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The Type IX Secretion System Is Required for Virulence of the Fish Pathogen Flavobacterium psychrophilum

机译:IX型分泌系统是鱼病原菌毒病术毒力的毒力所必需的

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Flavobacterium psychrophilum causes bacterial cold-water disease in wild and aquaculture-reared fish and is a major problem for salmonid aquaculture. The mechanisms responsible for cold-water disease are not known. It was recently demonstrated that the related fish pathogen, Flavobacterium columnare , requires a functional type IX protein secretion system (T9SS) to cause disease. T9SSs secrete cell surface adhesins, gliding motility proteins, peptidases, and other enzymes, any of which may be virulence factors. The F. psychrophilum genome has genes predicted to encode components of a T9SS. Here, we used a SacB-mediated gene deletion technique recently adapted for use in the Bacteroidetes to delete a core F. psychrophilum T9SS gene, gldN . The Δ gldN mutant cells were deficient for secretion of many proteins in comparison to wild-type cells. Complementation of the mutant with wild-type gldN on a plasmid restored secretion. Compared to wild-type and complemented strains, the Δ gldN mutant was deficient in adhesion, gliding motility, and extracellular proteolytic and hemolytic activities. The Δ gldN mutant exhibited reduced virulence in rainbow trout and complementation restored virulence, suggesting that the T9SS plays an important role in the disease.IMPORTANCE Bacterial cold-water disease, caused by F. psychrophilum , is a major problem for salmonid aquaculture. Little is known regarding the virulence factors involved in this disease, and control measures are inadequate. A targeted gene deletion method was adapted to F. psychrophilum and used to demonstrate the importance of the T9SS in virulence. Proteins secreted by this system are likely virulence factors and targets for the development of control measures.
机译:黄芪心理学术造成野生和水产养殖鱼类的细菌性冷水疾病,是鲑鱼水产养殖的主要问题。不知道负责冷水疾病的机制。最近据证明,相关的鱼病原体,黄酮柱,需​​要功能型IX蛋白质分泌系统(T9S)引起疾病。 T9SSS分泌细胞表面粘附素,滑动运动蛋白质,肽酶和其他酶,其中任何一个都可能是毒力因子。 F.Cechingrophilim Genome具有预测T9SS组件的基因。在此,我们使用最近适用于菌体的SACB介导的基因缺失技术,以删除核心F.Scasstrophilum T9SS基因,GLDN。与野生型细胞相比,δGLDN突变细胞缺乏许多蛋白质的分泌。突变体与野生型GLDN对质粒恢复分泌的互补。与野生型和互补菌株相比,δGLDN突变体缺乏粘附,滑动运动和细胞外蛋白水解和溶血活性。 δGLDN突变体表现出虹鳟鱼和互补毒力的毒力减少,表明T9S在疾病中起重要作用。Portance患有F.Custcrophilum引起的细菌性冷水疾病是Salmonid水产养殖的主要问题。关于这种疾病所涉及的毒力因子,对控制措施不充分的令人着迷。靶向基因缺失方法适用于F.Coscrophilum,并用于证明T9S在毒力中的重要性。该系统分泌的蛋白质可能是毒力因子和控制措施发展的目标。

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