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A Novel Liquid Medium for the Efficient Growth of the Salmonid Pathogen Piscirickettsia salmonis and Optimization of Culture Conditions

机译:鲑鱼病原体鲑鱼拟南芥高效生长的新型液体培养基和培养条件的优化

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摘要

Piscirickettsia salmonis is the bacterium that causes Piscirickettsiosis, a systemic disease of salmonid fish responsible for significant economic losses within the aquaculture industry worldwide. The growth of the bacterium for vaccine formulation has been traditionally accomplished by infecting eukaryotic cell lines, a process that involves high production costs and is time-consuming. Recent research has demonstrated that it is possible to culture pure P. salmonis in a blood containing (cell-free) medium.In the present work we demonstrate the growth of P. salmonis in a liquid medium free from blood and serum components, thus establishing a novel and simplified bacteriological medium. Additionally, the new media reported provides improved growth conditions for P. salmonis, where biomass concentrations of approximately 800 mg cell dry weight L−1 were obtained, about eight times higher than those reported for the blood containing medium. A 2- level full factorial design was employed to evaluate the significance of the main medium components on cell growth and an optimal temperature range of 23–27°C was determined for the microorganism to grow in the novel liquid media.Therefore, these results represent a breakthrough regarding P. salmonis research in order to optimize pure P. salmonis growth in liquid blood and serum free medium.
机译:鲑鱼皮氏立克次体病是引起鲑鱼立克次病的细菌,该病是鲑鱼的系统性疾病,在全世界的水产养殖业中造成重大经济损失。传统上,用于疫苗制剂的细菌的生长是通过感染真核细胞系来实现的,该过程涉及高生产成本并且耗时。最近的研究表明,可以在含血液(无细胞)的培养基中培养纯鲑鱼。在目前的工作中,我们证明了鲑鱼在不含血液和血清成分的液体培养基中的生长,从而建立了一种新颖且简化的细菌学培养基。此外,报道的新培养基为鲑鱼假单胞菌提供了改善的生长条件,其中获得的生物量浓度约为800 mg细胞干重L -1 ,比报道的含血培养基高约八倍。 。采用2级全因子设计来评估主要培养基成分对细胞生长的重要性,并确定了微生物在新型液体培养基中生长的最佳温度范围为23–27°C。因此,这些结果代表为优化鲑鱼假单胞菌在液态血液和无血清培养基中的纯鲑鱼生长,这是一项突破。

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