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The phylogeny of the genus Nitrobacter based on comparative rep-PCR, 16S rRNA and nitrite oxidoreductase gene sequence analysis

机译:基于比较rep-PCR,16S rRNA和亚硝酸盐氧化还原酶基因序列分析的硝化细菌属系统发育

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摘要

Strains of Nitrobacter mediate the second step in the nitrification process by oxidizing nitrite to nitrate. The phylogenetic diversity of the genus is currently not well investigated. In this study, a rep-PCR profile and the nearly complete 16S rRNA gene sequence of 30 strains, comprising a wide physiological as well as ecological diversity and encompassing representatives of the four species, were determined. The sequence diversity of the 16S rRNA gene between different species was low, indicating the need for additional phylogenetic markers. Therefore, primers were developed for amplifying the complete nxrX gene and a 380bp fragment of the nxrB1 gene, which are both genes involved in the nitrite oxidation process. These genes confirmed the division into phylogenetic groups revealed by the 16S rRNA gene but showed a better discriminatory power. They can be a valuable additional tool for phylogenetic analysis within the genus Nitrobacter and can assist in the identification of new Nitrobacter isolates.
机译:硝化细菌菌株通过将亚硝酸盐氧化为硝酸盐来介导硝化过程的第二步。该属的系统发育多样性目前尚未得到很好的研究。在这项研究中,确定了rep-PCR图谱和30个菌株的近乎完整的16S rRNA基因序列,包括广泛的生理和生态多样性,并涵盖了这四个物种的代表。不同物种之间的16S rRNA基因的序列多样性低,表明需要其他系统发育标记。因此,开发了用于扩增完整的nxrX基因和nxrB1基因的380bp片段的引物,这两个基因都参与亚硝酸盐氧化过程。这些基因证实了由16S rRNA基因揭示的系统发育组的划分,但显示出更好的区分能力。它们可以成为硝化细菌属内系统发育分析的有价值的附加工具,并有助于鉴定新的硝化细菌分离物。

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