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Genetic diversity analysis of isolates belonging to the Photobacterium phosphoreum species group collected from salmon products using AFLP fingerprinting

机译:使用AFLP指纹图谱从鲑鱼产品中收集的属于发光细菌物种的分离株的遗传多样性分析

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摘要

An accurate amplified fragment length polymorphism (AFLP) method, including three primer sets for the selective amplification step, was developed to display the phylogenetic position of Photobacterium isolates collected from salmon products. This method was efficient for discriminating the three species Photobacterium phosphoreum, Photobacterium iliopiscarium and Photobacterium kishitanii, until now indistinctly gathered in the P. phosphoreum species group known to be strongly responsible for seafood spoilage. The AFLP fingerprints enabled the isolates to be separated into two main clusters that, according to the type strains, were assigned to the two species P. phosphoreum and P. iliopiscarium. P. kishitanii was not found in the collection. The accuracy of the method was validated by using gyrB-gene sequencing and luxA-gene PCR amplification, which confirmed the species delineation. Most of the isolates of each species were clonally distinct and even those that were isolated from the same source showed some diversity. Moreover, this AFLP method may be an excellent tool for genotyping isolates in bacterial communities and for clarifying our knowledge of the role of the different members of the Photobacterium species group in seafood spoilage. (C) 2015 Elsevier B.V. All rights reserved.
机译:开发了一种精确的扩增片段长度多态性(AFLP)方法,包括用于选择性扩增步骤的三个引物对,以显示从鲑鱼产品中收集的细菌分离株的系统发生位置。这种方法有效地区分了三种细菌,例如:光致细菌、,光细菌和奇异细菌,直到现在仍不清楚地归因于造成海鲜变质的磷光菌物种组中。 AFLP指纹图谱可将分离物分为两个主要簇,根据菌株的类型将其分为两个物种:P。磷和P. iliopiscarium。未在集合中找到kishitanii。通过使用gyrB基因测序和luxA基因PCR扩增验证了该方法的准确性,证实了物种的描述。每个物种的大多数分离株在克隆上是不同的,甚至从同一来源分离的分离株也显示出一定的多样性。此外,这种AFLP方法可能是一种用于对细菌群落中的分离株进行基因分型并阐明我们对光细菌物种群中不同成员在海鲜变质中的作用的了解的极好的工具。 (C)2015 Elsevier B.V.保留所有权利。

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