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פותח על ידי קלירמאש פתרונות בע"מ -
Differential resistance to koi herpes virus (KHV)/carp interstitial nephritis and gill necrosis virus (CNGV) among common carp (Cyprinus carpio L.) strains and crossbreds
Year:
2005
Source of publication :
חקלאות מים
Authors :
חולתא, גדעון
;
.
Volume :
245
Co-Authors:
Shapira, Y., Department of Animal Sciences, Fac. Agric., Food Environ. Qual. S., Hebrew University of Jerusalem, PO Box 12, Rehovot 76100, Israel
Magen, Y., Aquaculture Research Station Dor, Min. of Agric. and Rural Development, Department of Fisheries, MP Hof HaCarmel 30820, Israel
Zak, T., Aquaculture Research Station Dor, Min. of Agric. and Rural Development, Department of Fisheries, MP Hof HaCarmel 30820, Israel
Kotler, M., Department of Pathology, Hebrew University, Hadassah Medical School, Jerusalem 91120, Israel
Hulata, G., Institute of Animal Science, Agricultural Research Organization, Volcani Center, Bet Dagan 50250, Israel
Levavi-Sivan, B., Department of Animal Sciences, Fac. Agric., Food Environ. Qual. S., Hebrew University of Jerusalem, PO Box 12, Rehovot 76100, Israel
Facilitators :
From page:
1
To page:
11
(
Total pages:
11
)
Abstract:
Massive mortalities of edible and ornamental (koi) carp (Cyprinus carpio L.) have been encountered in several fish farms worldwide, including Israel. The disease-causing virus has been identified as koi herpes virus (KHV). Based on its pathogenic effect in fish, it has also been termed carp interstitial nephritis and gill necrosis virus (CNGV). The first objective of this work was to select virus-resistant fish by crossbreeding sensitive domesticated strains with resistant wild strains of carp. Frozen wild carp [Cyprinus carpio haematopterus; Sassan] sperm was brought from the Czech Republic to achieve heterosis by producing crossbreds. We compared growth rate, food consumption, survival and behavior among strains and crossbreds. Two strains of domesticated carp-Našice (N) and Dor-70 (D) and the wild Sassan (S) were used. A large quantity of Našice eggs were fertilized with semen of Našice, Dor-70 or Sassan to produce the N x N, N x D and N x S crossbred groups, while a large quantity of Dor-70 eggs were fertilized with semen of Dor-70 or Sassan to produce the D x D and D x S groups. Resistance to the viral disease was evaluated by exposure to the virus in ponds and in the laboratory. The laboratory-exposure test was carried out at a water temperature of 22 to 23°C and the fish were exposed to the disease by cohabitation. The D x S crossbred was the most resistant (60.7% survival) and the N x N crossbred most sensitive (8.0% survival); the other fish strains did not differ significantly from one another (N x S-33.7%, D x D-27.0%, and D x N-17.7%). Similar tests, performed in ponds, were generally in good agreement with those from the laboratory, except for the N x S crossbred, which showed good resistance in the ponds but only intermediate resistance in the laboratory. In the grow-out phase, the Sassan crossbreds exhibited equal (N x S) or better (D x S) growth rates as compared to the commercial crossbred (D x N) and the pure strains (D x D, N x N). We used indirect immunofluorescence microscopy to evaluate the increasing amounts of virus in the sick fish. Kidneys were removed from naïve and sick fish and used for the preparation of touch imprint slides. The amount of viral protein produced by the infected kidney cells was high, enabling detection of the infected cells as early as 3 days post-infection. Thus, a simple imprinting immunofluorescent assay may be appropriate for CNGV diagnosis. © 2004 Elsevier B.V. All rights reserved.
Note:
Related Files :
aquaculture1 (domain1)
Cyprinus carpio
Cyprinus carpio haematopterus
fish culture
עוד תגיות
תוכן קשור
More details
DOI :
10.1016/j.aquaculture.2004.11.038
Article number:
0
Affiliations:
Database:
סקופוס
Publication Type:
מאמר
;
.
Language:
אנגלית
Editors' remarks:
ID:
27037
Last updated date:
02/03/2022 17:27
Creation date:
17/04/2018 00:27
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Scientific Publication
Differential resistance to koi herpes virus (KHV)/carp interstitial nephritis and gill necrosis virus (CNGV) among common carp (Cyprinus carpio L.) strains and crossbreds
245
Shapira, Y., Department of Animal Sciences, Fac. Agric., Food Environ. Qual. S., Hebrew University of Jerusalem, PO Box 12, Rehovot 76100, Israel
Magen, Y., Aquaculture Research Station Dor, Min. of Agric. and Rural Development, Department of Fisheries, MP Hof HaCarmel 30820, Israel
Zak, T., Aquaculture Research Station Dor, Min. of Agric. and Rural Development, Department of Fisheries, MP Hof HaCarmel 30820, Israel
Kotler, M., Department of Pathology, Hebrew University, Hadassah Medical School, Jerusalem 91120, Israel
Hulata, G., Institute of Animal Science, Agricultural Research Organization, Volcani Center, Bet Dagan 50250, Israel
Levavi-Sivan, B., Department of Animal Sciences, Fac. Agric., Food Environ. Qual. S., Hebrew University of Jerusalem, PO Box 12, Rehovot 76100, Israel
Differential resistance to koi herpes virus (KHV)/carp interstitial nephritis and gill necrosis virus (CNGV) among common carp (Cyprinus carpio L.) strains and crossbreds
Massive mortalities of edible and ornamental (koi) carp (Cyprinus carpio L.) have been encountered in several fish farms worldwide, including Israel. The disease-causing virus has been identified as koi herpes virus (KHV). Based on its pathogenic effect in fish, it has also been termed carp interstitial nephritis and gill necrosis virus (CNGV). The first objective of this work was to select virus-resistant fish by crossbreeding sensitive domesticated strains with resistant wild strains of carp. Frozen wild carp [Cyprinus carpio haematopterus; Sassan] sperm was brought from the Czech Republic to achieve heterosis by producing crossbreds. We compared growth rate, food consumption, survival and behavior among strains and crossbreds. Two strains of domesticated carp-Našice (N) and Dor-70 (D) and the wild Sassan (S) were used. A large quantity of Našice eggs were fertilized with semen of Našice, Dor-70 or Sassan to produce the N x N, N x D and N x S crossbred groups, while a large quantity of Dor-70 eggs were fertilized with semen of Dor-70 or Sassan to produce the D x D and D x S groups. Resistance to the viral disease was evaluated by exposure to the virus in ponds and in the laboratory. The laboratory-exposure test was carried out at a water temperature of 22 to 23°C and the fish were exposed to the disease by cohabitation. The D x S crossbred was the most resistant (60.7% survival) and the N x N crossbred most sensitive (8.0% survival); the other fish strains did not differ significantly from one another (N x S-33.7%, D x D-27.0%, and D x N-17.7%). Similar tests, performed in ponds, were generally in good agreement with those from the laboratory, except for the N x S crossbred, which showed good resistance in the ponds but only intermediate resistance in the laboratory. In the grow-out phase, the Sassan crossbreds exhibited equal (N x S) or better (D x S) growth rates as compared to the commercial crossbred (D x N) and the pure strains (D x D, N x N). We used indirect immunofluorescence microscopy to evaluate the increasing amounts of virus in the sick fish. Kidneys were removed from naïve and sick fish and used for the preparation of touch imprint slides. The amount of viral protein produced by the infected kidney cells was high, enabling detection of the infected cells as early as 3 days post-infection. Thus, a simple imprinting immunofluorescent assay may be appropriate for CNGV diagnosis. © 2004 Elsevier B.V. All rights reserved.
Scientific Publication
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