Aquaculture and Marine Ecosystems, Center For Systems Biotechnology, Fraunhofer Chile Research, Santiago, Chile.
Environmental Sustainability, Center for Systems Biotechnology (CSB-UNAB), Universidad Andres Bello, Facultad de Ciencias de la Vida, Santiago, Chile.
Biol Res. 2022 May 31;55(1):21. doi: 10.1186/s40659-022-00391-5.
The study of the stress responses in bacteria has given us a wealth of information regarding the mechanisms employed by these bacteria in aggressive or even non-optimal living conditions. This information has been applied by several researchers to identify molecular targets related to pathogeny, virulence, and survival, among others, and to design new prophylactic or therapeutic strategies against them. In this study, our knowledge of these mechanisms has been summarized with emphasis on some aquatic pathogenic bacteria of relevance to the health and productive aspects of Chilean salmon farming (Piscirickettsia salmonis, Tenacibaculum spp., Renibacterium salmoninarum, and Yersinia ruckeri). This study will aid further investigations aimed at shedding more light on possible lines of action for these pathogens in the coming years.
对细菌应激反应的研究为我们提供了丰富的信息,这些信息涉及到这些细菌在具有侵略性甚至非最佳生存条件下所采用的机制。几位研究人员已经将这些信息应用于鉴定与病原体、毒力和生存等相关的分子靶标,并设计针对这些靶标的新的预防或治疗策略。在这项研究中,我们对这些机制的了解已经被总结出来,重点介绍了一些与智利鲑鱼养殖的健康和生产方面有关的水生致病性细菌(鲑鱼传染性胰脏坏死病毒、坚韧杆菌属、鲑鱼弧菌和鲁氏耶尔森菌)。这项研究将有助于进一步的研究,以期在未来几年为这些病原体的可能作用途径提供更多的线索。