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Detection and quantification of expression of amoA by competitive reverse transcription-PCR

机译:竞争性逆转录PCR检测和定量amoA表达

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Ammonia oxidation by chemolithoautotrophic ammonia-oxidizing bacteria is an important step in the biological nitrogen removal process. The first conversion step, the oxidation of ammonia to hydroxylamine is catalyzed by ammonia monooxygenase (AMO). To investigate the activity of ammonia oxidation, mRNA (designated as amoA) encoding a subunit of AMO was quantified by competitive reverse transcription (RT)-PCR. As a result, it was possible to detect and quantify amoA expression in cultured Nitrosomonas europaea and even complex microbial communities such as nitrifying bacterial aggregates by competitive RT-PCR. It was estimated that amoA concentration in cultured N. europaea was 2.3 x 10(8) copies.ml(-1). Additionally, it was calculated that the copy number of amoA in nitrifying bacterial aggregates was 1.0 x 10(12) copies.ml(-1) (5.1 x 10(10) copies.mg(-1).dry weight). On the other hand, amoA expression in the natural activated sludge in a household Gappei-Johkaso was undetectable, whereas 16S rRNA of ammonia-oxidizing bacteria was detected by RT-PCR. Then, four days cultivation of this sludge in inorganic artificial wastewater resulted in increasing amoA expression to a quantifiable amount by competitive RT-PCR. In conclusion, the competitive RT-PCR was effective to investigate the expression of amoA as an indicator of ammonia oxidation activity by autotrophic ammonia-oxidizing bacteria. [References: 12]
机译:化学自养型氨氧化细菌的氨氧化是生物脱氮过程中的重要步骤。第一步是通过氨单加氧酶(AMO)催化将氨氧化为羟胺。为了研究氨氧化的活性,通过竞争性逆转录(RT)-PCR对编码AMO亚基的mRNA(称为amoA)进行了定量。结果,可以通过竞争性RT-PCR检测和定量培养的欧洲硝化单胞菌甚至复杂的微生物群落(例如硝化细菌聚集体)中的amoA表达。据估计,培养的欧洲猪笼草的amoA浓度为2.3 x 10(8)个拷贝。ml(-1)。另外,经计算,硝化细菌聚集体中amoA的拷贝数为1.0×10(12)拷贝·ml(-1)(5.1×10(10)拷贝·mg(-1)·干重)。另一方面,在家庭Gappei-Johkaso的天然活性污泥中无法检测到amoA表达,而通过RT-PCR检测到氨氧化细菌的16S rRNA。然后,将这种污泥在无机人工废水中培养四天,通过竞争性RT-PCR将amoA表达增加到可量化的水平。总之,竞争性RT-PCR可有效研究amoa的表达,以作为自养氨氧化细菌氨氧化活性的指标。 [参考:12]

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