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三种鲑鱼在挪威大型深湖中感染四包微孢子虫的模式。

Patterns of Tetracapsuloides bryosalmonae infection of three salmonid species in large, deep Norwegian lakes.

机构信息

Department of Natural Sciences and Environmental Health, Faculty of Technology, Natural Sciences and Maritime Sciences, University of South-Eastern Norway (USN), Boe in Telemark, Norway.

Norwegian Institute for Nature Research (NINA), Oslo, Norway.

出版信息

J Fish Dis. 2022 Jan;45(1):185-202. doi: 10.1111/jfd.13548. Epub 2021 Nov 8.

Abstract

Proliferative kidney disease (PKD), caused by the myxozoan endoparasite Tetracapsuloides bryosalmonae, is of serious ecological and economical concern to wild and farmed salmonids. Wild salmonid populations have declined due to PKD, primarily in rivers, in Europe and North America. Deep lakes are also important habitats for salmonids, and this work aimed to investigate parasite presence in five deep Norwegian lakes. Kidney samples from three salmonid species from deep lakes were collected and tested using real-time PCR to detect PKD parasite presence. We present the first detection of T. bryosalmonae in European whitefish in Norway for the first time, as well as the first published documentation of the parasite in kidneys of Arctic charr, brown trout and whitefish in four lakes. The observed prevalence of the parasite was higher in populations of brown trout than of Arctic charr and whitefish. The parasite was detected in farmed, but not in wild, charr in one lake. This suggests a possible link with a depth of fish habitat and fewer T. bryosalmonae-infected and PKD-affected fish. Towards a warmer climate, cold hypolimnion in deep lakes may act as a refuge for wild salmonids, while cold deep water may be used to control PKD in farmed salmonids.

摘要

多囊肾病(PKD)是由粘孢子虫内寄生虫 Tetracapsuloides bryosalmonae 引起的,对野生和养殖鲑鱼的生态和经济都有严重影响。由于 PKD,野生鲑鱼种群在欧洲和北美的河流中大量减少。深湖也是鲑鱼的重要栖息地,这项工作旨在调查挪威五个深湖中寄生虫的存在情况。从深湖的三种鲑鱼中采集肾脏样本,并使用实时 PCR 进行测试,以检测 PKD 寄生虫的存在。我们首次在挪威发现了欧洲白鲑中的 T. bryosalmonae,这也是该寄生虫在四个湖泊的北极红点鲑、褐鳟和白鲑肾脏中首次被发表的记录。在褐鳟种群中观察到的寄生虫流行率高于北极红点鲑和白鲑。在一个湖泊的养殖鳟鱼中检测到了这种寄生虫,但在野生鳟鱼中没有检测到。这表明寄生虫与鱼类栖息地的深度以及受感染和患有 PKD 的鱼类数量较少可能存在联系。随着气候变暖,深湖中寒冷的下湖层可能成为野生鲑鱼的避难所,而寒冷的深水区可能用于控制养殖鲑鱼的 PKD。

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