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首页> 外文期刊>Canadian journal of microbiology >Use of PCR-RFLP for genotyping 16S rRNA and characterizing bacteria cultured from halibut fry
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Use of PCR-RFLP for genotyping 16S rRNA and characterizing bacteria cultured from halibut fry

机译:PCR-RFLP用于16S rRNA基因分型和表征比目鱼苗培养细菌的用途

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摘要

Small subunit ribosomal genes were explored using PCR-RFLP to facilitate the characterization of bacteria cultured from reared fry of the Atlantic halibut (Hippoglossus hippoglossus). Concern has been expressed about pathogen invasion in larvae lacking a counteracting normal flora that may aid the immune system in producing robust noninfected individuals. In this study, pure cultured representatives of normal flora that were previously found to be antagonistic towards a pathogenic Vibrio sp. were subjected to a whole cell PCR protocol amplifying similar to1500 bp of 16S rDNA. Amplified DNA was digested by AluI, BstUI, CfoI, and RsaI, to generate restriction profiles. Before the isolates were characterized, a survey was performed to test the discriminative efficiency of the RFLP. Efficient detection of polymorphism and the resolution of species and subspecies were achieved. Using the RFLP on 103 isolates generated as many as 22 genotypes. Based on the restriction profiles, a taxonomic tree incorporating 19 reference strains was constructed. Partial sequencing found this tree to be dominated by gamma-Proteobacteria in clusters of Vibrio-, Pseudomonas-, and Alteromonas-affiliated species. Only nine isolates fell outside these genera, including the three isolates Shewanella alga, Deleya marina, and Marinomonas protea. These species have not previously been reported as halibut flora. The most frequently isolated genotype resembled Vibrio salmonicida.
机译:使用PCR-RFLP探索小的亚基核糖体基因,以促进表征从大西洋大比目鱼(Hippoglossus hippoglossus)的鱼苗培养的细菌。人们对缺乏抵抗正常菌群的幼虫中的病原体入侵表示担忧,这可能有助于免疫系统产生健壮的未感染个体。在这项研究中,以前发现对病原弧菌具有拮抗作用的正常菌群的纯培养代表。对它们进行全细胞PCR扩增,扩增出类似于1500 bp的16S rDNA。扩增的DNA用AluI,BstUI,CfoI和RsaI消化,以产生限制性酶切图。在鉴定分离物之前,进行了一项调查以测试RFLP的区分效率。高效检测多态性和解决物种和亚种。在103个分离株上使用RFLP产生了多达22个基因型。基于限制图谱,构建了包含19个参考菌株的分类树。部分测序发现这棵树是由弧菌,假单胞菌和链霉菌相关物种簇中的γ-变形杆菌控制的。这些属之外只有9个分离株,包括3个Shewanella alga,Deleya marina和Marinomonas protea分离株。这些物种以前没有被报道为大比目鱼菌群。最常分离的基因型类似于鲑鱼弧菌。

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