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首页> 外文期刊>Applied and Environmental Microbiology >Genetic Variability of the Heme Uptake System among Different Strains of the Fish Pathogen Vibrio anguillarum: Identification of a New Heme Receptor
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Genetic Variability of the Heme Uptake System among Different Strains of the Fish Pathogen Vibrio anguillarum: Identification of a New Heme Receptor

机译:鱼病原体弧菌弧菌不同菌株之间血红素摄取系统的遗传变异:一种新的血红素受体的鉴定。

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The ability to utilize heme compounds as iron sources was investigated in Vibrio anguillarum strains belonging to serotypes O1 to O10. All strains, regardless of their serotype or isolation origin could utilize hemin and hemoglobin as sole iron sources. Similarly, all of the isolates could bind hemin and Congo red, and this binding was mediated by cell envelope proteins. PCR and Southern hybridization were used to assay the occurrence of heme transport genes huvABCD, which have been previously described in serotype O1. Of 23 strains studied, two serotype O3 isolates proved negative for all huvABCD genes, whereas nine strains included in serotypes O2, O3, O4, O6, O7, and O10 tested negative for the outer membrane heme receptor gene huvA. A gene coding for a novel outer membrane heme receptor was cloned and characterized in a V. anguillarum serotype O3 strain lacking huvA. The new heme receptor, named HuvS, showed significant similarity to other outer membrane heme receptors described in Vibrionaceae, but little homology (39%) to HuvA. This heme receptor was present in 9 out of 11 of the V. anguillarum strains that tested negative for HuvA. Furthermore, complementation experiments demonstrated that HuvS could substitute for the HuvA function in Escherichia coli and V. anguillarum mutants. The huvS and huvA sequences alignment, as well as the analysis of their respective upstream and downstream DNA sequences, suggest that horizontal transfer and recombination might be responsible for generating this genetic diversity.
机译:在血型O1至O10的鳗弧菌菌株中研究了利用血红素化合物作为铁源的能力。所有菌株,无论其血清型或分离来源如何,都可以利用血红素和血红蛋白作为唯一的铁源。同样,所有分离株都可以结合血红素和刚果红,这种结合是由细胞包膜蛋白介导的。 PCR和Southern杂交用于分析血红素转运基因huvABCD的发生,该基因先前在血清型O1中已有描述。在研究的23个菌株中,两个血清型O3分离株对所有huvABCD基因均呈阴性,而血清型O2,O3,O4,O6,O7和O10中包括的9个菌株对外膜血红素受体基因huvA呈阴性。克隆了编码新型外膜血红素受体的基因,并在缺乏huvA的鳗弧菌血清型O3菌株中进行了表征。新的血红素受体名为HuvS,与弧菌科中描述的其他外膜血红素受体表现出显着相似性,但与HuvA几乎没有同源性(39%)。该血红素受体存在于11种对HuvA呈阴性的鳗弧菌菌株中的9种。此外,互补实验表明,HuvS可以替代大肠杆菌和鳗弧菌突变体中的HuvA功能。 huvS和huvA序列比对以及对它们各自的上游和下游DNA序列的分析表明,水平转移和重组可能是产生这种遗传多样性的原因。

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