Hostname: page-component-78c5997874-mlc7c Total loading time: 0 Render date: 2024-11-09T07:55:01.963Z Has data issue: false hasContentIssue false

Breeding for Immune Responsiveness and Disease Resistance

Published online by Cambridge University Press:  18 September 2007

A. J. van der Zijpp
Affiliation:
Department of Animal Husbandry, Agricultural University, Postbox 338, 6700 AH Wageningen, Netherlands
Get access

Abstract

Image of the first page of this content. For PDF version, please use the ‘Save PDF’ preceeding this image.'
Type
Research Article
Copyright
Copyright © Cambridge University Press 1983

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

Almlid, T. (1981). Indirect selection of bulls for improved resistance to diseases in dairy cattle. Livestock Production Science, 8: 321.CrossRefGoogle Scholar
Bacon, L. D., Witter, R. L., Crittenden, L. B., Fadly, A. and Motta, J., (1981). B-haplotype influence on Marek's disease, Rous sarcoma, and lymphoid leukosis virus-induced tumors in chickens. Poultry Science, 60: 1132.CrossRefGoogle ScholarPubMed
Balcarová, J., Hála, K. and Hraba, T. (1973a). Differences in antibody formation to the dinitrophenol group in inbred lines of chickens. Fol. biol. (Praha), 19: 19.Google Scholar
Balcarová, J., Hála, K. and Hraba, T. (1973b). Differences in the intensity of antibody formation to different antigens in inbred lines of chickens. Fol. biol. (Praha), 19: 329.Google ScholarPubMed
Benedict, A. A., Pollard, L. W., Morrow, P. R., Ablanalp, H. A., Maurer, P. H. and Briles, W. E. (1975). Genetic control of immune responses in chickens. I. Responses to a terpolymer of poly (glu60 ala34tyr10)associated with the major histocompatibility complex. Immunogenetics, 2: 313.CrossRefGoogle Scholar
Biozzi, G., Mouton, D., Sant'anna, O. A., Passos, H. C., Gennari, M., Reis, M. H., Ferreira, V. C. A., Heumann, A. M., Bouthillier, Y., Ibanez, O. M., Stiffel, C. and Siqueira, M. (1979). Genetics of immunoresponsiveness to natural antigens in the mouse. Current Topics in Microbiology and Immunology, 85: 31.Google ScholarPubMed
Briles, W. E., Stone, H. A. and Cole, R. K. (1977). Marek's disease: effects of B histocompatibility alloalleles in resistant and susceptible chicken lines. Science, 195: 193.CrossRefGoogle ScholarPubMed
Calnek, B. W., Higgins, D. A. and Fabricant, J. (1975). Rous sarcoma regression in chickens resistant or susceptible to Marek's disease. Avian Diseases, 19: 473.CrossRefGoogle ScholarPubMed
Carte, I. F., Smyth, J. H., Weston, C. R. and Savage, T. F. (1972). Immunogenetics and regression of RSV (RAV-1) wing web tumors in chickens. Poultry Science, 51: 1792(Abstract).Google Scholar
Chanh, T. C., Benedict, A. A. and Ablanalp, H. (1976). Association of serum hemolytic complement levels with the major histocompatibility complex in chickens. Journal experimental Medicine, 144: 555.CrossRefGoogle ScholarPubMed
Chi, D. S., Galton, J. E. and Thorbecke, G. J. (1981). Role of T-cells in immune responses of the chicken. In Avian Immunology, eds. Rose, M. E., Payne, L. N. and Freeman, B. M. British Poultry Science Ltd., Edinburgh, Scotland, 103.Google Scholar
Cho, B. R. (1977). Studies of turkey herpesvirus viremia in two strains of vaccinated chickens: Strain difference and effects of vaccine dose. Avian Diseases, 21: 394.CrossRefGoogle ScholarPubMed
Cole, R. K. and Hutt, F. B. (1961). Genetic differences in resistance to Newcastle disease. Avian Diseases, 5: 205.CrossRefGoogle Scholar
Collins, W. M., Briles, W. E., Zsigray, R. M., Dunlop, W. R., Corbett, A. C., Clark, K. K., Marks, J. L. and Mcgrail, T. P. (1977). The B locus (MHC) in the chicken: associations with the fate of RSV -induced tumors. Immunogenetics, 5: 333.CrossRefGoogle Scholar
Collins, W. M., Heinzelmann, E. W., Corbett, A. C., Zsigray, R. M. and Dunlop, W. R. (1980). Rous sarcoma regression in seven highly inbred lines of White Leghorns. Poultry Science, 59: 1172.CrossRefGoogle ScholarPubMed
Crittenden, L. B. (1975). Two levels of genetic resistance to lymphoid leukosis. Avian Diseases, 19: 281.CrossRefGoogle ScholarPubMed
Crittenden, L. B., Muhm, R. L. and Burmester, B. R. (1972). Genetic control of susceptibility to the avian leukosis complex. 2. Marek's disease. Poultry Science, 51M: 261.CrossRefGoogle Scholar
Fabricant, J., Calnek, B. W., Schat, K. A. and Murthy, K. K. (1978). Marek's disease virus-induced tumor transplants: development and rejection in various genetic strains of chickens. Avian Diseases, 22: 646.CrossRefGoogle ScholarPubMed
Firth, G. A. (1977). The normal lymphatic system of the domestic fowl. Veterinary Bulletin 47: 167.Google Scholar
Fredericksen, T. L., Longenecker, B. M., Pazderka, F., Gilmour, D. G. and Ruth, R. F. (1977). A T-cell antigen system of chickens: Ly-4 and Marek's disease. Immunogenetics, 5: 535.CrossRefGoogle Scholar
Friars, G. W., Chambers, J. R., Kennedy, A. and Smith, A. D. (1972). Selection for resistance to Marek's disease in conjunction with other economic traits in chickens. Avian Diseases, 16: 2.CrossRefGoogle ScholarPubMed
Garnett, I. and Roberts, C. W. (1972). The heritability of the percent gamma globulin level in the New Hampshire chick. Poultry Science, 51: 1087CrossRefGoogle ScholarPubMed
Gavora, J. S., Grunder, A. A., Spencer, J. L., Gowe, R. S., Robertson, A. and Speckmann, G. W. (1974). An assessment of effects of vaccination on genetic resistance to Marek's disease. Poultry Science, 53: 889.CrossRefGoogle ScholarPubMed
Gavora, J. S. and Spencer, J. L. (1978). Breeding for genetic resistance to disease: specific or general? World's Poultry Science Journal, 34: 137.CrossRefGoogle Scholar
Gavora, J. S., Spencer, J. L., Gowe, R. S. and Harris, D. L. (1980). Lymphoid leukosis virus infection: effects on production and mortality and consequences in selection for high egg production. Poultry Science, 59: 2165.CrossRefGoogle ScholarPubMed
Gavora, J. S., Spencer, J. L., Grunder, A. A., Robertson, A. and Speckmann, G. W. (1974). Genetic resistance to Marek's disease (MD): response of strains and inbred lines to challenge with JM-V tumor cells or the BC-1 isolate of MD virus. Proceedings 15th World's Poultry Congress, 3: 255.Google Scholar
Gavora, J. S., Spencer, J. L., Hare, W. C. D. and Morse, P. M. (1977). Genetic resistance to lymphoid tumor transplants. Poultry Science, 56: 590.CrossRefGoogle ScholarPubMed
Gebriel, G. M., Pevzner, I. Y. and Nordskog, A. W. (1979). Genetic linkage between immune response to GAT and the fate of RSV-induced tumors in chickens. Immunogenetics, 9: 327.CrossRefGoogle Scholar
Glick, B. (1979). The avian immune system. Avian Diseases, 23: 282.CrossRefGoogle Scholar
Glick, B., Chang, T. S. and Jaap, R. G., (1956). The bursa of Fabricius and antibody production. Poultry Science, 35: 224.CrossRefGoogle Scholar
Gordon, C. D., Beard, C. W., Hopkins, S. R. and Siegel, H. S. (1971). Chick mortality as a criterion for selection toward resistance or susceptibility to Newcastle disease. Poultry Science, 50: 783.CrossRefGoogle ScholarPubMed
Gross, W. G., Siegel, P. B., Hall, R. W., Domermuth, C. H. and DuBoise, R. T. (1980). Production and persistence of antibodies in chickens to sheep erythrocytes. 2. Resistance to infectious diseases. Poultry Science, 59: 205.CrossRefGoogle ScholarPubMed
Günther, E., Balcarová, J., Hála, K., Rüde, E. and Hraba, T. (1974). Evidence for an association between immune responsiveness of chicken to (T. G)-A-L and the major histocompatibility system. European Journal of Immunology, 4: 548.CrossRefGoogle Scholar
Han, P. F. S. and Smyth, J. R. (1972). The influence of growth rate on the development of Marek's disease in chickens. Poultry Science, 51: 975.CrossRefGoogle ScholarPubMed
Hansen, M. P., van Zandt, J. N. and Law, G. R. J. (1967). Differences in susceptibility to Marek's disease in chickens carrying two different B locus blood group alleles. Poultry Science, 46: 1268 (Abstract).Google Scholar
Hartmann, W., von dem Hagen, D. and Löliger, H.-Ch. (1973). Weitere Untersuchungen zur Frage der Leukose-Resistenz von Leghornlinien. Archiv für Geflügelkünde, 37: 84.Google Scholar
Hartmann, W., von dem Hágen, D. and Löliger, H.-Ch. (1978). Zur Methodik der Bestimmung des Genotyps für Infektionsresistenz gegen Geflügelleukose. Archiv für Geflügelkünde, 42: 145.Google Scholar
Hartmann, W. and Sanz, M. (1971). Resistance to Marek's disease in broiler strains under natural and artificial exposure. Archiv für Geflügelkünde, 35: 1.Google Scholar
Hartmann, W. and Sanz, M. (1974). Heritability of resistance to Marek's disease and genetic correlation with growth rate in broiler strains. Archiv für Geflügelkünde, 38: 183.Google Scholar
Heller, D., Soller, M., Peleg, B. A., Ron-Kuper, N. and Hornstein, K. (1981). Immune response to Newcastle disease virus vaccine, fowl-pox vaccine, and Escherichia coli vaccine in Bedouin and White Leghorn chickens. Poultry Science, 60: 34.CrossRefGoogle ScholarPubMed
Hersh, E. M., Gutterman, J. U., Alexanian, R., Lotzova, E. and Murphy, S. G. (1981). A 7 parameter host defense assay system for evaluating biological response modifier therapy of human cancer. Proceedings American Association Cancer Research Clinical Oncology, 22: 372 (Abstract).Google Scholar
Higgins, D. A. (1981). Markers for T and B lymphocytes and their application to animals. Veterinary Bulletin, 51: 925.Google Scholar
Karakoz, I., Krejci, J., Hála, K., Blaszcyk, B., Hraba, T., Pekárek, J. (1974). Genetic determination of tuberculin hypersensitivity in chicken inbred lines. European Journal of Immunology, 4: 545.CrossRefGoogle ScholarPubMed
Klesius, P., Johnson, W. and Kramer, T. (1977). Delayed wattle reaction as a measure of cell-mediated immunity in the chicken. Poultry Science, 56: 249.CrossRefGoogle ScholarPubMed
Krieg, R., Hartmann, W. and Heil, G. (1978). Zur Frage der Erblichkeit des Bildungsvermögens von Immunglobulin-G bei Leghornküken. Vortragstagung der Deutschen Gesellschaft für Züchtungskunde e. V., Stuttgart-Hohenheim, Germany, 09, 1978.Google Scholar
Krieg, R., von dem Hagen, D., Hartmann, W. and Löliger, H.-Ch. (1978). Untersuchungen über Linieneinflüsse auf die Immunglobulinbildung bei Leghornküken. Archiv für Gelflügelkünde, 42: 1.Google Scholar
Lee, W. H. and Nordskog, A. W. (1980). Relative importance of the B and the immune response (IR) regions of the B blood group complex controlling splenomegaly in chickens. Poultry Science. 59: 1630 (Abstract).Google Scholar
Lee, L. F., Powell, P. C., Rennie, M., Ross, L. J. N. and Payne, L. N. (1981). Nature of genetic resistance to Marek's disease in chickens. Journal National Cancer Institute, 66: 789.Google ScholarPubMed
Longenecker, B. M. and Mosmann, T. R. (1981). The major histocompatibility complex (B-locus) of the chicken. In Avian Immunology, eds. Rose, M. E., Payne, L. N. and Freeman, B. M. British Poultry Science, Ltd., Edinburgh, Scotland, 167.Google Scholar
Maas, H. J. L., Antonisse, H. W., van der Zijpp, A. J., Groenendal, J. E. and Kok, G. L. (1981). The development of two White Plymouth Rock lines resistant to Marek's disease by breeding from survivors. Avian Pathology, 10: 137.CrossRefGoogle ScholarPubMed
Marks, J. L., Collins, W. M., Corbett, A. C., Zsigray, R. M. and Dunlop, W. R. (1979). Genetic nature of regression of Rous sarcoma virus-induced tumors in crosses of regional poultry research laboratory lines 6 and 72. Poultry Science, 58: 502.CrossRefGoogle Scholar
Miggiano, V. C., Birgen, I. and Pink, J. R. L. (1974). The mixed leukocyte reaction in chickens. Evidence for control by the major histocompatibility complex. European Journal of Immunology, 4: 397.CrossRefGoogle ScholarPubMed
Miggiano, V., North, M., Buder, A. and Pink, J. R. L., (1976). Genetic control of the response of chicken leukocytes to a T-cell mitogen. Nature (London), 263: 61.CrossRefGoogle ScholarPubMed
Morrow, P. R. and Ablanalp, H. (1981). Genetic control of T-lymphocyte mitogenesis in chickens. Immunogenetics, 13: 189.CrossRefGoogle ScholarPubMed
Mouton, D., Stiffel, C. and Biozzi, G. (1981). Genetic regulation of high and low immunoresponsiveness. In Immunologic Defects in Laboratory Animals, eds. Gershwin, M. E. and Merchant, B. Plenum Publishing Co., New York, U. S. A., 19.CrossRefGoogle Scholar
Oosterlee, C. C. and Nieuwland, M. G. B. (1980). B21 frequencies in unvaccinated and Marek vaccinated chicken populations. Animal Blood Groups biochemistry Genetics, 11: 39 (Abstract).Google Scholar
Palladino, M. A., Gilmour, D. G., Scafuri, A. R., Stone, H. A. and Thorbecke, G. J. (1977). Immune response differences between two inbred chicken lines identical at the major histocompatibility complex. Immunogenetics, 5: 253.CrossRefGoogle Scholar
Pavel, Yu. G., Fedotovski, A. N. and Mòòl, A. Yu. (1981). On the association between the egg-laying ability and the index of natural resistance in the hen. Genetika (USSR), 17: 715.Google Scholar
Payne, L. N., Frazier, J. A. and Powell, P. C. (1976). Pathogenesis of Marek's disease. International Review of Experimental Pathology, 16: 59.Google ScholarPubMed
Pazderka, F., Longenecker, B. M., Law, G. R. J., Stone, H. A. and Ruth, R. F. (1975). Histocompatibility of chicken populations selected for resistance to Marek's disease. Immunogenetics, 2: 93.CrossRefGoogle Scholar
Peleg, B. A., Soller, M., Ron, N., Hornstein, K., Brody, T. and Kalmar, E. (1976). Familial differences in antibody response of broiler chickens to vaccination with attenuated and inactivated Newcastle disease virus vaccine. Avian Disease, 20: 661.CrossRefGoogle ScholarPubMed
Pevzner, I. Y., Kujdych, I. and Nordskog, A. W. (1981). Immune response and disease resistance in chickens. II. Marek's disease and immune response to GAT. Poultry Science, 60: 927.CrossRefGoogle ScholarPubMed
Pevzner, I., Nordskog, A. W. and Kaeberle, M. L. (1975). Immune response and the B blood group locus in chickens. Genetics, 80: 753.CrossRefGoogle Scholar
Pevzner, I. Y., Stone, H. A. and Nordskog, A. W. (1981). Immune response and disease resistance in chickens. I. Selection for high and low titre to salmonella pullorum antigen. Poultry Science, 60: 920.CrossRefGoogle ScholarPubMed
Pevzer, I. Y., Trowbridge, C. L. and Nordskog, A. W. (1978). Recombination between genes coding for immune response and the serologically determined antigens in the chicken B system. Immunogenetics, 7: 25.CrossRefGoogle Scholar
Pink, J. R. L., Droege, W., Hal´, K., Miggiano, V. C. and Ziegler, A. (1977). A three-locus model for the chicken major histocompatibility complex. Immunogenetics, 5: 203.CrossRefGoogle Scholar
Rees, M. J. and Nordskog, A. W. (1980). A preliminary screening of inbred lines of chickens for differences in basal levels of serum immunoglobulin. Poultry Science. 59: 1654 (Abstrict).Google Scholar
Rose, M. E., Payne, L. N. and Freeman, B. M. (Eds.), (1981). Avian Immunology. British Poultry Science, Ltd., Edinburgh, Scotland.Google Scholar
Schierman, L. W. and Nordskog, A. W. (1961). Relationship of blood type to histocompatibility in chickens. Science, 134: 1008.CrossRefGoogle ScholarPubMed
Schierman, L. W., Watanabe, D. H. and McBride, R. A. (1977). Genetic control of Rous sarcoma regression in chickens: linkage with major histocompatibility complex. Immunogenetics, 5: 325.CrossRefGoogle Scholar
Seto, F. (1981). Early development of the avian immune system. Poultry Science, 60: 1981.CrossRefGoogle ScholarPubMed
Siegel, H. S. (1980). Physiological stress in birds. Bioscience, 30: 529.CrossRefGoogle Scholar
Siegel, P. B. and Gross, W. B. (1980). Production and persistence of antibodies in chickens to sheep erythrocytes. 1. Directional selection. Poultry Science, 59: 1.CrossRefGoogle Scholar
Skeeles, J. K., Stewart, R. G., Brown, J., Page, R. K. and Russell, I. D. (1980). Hemolytic complement activity in broiler chickens and turkeys. Poultry Science, 59: 1221.CrossRefGoogle ScholarPubMed
Soller, M., Heller, D., Peleg, B., Ron-Kuper, N. and Hornstein, K. (1981). Genetic and phenotypic correlations between immune response to Escherichia coli and to Newcastle disease virus vaccines. Poultry Science, 60: 49.CrossRefGoogle ScholarPubMed
Spencer, J. L., Gavora, J. S. and Gowe, R. S. (1979). Effect of selection for high egg production in chickens on shedding of lymphoid leukosis virus and gs antigen into eggs. Poultry Science, 58: 279.CrossRefGoogle ScholarPubMed
Spencer, J. L., Gavora, J. S., Grunder, A. A., Robertson, A. and Speckmann, G. W. (1974). Immunization against Marek's disease: influence of strain of chickens, maternal antibody, and type of vaccine. Avian Diseases, 18: 33.CrossRefGoogle ScholarPubMed
Tizard, I. (1979). Avian immune responses: a brief review. Avian Diseases, 23: 290.CrossRefGoogle Scholar
Van Rood, J. J., Bradley, B., Bruning, J. W., Eernisse, J. G. and van Leeuwen, A. (1978). The HLA system, clinical and biological importance. In Proceedings of the Zodiac Symposium on Adaptation,PUDOC,Wageningen, Netherlands, 77.Google Scholar
Van der Zijpp, A. J. (1978). The humoral response of the chicken. In Proceedings of the Zodiac Symposium on Adaptation,PUDOC,Wageningen, Netherlands, 92.Google Scholar
Van der Zijpp, A. J., Frankena, K., Boneschanscher, J. and Nieuwland, M. G. B. (1983). Genetic analysis of primary and secondary immune responses in the chicken. Poultry Science (in press).CrossRefGoogle ScholarPubMed
Van der Zijpp, A. J. and Leenstra, F. R. (1980). Genetic analysis of the humoral immune response of White Leghorn chicks. Poultry Science, 59: 1363.CrossRefGoogle ScholarPubMed
Von der Hagen, D. and Löliger, H.-Ch. (1980). Verlauf und Dauer der Ausscheidung von Marek-Herpesvirus in den Federfollikeln wachsender Hühnerküken mit und ohne schutzimpfung mit Puten-Herpesvirus in 3 Hühnerlinien. 6 WPSA-Kongress, Bank II, 321.Google Scholar
Von Krosigk, C. M., McClary, C. F., Vielitz, E. and Zander, D. V. (1972). Selection for resistance to Marek's disease and its expected effects on other important traits in White Leghorn strain crosses. Avian Diseases, 16: 11.CrossRefGoogle ScholarPubMed
Warner, N. L., Szenberg, A. and Burnet, F. M. (1962). The immunological role of different lymphoid organs in the chicken. I. Dissociation of immunological responsiveness. Australian Journal Experimental Biology and Medical Sciences, 40: 373.CrossRefGoogle ScholarPubMed
Yamada, Y. (1974). Genetic resistance to Marek's disease (MD) and lymphoid leukosis (LL) in chickens. Proceedings 1st World Congress on Genetics applied to Livestock Production, part 2: 191.Google Scholar