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The Infection Process of Yersinia ruckeri: Reviewing the Pieces of the Jigsaw Puzzle

机译:鼠疫耶尔森氏菌的感染过程:复习拼图游戏的碎片

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摘要

Finding the keys to understanding the infectious process of Yersinia ruckeri was not a priority for many years due to the prompt development of an effective biotype 1 vaccine which was used mainly in Europe and USA. However, the gradual emergence of outbreaks in vaccinated fish, which have been reported since 2003, has awakened interest in the mechanism of virulence in this pathogen. Thus, during the last two decades, a large number of studies have considerably enriched our knowledge of many aspects of the pathogen and its interaction with the host. By means of both conventional and a variety of novel strategies, such as cell GFP tagging, bioluminescence imaging and optical projection tomography, it has been possible to determine three putative Y. ruckeri infection routes, the main point of entry for the bacterium being the gill lamellae. Moreover, a wide range of potential virulence factors have been highlighted by specific gene mutagenesis strategies or genome-wide transposon/plasmid insertion-based screening approaches, such us in vivo expression technology (IVET) and signature tagged mutagenesis (STM). Finally, recent proteomic and whole genomic analyses have allowed many of the genes and systems that are potentially implicated in the organism's pathogenicity and its adaptation to the host environmental conditions to be elucidated. Altogether, these studies contribute to a better understanding of the infectious process of Y. ruckeri in fish, which is crucial for the development of more effective strategies for preventing or treating enteric redmouth disease (ERM).
机译:由于迅速开发出一种主要在欧洲和美国使用的有效的生物型1型疫苗,多年来一直没有找到了解鲁氏耶尔森氏菌感染过程的关键。但是,自2003年以来已有报道,接种鱼的暴发逐渐出现,引起了人们对该病原体毒力机制的兴趣。因此,在过去的二十年中,大量研究大大丰富了我们对病原体及其与宿主相互作用的许多方面的知识。通过常规方法和多种新颖策略,例如细胞GFP标签,生物发光成像和光学投影层析成像,已经可以确定三种推定的R. ruckeri感染途径,该细菌的主要进入点是ill薄片。此外,特定的基因诱变策略或基于全基因组转座子/质粒插入的筛选方法(例如我们的体内表达技术(IVET)和特征标记诱变(STM))已经突出了广泛的潜在毒力因子。最后,最近的蛋白质组学和整个基因组分析已经阐明了许多可能与生物体的致病性及其对宿主环境条件的适应有关的基因和系统。总而言之,这些研究有助于更好地了解鱼类中的R. ruckeri的感染过程,这对于制定预防或治疗肠红嘴病(ERM)的更有效策略至关重要。

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