首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Quantitative Detection of the nosZ Gene Encoding Nitrous Oxide Reductase and Comparison of the Abundances of 16S rRNA narG nirK and nosZ Genes in Soils
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Quantitative Detection of the nosZ Gene Encoding Nitrous Oxide Reductase and Comparison of the Abundances of 16S rRNA narG nirK and nosZ Genes in Soils

机译:定量检测nosZ基因编码一氧化二氮还原酶以及比较土壤中16S rRNAnarGnirK和nosZ基因的丰度

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摘要

Nitrous oxide (N2O) is an important greenhouse gas in the troposphere controlling ozone concentration in the stratosphere through nitric oxide production. In order to quantify bacteria capable of N2O reduction, we developed a SYBR green quantitative real-time PCR assay targeting the nosZ gene encoding the catalytic subunit of the nitrous oxide reductase. Two independent sets of nosZ primers flanking the nosZ fragment previously used in diversity studies were designed and tested (K. Kloos, A. Mergel, C. Rösch, and H. Bothe, Aust. J. Plant Physiol. 28:991-998, 2001). The utility of these real-time PCR assays was demonstrated by quantifying the nosZ gene present in six different soils. Detection limits were between 101 and 102 target molecules per reaction for all assays. Sequence analysis of 128 cloned quantitative PCR products confirmed the specificity of the designed primers. The abundance of nosZ genes ranged from 105 to 107 target copies g−1 of dry soil, whereas genes for 16S rRNA were found at 108 to 109 target copies g−1 of dry soil. The abundance of narG and nirK genes was within the upper and lower limits of the 16S rRNA and nosZ gene copy numbers. The two sets of nosZ primers gave similar gene copy numbers for all tested soils. The maximum abundance of nosZ and nirK relative to 16S rRNA was 5 to 6%, confirming the low proportion of denitrifiers to total bacteria in soils.
机译:一氧化二氮(N2O)是对流层中重要的温室气体,通过产生一氧化氮来控制平流层中的臭氧浓度。为了量化能够还原N2O的细菌,我们针对编码一氧化二氮还原酶催化亚基的nosZ基因开发了SYBR绿色实时荧光定量PCR检测方法。设计并测试了之前在多样性研究中使用的位于nosZ片段侧翼的两套独立的nosZ引物(K. Kloos,A。Mergel,C。Rösch和H. Bothe,Aust。J. Plant Physiol。28:991-998, 2001)。通过量化存在于六种不同土壤中的nosZ基因,证明了这些实时PCR分析的实用性。对于所有测定,每个反应的检出限在10 1 和10 2 个目标分子之间。对128个克隆的定量PCR产物的序列分析证实了设计引物的特异性。在干燥土壤中,nosZ基因的丰度范围从10 5 到10 7 目标拷贝g -1 ,而16S rRNA的基因位于10 8 到10 9 目标副本g -1 干燥土壤。 narG和nirK基因的丰度在16S rRNA和nosZ基因拷贝数的上限和下限之内。两组nosZ引物对所有测试土壤均给出了相似的基因拷贝数。相对于16S rRNA,nosZ和nirK的最大丰度为5%到6%,这证实了反硝化剂在土壤中总细菌中的比例很低。

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