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Salmon gill poxvirus, a recently characterized infectious agent of multifactorial gill disease in freshwater- and seawater-reared Atlantic salmon

机译:鲑鱼鳃痘病毒,淡水和海水饲养大西洋三文鱼中最近特征的多学鳃病传染病

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Gill diseases cause considerable losses in Norwegian salmon farming. In 2015, we characterized salmon gill poxvirus (SGPV) and associated gill disease. Using newly developed diagnostic tools, we show here that SGPV infection is more widely distributed than previously assumed. We present seven cases of complex gill disease in Atlantic salmon farmed in seawater and freshwater from different parts of Norway. Apoptosis, the hallmark of acute SGPV infection, was not easily observed in these cases, and qPCR analysis was critical for identification of the presence of SGPV. Several other agents including Costia-like parasites, gill amoebas, Saprolegnia spp. and bacteria were observed. The studied populations experienced significant mortalities, which increased to extreme levels when severe SGPV infections coincided with smoltification. SGPV infection appears to affect the smoltification process directly by affecting the gills and chloride cells in particular. SGPV may be considered a primary pathogen as it was often found prior to identification of complex gill disease. It is hypothesized that SGPV-induced gill damage may impair innate immunity and allow invasion of secondary invaders. The distinct possibility that SGPV has been widely overlooked as a primary pathogen calls for extended use of SGPV qPCR in Atlantic salmon gill health management.
机译:鳃疾病在挪威鲑鱼农业中引起相当大的损失。 2015年,我们表征了鲑鱼鳃痘病毒(SGPV)和相关鳃病。使用新开发的诊断工具,我们在此显示SGPV感染比以前假定的更广泛分布。我们在挪威不同地区的海水和淡水中养殖大西洋三文鱼中的七种复杂鳃病病例。细胞凋亡,在这些情况下不容易观察到急性SGPV感染的标志,并且QPCR分析对于鉴定SGPV的存在至关重要。其他几种药剂,包括斯凯岛状寄生虫,吉尔阿布巴斯,Sapregnia SPP。观察到细菌。研究人群经历了显着的死亡率,当严重的SGPV感染与Smoltizence一致时,这增加到极端水平。通过影响鳃和氯化物细胞,似乎通过影响鳃和氯化物细胞,似乎直接影响SMOLTIZE方法。 SGPV可被认为是主要病原体,因为它经常在鉴定复杂鳃疾病之前发现。假设SGPV诱导的鳃损伤可能会损害天生的免疫力,并允许侵犯二次入侵者。 SGPV被广泛被忽视为主要病原体的独特可能性,以便在大西洋鲑鱼鳃健康管理中扩展SGPV QPCR的延长使用。

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