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Identification of Genes Preferentially Expressed by Highly Virulent Piscine Streptococcus agalactiae upon Interaction with Macrophages

机译:与巨噬细胞相互作用时高毒力无性链球菌无性系优先表达的基因的鉴定

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摘要

Streptococcus agalactiae, long recognized as a mammalian pathogen, is an emerging concern with regard to fish. In this study, we used a mouse model and in vitro cell infection to evaluate the pathogenetic characteristics of S. agalactiae GD201008-001, isolated from tilapia in China. This bacterium was found to be highly virulent and capable of inducing brain damage by migrating into the brain by crossing the blood–brain barrier (BBB). The phagocytosis assays indicated that this bacterium could be internalized by murine macrophages and survive intracellularly for more than 24 h, inducing injury to macrophages. Further, selective capture of transcribed sequences (SCOTS) was used to investigate microbial gene expression associated with intracellular survival. This positive cDNA selection technique identified 60 distinct genes that could be characterized into 6 functional categories. More than 50% of the differentially expressed genes were involved in metabolic adaptation. Some genes have previously been described as associated with virulence in other bacteria, and four showed no significant similarities to any other previously described genes. This study constitutes the first step in further gene expression analyses that will lead to a better understanding of the molecular mechanisms used by S. agalactiae to survive in macrophages and to cross the BBB.
机译:无乳链球菌长期以来被认为是哺乳动物病原体,对鱼类是一个新的关注点。在这项研究中,我们使用小鼠模型和体外细胞感染来评估从中国罗非鱼中分离出的无乳链球菌GD201008-001的致病特征。该细菌被发现具有高毒性,能够通过穿越血脑屏障(BBB)迁移到大脑中而引起脑损伤。吞噬作用分析表明该细菌可被鼠巨噬细胞内在化并在细胞内存活超过24小时,从而诱导巨噬细胞的损伤。此外,转录序列(SCOTS)的选择性捕获用于研究与细胞内存活相关的微生物基因表达。这项积极的cDNA选择技术鉴定了60个不同的基因,这些基因可以分为6个功能类别。超过50%的差异表达基因参与了代谢适应。某些基因先前已被描述为与其他细菌的毒力有关,而四个基因与任何其他先前描述的基因均无显着相似性。这项研究构成了进一步基因表达分析的第一步,这将使人们更好地了解无乳链球菌在巨噬细胞中存活并穿越血脑屏障的分子机制。

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