Haemolytic Complement Activity and Humoral Immune Responses to Sheep Red Blood Cells in Indigenous Chickens and in Eight German Dahlem Red Chicken Lines with Different Combinations of Major Genes (dwarf, naked neck and frizzled) of Tropical Interest

被引:0
作者
R. Baelmans
H.K. Parmentier
M.G.B. Nieuwland
P. Dorny
F. Demey
D. Berkvens
机构
[1] Institute of Tropical Medicine,Department of Animal Health
[2] Wageningen University,Department of Animal Sciences, Adaptation Physiology Group
关键词
complement; chicken; indigenous; Bolivia; India; Tanzania; sheep red blood cells; German Dahlem Red; naked neck; frizzled; dwarf;
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摘要
A total of 376 chickens from different ecotypes were immunized with the non-pathogenic multideterminant antigen sheep red blood cells (SRBC). The ecotypes included indigenous chickens from various locations in Tanzania (n = 102), India (n = 86) and Bolivia (n = 89). In addition, eight German Dahlem Red (GDR) chicken lines with different major genes (dwarf, naked neck and frizzled) of tropical interest were also immunized with SRBC. Immune competence of the breeds was assessed by measuring complement haemolytic activity, both from the classical calcium-dependent complement pathway (CPW) and alternative calcium-independent complement pathway (APW), alongside IgTotal, IgG and IgM antibody responses to SRBC at 7 days post immunization. Large variations in complement activity and antibody responses to SRBC were observed within and between the indigenous breeds. Many indigenous chickens, especially from Bolivia, showed decreased complement activity (APW) following immunization with SRBC. Breeds from India showed the highest CPW activity and humoral (especially IgM) responses to SRBC, suggesting high immune competence. In contrast, Bolivian chickens were characterized by low CPW activity, low APW activity and low antibody levels to SRBC suggesting an overall low immune competence. In the GDR chickens, characterized by high CPW activity and high IgG antibody responses to SRBC, the major genes for naked neck, frizzling and dwarfism had no significant effect on the antibody responses and complement activity to SRBC.
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页码:173 / 186
页数:13
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[1]  
Boa-Amponsem K.(2000)Antibody responses to different dosages of sheep red blood cells in lines of chickens selected for high and low antibody response to sheep red blood cells Poultry Science 79 159-162
[2]  
Dunnington EA.(2001)Effect of route of inoculation on humoral immune response of White Leghorn chickens selected for high or low antibody response to sheep red blood cells Poultry Science 80 1073-1078
[3]  
Pierson EW.(1993)The effect of storage at low temperature on the haemolytic complement activity of chicken serum Veterinary Research Communications 17 37-40
[4]  
Larsen C.T.(1992)Antibody responses to combinations of antigens in white Leghorn chickens of different background genomes and major histocompatibility complex genotypes Poultry Science 71 1801-1806
[5]  
Siegel P.B.(1996)Immunoresponsiveness in chickens: association of antibody production and the B system of the major histocompatibility complex Poultry Science 75 1156-1160
[6]  
Boa-Amponsem K.(2001)Productive performance of naked neck, frizzle and dwarf laying hens under various natural climates and two nutritional treatments South African Journal of Animal Science 31 174-180
[7]  
Price S.E.(1999)Effect of genetic selection and MHC haplotypes on lymphocyte proliferation and interleukin-2 like activity in chicken lines selected for high and low antibody production against sheep red blood cells Veterinary Immunology and Immunopathology 68 13-24
[8]  
Dunnington E.A.(1980)Production and persistence of antibodies in chickens to sheep erythrocytes. 2. Resistance to infectious diseases Poultry Science 59 205-210
[9]  
Siegel P.B.(2002)Effect of naked neck gene (NA) and frizzle gene (F) on immunocompetence in chickens British Poultry Science 43 28-32
[10]  
Demey F.(1992)Immunological parameters in meat-type chicken lines, divergently selected by antibody response to Veterinary Immunology and Immunopathology 34 159-172