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首页> 外文期刊>Microbiology >alkB Genes of n-Alkane Biodegradation in Thermophilic Hydrocarbon-Oxidizing Bacteria of the Genera Geobacillus, Parageobacillus, and Aeribacillus]]>
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alkB Genes of n-Alkane Biodegradation in Thermophilic Hydrocarbon-Oxidizing Bacteria of the Genera Geobacillus, Parageobacillus, and Aeribacillus]]>

机译:<![CDATA [<重点型=“斜体”> ALKB 基因的<重点=“斜体”> N -alphane生物降解在Genera <重点的嗜热烃氧化细菌中 键入=“斜体”> Geobacillus ,<重点类型=“斜体”> Parageobacillus ,以及<重点类型=“斜体”> Aeribacillus ]]>

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摘要

Analysis of complete genomes of thermophilic bacteria of the genus Geobacillus , oxidizing n -alkanes and crude oil revealed the ladA gene and its homologues. In the genomes of some strains, the ladA gene was not detected, although they were capable of growth on n -alkanes. Cloning with degenerate primers has previously revealed eight homologues of the alkB gene ( alkB -geo1– alkB -geo8) encoding alkane hydroxylases in Geobacillus. In the present work, investigation of the alkB genes of several new strains of thermophilic, hydrocarbon-oxidizing bacilli was carried out. In the clone libraries obtained using degenerate primers for the alkB genes from five strains of the genera Geobacillus , Parageobacillus, and Aeribacillus , mostly the universal homologous genes alkB -geo1 and alkB-geo4 were revealed. Additional PCR amplification with specific primers for each of the eight known alkB homologues revealed the universal homologous genes only in some of the studied strains. A correlation was found between the set of the alkB - geo3 – alkB - geo6 homologus genes from Geobacillus subterraneus strain K amplified with specific primers and the previously revealed a set of these homologous genes transcripted at different cultivation conditions. This correlation may be due to accumulation of the copies of individual homologues under different cultivation conditions, which results in higher sensitivity of specific primers. The least common homologue, alkB - geo7 , which was not detected in the relevant clone libraries, was found in two strains, indicating the possibility of development of more specific primers for amplification of this homologue in order to reveal hydrocarbon-oxidizing bacteria of related genera Geobacillus–Parageobacillus in molecular ecological research.
机译:Geobacillus属嗜热细菌完全基因组分析,氧化N-alkanes和原油显示Lada基因及其同源物。在一些菌株的基因组中,未检测到Lada基因,尽管它们能够在N-alkanes上生长。用堕落引物克隆先前揭示了在Geobacillus中编码烷烃羟基酶的ALKB基因(ALKB -GEO1-ALKB -GEO8)的八种同源物。在本作研究中,进行了几种新的嗜热嗜热溶解芽孢杆菌的碱基因的研究。在使用来自五种Geobacillus,Paragebacillus和Aeribacillus的五种菌株的烷烃基因获得的克隆文库中,主要揭示了通用的同源基因alkb -geo1和alkb-geo4。对于八种已知的烷度同源物中的每一个具有特异性引物的额外PCR扩增仅在一些研究的菌株中揭示了通用同源基因。从Geobacillus底部菌株K与特异性引物扩增的Geobacillus底骨菌株K之间发现了相关性,并且先前揭示了在不同培养条件下转录的一组这些同源基因。这种相关性可能是由于不同培养条件下各种同源物拷贝的积累,这导致特异性引物的敏感性较高。在两个菌株中发现了在相关克隆文库中未检测到的最不常见的同源物,烷基 - Geo7,表明在氧化相关属的烃氧化细菌以扩增这种同源物的更具体引物的可能性麦克风毒素在分子生态研究中。

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