Haemorrhagic kidney syndrome of Atlantic salmon, Salmo salar L.

被引:48
|
作者
Byrne, PJ
MacPhee, DD
Ostland, VE
Johnson, G
Ferguson, HW [1 ]
机构
[1] Univ Guelph, Ontario Vet Coll, Fish Pathol Lab, Guelph, ON N1G 2W1, Canada
[2] Shur Gain Maple Leaf Foods, St George, NB, Canada
[3] Univ Prince Edward Isl, Dept Pathol & Microbiol, Atlantic Vet Coll, Charlottetown, PE C1A 4P3, Canada
关键词
D O I
10.1046/j.1365-2761.1998.00071.x
中图分类号
S9 [水产、渔业];
学科分类号
0908 ;
摘要
This report describes a new syndrome affecting farmed Atlantic salmon on the Canadian east coast that has resulted in increased morbidity and mortality in affected stocks. The major pathological findings are apparent only microscopically and include renal interstitial haemorrhage and acute tubular necrosis and tubular casting. As a result, the disease has become known as haemorrhagic kidney syndrome (HKS). Affected fish are lethargic and anorectic, and lark external lesions. Clinically, HKS fish are anaemic, hypoproteinaemic and hyperosmolalic, with increased serum concentrations of sodium and chloride. At necropsy, internal changes ranged from apparently normal to include one or several of the following: swelling and/or patchy reddening of the kidney, pale gills, exophthalmos, serosanguinous ascites, darkening of the posterior intestine and splenomegaly. Ultrastructurally, viral inclusions were found in the cytoplasm of erythrocytes of HKS fish, and there were unusual electron-dense inclusions within the tips of renal tubular microvilli of HKS fish. The significance and relevance of the ultrastructural findings to HKS are unknown. Virus isolation was attempted using CHSE, RTG-2, FH-10, BE and EPC cell lines; no virus was isolated. Bacteriological analysis failed to reveal significant pathogens. Analysis of tissues for heavy metals and pesticides was negative. Assays for clostridial toxins, lipopolysaccharide and verotoxins were negative. The aetiology of HKS remains unresolved.
引用
收藏
页码:81 / 91
页数:11
相关论文
共 50 条
  • [21] Erythrocytic inclusion body syndrome virus in wild Atlantic salmon, Salmo salar L.
    Rodger, H. D.
    JOURNAL OF FISH DISEASES, 2007, 30 (07) : 411 - 418
  • [22] Dietary phosphorus requirement of juvenile Atlantic salmon, Salmo salar L.
    Asgard, T.
    Shearer, K. D.
    AQUACULTURE NUTRITION, 1997, 3 (01) : 17 - 23
  • [23] Transport stress in Atlantic salmon (Salmo salar L.):: anaesthesia and recovery
    Sandodden, R
    Finstad, B
    Iversen, M
    AQUACULTURE RESEARCH, 2001, 32 (02) : 87 - 90
  • [24] An improved genetic sex test for Atlantic salmon (Salmo salar L.)
    King, R. Andrew
    Stevens, Jamie R.
    CONSERVATION GENETICS RESOURCES, 2020, 12 (02) : 191 - 193
  • [25] Genetic diversity among Atlantic salmon (Salmo salar L.) populations
    Verspoor, E
    ICES JOURNAL OF MARINE SCIENCE, 1997, 54 (06) : 965 - 973
  • [26] Bioenergetic modelling of the marine phase of Atlantic salmon (Salmo salar L.)
    Smith, I. Philip
    Booker, Douglas J.
    Wells, Neil C.
    MARINE ENVIRONMENTAL RESEARCH, 2009, 67 (4-5) : 246 - 258
  • [27] Gut morphology of diploid and triploid Atlantic salmon (Salmo salar L.)
    Peruzzi, Stefano
    Hagen, Orjan
    Jobling, Malcolm
    AQUACULTURE INTERNATIONAL, 2015, 23 (04) : 1105 - 1108
  • [28] Development and assessment of oligonucleotide microarrays for Atlantic salmon (Salmo salar L.)
    Krasnov, Aleksei
    Timmerhaus, Gerrit
    Afanasyev, Sergey
    Jorgensen, Sven Martin
    COMPARATIVE BIOCHEMISTRY AND PHYSIOLOGY D-GENOMICS & PROTEOMICS, 2011, 6 (01): : 31 - 38
  • [29] Is there lipostatic regulation of feed intake in Atlantic salmon Salmo salar L.?
    Johansen, SJS
    Ekli, M
    Jobling, M
    AQUACULTURE RESEARCH, 2002, 33 (07) : 515 - 524
  • [30] Dietary DNA in blood and organs of Atlantic salmon (Salmo salar L.)
    Christer Røss Nielsen
    Knut G. Berdal
    Anne Marie Bakke-McKellep
    Arne Holst-Jensen
    European Food Research and Technology, 2005, 221 : 1 - 8