首页> 外文期刊>Annals of microbiology >Identification of alkane monoxygenase genes inAcinetobacter venetianus VE-C3 and analysis of mutants impaired in diesel fuel degradation
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Identification of alkane monoxygenase genes inAcinetobacter venetianus VE-C3 and analysis of mutants impaired in diesel fuel degradation

机译:越南不动杆菌VE-C3中烷烃单加氧酶基因的鉴定及柴油降解中受损突变体的分析

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Cells ofAcinetobacter venetianus strain VE-C3 are able to degrade diesel fuel oil by a complex mechanism requiring the formation of cell aggregates and their further adhesion to fuel oil drops. In this work the biodegradation process inA. venetianus was studied by a combination of genetic, molecular and physiological methods. PCR amplification, sequencing and Southern blot analysis ofalkM andrubA genes coding for the alkane hydroxylase and rubredoxin were carried out. Then, 22 Alk? mutants impaired in diesel fuel degradation were obtained by nitrosoguanidine mutagenesis and characterised by i) growth on alkanes as sole carbon and energy sources, ii) modification of cell electrophoretic properties, and iii) analysis of plasmid content. Data obtained revealed that the genetic determinants for alkane degradation are located on both the chromosome and the two plasmids harboured by VE-C3 strain (pAV1 and pAV2, 11 Kbp and 15 kbp, respectively). This organization of genes coding for alkane monoxygenase complex seems to be similar to the arrangement found in Acinetobacter sp. strains ADP1 and M1, where genes are scattered through the chromosome but, as a novelty, that some genes involved in hydrocarbon degradation are plasmid borne also.
机译:威尼斯不动杆菌菌株VE-C3的细胞能够通过复杂的机制降解柴油燃料,该机制需要形成细胞聚集体并进一步粘附于燃油滴。在这项工作中的生物降解过程。通过遗传学,分子学和生理学方法研究了威尼斯人。对编码烷烃羟化酶和rubredoxin的alkM和rubA基因进行PCR扩增,测序和Southern印迹分析。然后,22 Alk?通过亚硝基胍诱变获得在柴油燃料降解中受损的突变体,其特征在于:i)在烷烃上生长,作为唯一的碳和能源,ii)改变细胞的电泳特性,iii)质粒含量的分析。获得的数据显示,烷烃降解的遗传决定因素位于染色体和VE-C3株所携带的两个质粒(分别为pAV1和pAV2,分别为11 Kbp和15 kbp)上。编码烷烃单加氧酶复合物的基因的这种组织似乎与不动杆菌属中发现的排列相似。 ADP1和M1菌株,其中基因分散在整个染色体上,但是,新颖的是,一些与烃降解有关的基因也被质粒携带。

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