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pAsa5和pAsa8质粒在亚种中的相互作用 。 (你提供的原文似乎不完整,“subsp.”后面缺少具体内容)

Interaction of pAsa5 and pAsa8 Plasmids in subsp. .

作者信息

Marcoux Pierre-Étienne, Girard Sarah B, Fournier Kim C, Tardif Catherine A, Gosselin Ariane, Charette Steve J

机构信息

Institut de Biologie Intégrative et des Systèmes (IBIS), Université Laval, Quebec City, QC G1V 0A6, Canada.

Département de Biochimie, de Microbiologie et de Bio-Informatique, Faculté des Sciences et de Génie, Université Laval, Quebec City, QC G1V 0A6, Canada.

出版信息

Microorganisms. 2023 Nov 2;11(11):2685. doi: 10.3390/microorganisms11112685.

Abstract

The plasmid known as pAsa5 is present in subsp. , a fish pathogen. The pAsa5 plasmid carries genes that are essential for the bacterium's virulence. Recombination events are known to occur in pAsa5, resulting in the loss of certain segments or the acquisition of additional genetic elements. For example, the transposon carried by the large pAsa8 plasmid was found to be inserted into the pAsa5 plasmid in the SHY16-3432 strain, enabling the addition of antibiotic resistance genes to this plasmid, which does not normally possess any. In this study, we present the isolation of additional strains carrying pAsa8. Further analyses of these strains revealed that a fusion between pAsa5 and the complete version of pAsa8 is possible. The pAsa8 transposon insertion in pAsa5 seen in the SHY16-3432 strain appears to be an aberrant event compared to the fusion of the two full-length plasmids. A 22-nucleotide sequence, present in both plasmids, serves as the site for the fusion of the two plasmids. Moreover, it is possible to introduce pAsa8 through conjugation into naive strains of subsp. and once the plasmid is within a new strain, the fusion with pAsa5 is detectable. This study reveals a previously unexplored aspect of pAsa5 plasmid biology, highlighting an additional risk for the spread of antibiotic resistance genes in subsp.

摘要

被称为pAsa5的质粒存在于亚种中,它是一种鱼类病原体。pAsa5质粒携带对该细菌毒力至关重要的基因。已知pAsa5中会发生重组事件,导致某些片段丢失或获得额外的遗传元件。例如,在SHY16 - 3432菌株中发现,大的pAsa8质粒携带的转座子插入到了pAsa5质粒中,使得该质粒能够添加抗生素抗性基因,而它通常并不具备这些基因。在本研究中,我们展示了携带pAsa8的其他菌株的分离。对这些菌株的进一步分析表明,pAsa5与完整版本的pAsa8之间可能发生融合。与两个全长质粒的融合相比,在SHY16 - 3432菌株中看到的pAsa8转座子插入到pAsa5中的情况似乎是一个异常事件。两个质粒中都存在的一个22个核苷酸的序列,作为两个质粒融合的位点。此外,有可能通过接合作用将pAsa8引入亚种的原始菌株中,一旦该质粒进入一个新菌株,就可以检测到它与pAsa5的融合。这项研究揭示了pAsa5质粒生物学中一个以前未被探索的方面,突出了亚种中抗生素抗性基因传播的另一个风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d96/10673383/f4adaa67c48b/microorganisms-11-02685-g001.jpg

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