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首页> 外文期刊>Journal of Aquatic Animal Health >Polymerase chain reaction amplification of repetitive intergenic consensus and repetitive extragenic palindromic sequences for molecular typing of Pseudomonas anguilliseptica and Aeromonas salmonicida.
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Polymerase chain reaction amplification of repetitive intergenic consensus and repetitive extragenic palindromic sequences for molecular typing of Pseudomonas anguilliseptica and Aeromonas salmonicida.

机译:聚合酶链反应扩增重复的基因间共有和重复的基因外回文序列,用于假单胞菌和鲑气单胞菌的分子分型。

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摘要

The aim of this study was to evaluate the use of two molecular techniques, repetitive extragenic palindromic polymerase chain reaction (REP-PCR) and repetitive intergenic consensus PCR (ERIC-PCR), as epidemiological tools with which to discriminate among genetically distinct strains within two bacterial fish pathogens, Pseudomonas anguilliseptica and Aeromonas salmonicida. A total of 30 A. salmonicida and 52 P. anguilliseptica were analyzed. For P. anguilliseptica, three different major fingerprints were obtained with both techniques, which defined three genomic groups: one was composed of strains isolated from eels Anguilla spp., the second of strains from turbot Scophthalmus maximus and blackspot seabream (also known as red seabream) Pagellus bogaraveo, and the third of strains from other fish species, such as gilthead seabream (also known as gilthead bream) Sparus auratus, sea bass Dicentrarchus labrax (also known as European bass Morone labrax), and salmonids. In the case ofA. salmonicida, promising results were obtained with both techniques for subspecies differentiation. Thus, two genomic profiles were obtained by ERIC-PCR. The first profile consisted of A. salmonicida subsp. salmonicida strains isolated from the different hosts. The second profile was composed of two A. salmonicida subsp. masoucida and one A. salmonicida subsp. achromogenes. Using REP-PCR, three genotypes were obtained within this pathogen that were related to the diverse subspecies analyzed. In summary, both methodologies are useful for typing distinct strains associated with different host species and therefore are helpful in epidemiological studies of P. anguilliseptica. In contrast, in the case of A. salmonicida, more studies are needed to determine their utility in discriminating the subspecies salmonicida from the other two subspecies.
机译:这项研究的目的是评估两种分子技术的使用,即重复性外源性回文聚合酶链反应(REP-PCR)和重复性基因间共有PCR(ERIC-PCR),作为流行病学工具,可用来区分两个内在遗传学上不同的菌株细菌鱼病原体,假单胞菌和鲑鱼气单胞菌。总共分析了30株鲑鱼曲霉和52株鳗曲霉。两种方法均获得了对鳗疫杆菌的三种主要指纹图谱,这些指纹图谱定义了三个基因组组:一个是从鳗鳗中分离的菌株组成的,第二种是大菱S和黑点鲷(又称为红鲷)的菌株。 )Pagellus bogaraveo,以及其他鱼类中的三分之一,例如金头鲷(也称金头鲷)Sparus auratus,鲈鱼Dicentrarchus labrax(也称欧洲鲈鱼Morone labrax)和鲑鱼。在A的情况下。鲑鱼科,两种亚种分化技术均获得了可喜的结果。因此,通过ERIC-PCR获得了两个基因组图谱。第一个配置文件由沙门氏菌亚种组成。从不同宿主分离的沙门氏菌菌株。第二个配置文件由两个沙门氏菌亚种组成。 masoucida和一个沙门氏菌亚种。生色团。使用REP-PCR,在该病原体中获得了与不同亚种有关的三种基因型。综上所述,两种方法都可用于分型与不同宿主物种相关的不同菌株,因此有助于对脓毒症的流行病学研究。相反,就沙门氏菌而言,需要更多的研究来确定其在将沙门氏菌亚种与其他两个亚种区分开的效用。

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