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首页> 外文期刊>Aquaculture >Chlorine-based disinfection for controlling horizontal transmission of VNN in a seawater recirculating aquaculture system growing European seabass
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Chlorine-based disinfection for controlling horizontal transmission of VNN in a seawater recirculating aquaculture system growing European seabass

机译:基于氯的消毒,用于控制海水再循环水产养殖系统中VNN水平传输的生长欧洲鲈鱼

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An innovative physicochemical approach for treating the recycled water within a seawater recirculating aquaculture systems (RAS) has been recently developed, which includes inherent disinfection within the ammonia electro-oxidation cycle. The efficiency of the inherent disinfection was tested in comparison to a RAS consisting of a bio-treatment unit (which did not include a disinfection component), both systems operating under similar fish densities and makeup water flow rates. Neural necrosis virus (NNV) was chosen as a model pathogen, due to its pathogenicity to sea bass (Dicentrarchus labrax) and many other aquaculture species. The course of infection (exposure -> immune response -> infection) was monitored in a cohabitation experiment, testing the horizontal transmission of NNV using immunological and molecular methods, in addition to recording clinical signs. Results indicate that under the conditions prevailing in the RAS in which the physicochemical method was applied, the NNV horizontal transmission pathway was blocked. No immune response to viral neural necrosis (VNN) was detected in the fish sampled during the experiment, in contrast to a significant and classic immune response observed in the fish held in the RAS based on bio-treatment. Challenged fish in both systems showed typical outbreak profile, however in the bio-treated RAS, a slow disease course was observed, hypothesized by us to be the result of a high concentration of humic substances present in the water. The results indicated that the off-host phase of the NNV can be controlled by effective chlorine-based disinfection. The disinfection effect in the physico-chemically-treated RAS and C.t (chlorine concentration times the retention time) value quantified in the present work are most likely sufficient to reduce infection of a wide range of other aquaculture pathogens.
机译:最近开发了一种用于治疗海水再循环水产养殖系统(RAS)内循环水的创新物理化学方法,其包括氨电氧化循环内的固有消毒。与由生物处理单元(不包括消毒组分)组成的RAS进行测试的效率,两种系统都在类似的鱼密度和化妆水流速率下运行。选择神经坏死病毒(NNV)作为模型病原体,由于其对海贝斯(Dicentrarchus Labrax)和许多其他水产养殖种类的致病性。在同居试验中监测感染过程(暴露 - >免疫反应 - >感染),使用免疫和分子方法测试NNV的水平透射,除了记录临床症状。结果表明,在施加物理化化学方法的Ras中普遍存在的条件下,堵塞了NNV水平传输途径。没有对在实验中采样的鱼类中检测到对病毒神经坏死(VNN)的免疫反应,与在基于生物治疗中的RAS中的鱼类中观察到的显着和经典的免疫应答相反。两种系统中的挑战性鱼都显示出典型的爆发简介,然而,在生物处理的RAS中,观察到缓慢的疾病过程,通过我们假设在水中存在高浓度的腐殖质的结果。结果表明,NNV的偏离宿主阶段可以通过有效的基于氯的消毒来控制。本作本作中定量的物理化学处理的Ras和C.T(保留时间的氯浓度次数)值的消毒效应最有足以减少各种其他水产养殖病原体的感染。

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