anammox bacteria diversity coverage. Salt-adjusted optimum annealing temperature of primer 530F was calculated (47°C) and hence a range of annealing temperatures of 44–49°C was tested. Pyrosequencing data showed that annealing temperature of 45°C yielded the best results in terms of species richness and diversity for all bioreactors analyzed.
机译:旨在评估自养脱氮系统中细菌多样性的分子工具对厌氧铵氧化(anammox)细菌的鉴定受到难以设计能够扩增厌氧氨氧化菌16S rRNA基因的细菌域通用引物的限制。成功进行了五种自养氮去除技术,两个台式规模的模型(MBR和低温CANON)和三个全规模生物反应器(厌氧菌,CANON和DEMON)的包括细菌总数在内的总细菌多样性的宏基因组分析(焦磷酸测序)。通过优化引物选择和PCR条件(退火温度)筛选出来。通用引物530F被确定为总细菌和厌氧氨氧化细菌多样性覆盖的最佳候选者。计算了底漆530F的盐调节最佳退火温度(47°C),因此测试了44-49°C的退火温度范围。焦磷酸测序数据表明,对于所有分析的生物反应器,在物种丰富度和多样性方面,45°C的退火温度可获得最佳结果。

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