Long-term serial culture of Piscirickettsia salmonis leads to a genomic and transcriptomic reorganization affecting bacterial in vitro virulence
收藏DataCite Commons2020-08-25 更新2024-07-28 收录
下载链接:
https://figshare.com/articles/Long-term_serial_culture_of_Piscirickettsia_salmonis_leads_to_a_genomic_and_transcriptomic_reorganization_affecting_bacterial_in_vitro_virulence/12047238/1
下载链接
链接失效反馈官方服务:
资源简介:
The propagation of intracellular bacteria in culture mediums implies physiological adaptation to an artificial environment. If these conditions are persistent enough time, a permanent adaptation to the new environment can be expected. This study aimed to explore the genomic and transcriptomic rearrangements that the intracellular bacterium <i>Piscirickettsia salmoni</i>s undergo during a long-term serial culture experiment and the potential impact on virulence. Here, PacBio and Illumina sequencing were conducted after 200 passages (~2 years) of <i>P. salmonis</i> in a cell-free culture medium. The results evidenced genomic rearrangements of the <i>P. salmonis</i> genome during the continuous culture period, where a chromosome segment of 35 Kb was translocated from the P0 bacterial chromosome to a P200 plasmid. Notably, the genomic structure of this segment revealed the presence of the Dot/Icm secretion system, which has been previously associated with <i>P. salmonis</i> pathogenesis. On the other hand, a reduced transcriptomic response was evidenced in <i>P. salmonis</i> after 200 passages affecting the expression of different pathways including iron acquisition and metabolism. Furthermore, <i>in vitro</i> infections revealed that after 200 passages <i>P. salmonis</i> is less capable of generating cytopathic effects than the original P0 form. Overall, our results evidence that the continuous propagation of <i>P. salmonis</i> leads to genomic and transcriptomic rearrangement that impact on bacterial virulence. These results open new perspectives about the adaptation of intracellular bacteria to artificial culture conditions, providing useful information to develop live attenuated vaccines against <i>P. salmonis</i> in salmon aquaculture.
提供机构:
figshare
创建时间:
2020-03-30



