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Evidence of the Presence of a Functional Dot/Icm Type IV-B Secretion System in the Fish Bacterial Pathogen Piscirickettsia salmonis

机译:鱼细菌性病原体鲑鱼立克次氏体中存在功能性点/ Icm IV-B型分泌系统的证据

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摘要

Piscirickettsia salmonis is a fish bacterial pathogen that has severely challenged the sustainability of the Chilean salmon industry since its appearance in 1989. As this Gram-negative bacterium has been poorly characterized, relevant aspects of its life cycle, virulence and pathogenesis must be identified in order to properly design prophylactic procedures. This report provides evidence of the functional presence in P. salmonis of four genes homologous to those described for Dot/Icm Type IV Secretion Systems. The Dot/Icm System, the major virulence mechanism of phylogenetically related pathogens Legionella pneumophila and Coxiella burnetii, is responsible for their intracellular survival and multiplication, conditions that may also apply to P. salmonis. Our results demonstrate that the four P. salmonis dot/icm homologues (dotB, dotA, icmK and icmE) are expressed both during in vitro tissue culture cells infection and growing in cell-free media, suggestive of their putative constitutive expression. Additionally, as it happens in other referential bacterial systems, temporal acidification of cell-free media results in over expression of all four P. salmonis genes, a well-known strategy by which SSTIV-containing bacteria inhibit phagosome-lysosome fusion to survive. These findings are very important to understand the virulence mechanisms of P. salmonis in order to design new prophylactic alternatives to control the disease.
机译:自1989年出现以来,鲑鱼皮立克次体是一种鱼类细菌病原体,已严重挑战了智利鲑鱼产业的可持续性。由于这种革兰氏阴性细菌的特征较差,因此必须对其生命周期,毒力和致病性的相关方面进行鉴定。适当设计预防程序。该报告提供了鲑鱼假单胞菌中四个与Dot / Icm IV型分泌系统描述的基因同源的基因的功能证据。 Dot / Icm系统是系统发育相关病原体肺炎军团菌和小肠柯氏杆菌的主要毒力机制,其细胞内存活和繁殖负责,这些条件也可能适用于鲑鱼假单胞菌。我们的结果表明,在体外组织培养细胞感染过程中和在无细胞培养基中生长过程中,均表达了鲑鱼假单胞菌的四个点/ icm同源物(dotB,dotA,icmK和icmE),提示它们可能是组成型表达。此外,正如在其他参考细菌系统中发生的那样,无细胞培养基的暂时酸化会导致所有四个鲑鱼假单胞菌基因的过度表达,这是一种众所周知的策略,含SSTIV的细菌通过抑制吞噬体-溶酶体融合来生存。这些发现对于了解鲑鱼假单胞菌的毒力机制,以设计新的预防性疾病控制方法非常重要。

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