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Transgenic poultry: theory and practice

Published online by Cambridge University Press:  18 September 2007

B. M. Freeman
Affiliation:
Institute for Animal Disease Research, Houghton Laboratory1, Houghton, Huntingdon, Cambs. PE17 2DA, England.
N. Bumstead
Affiliation:
Institute for Animal Disease Research, Houghton Laboratory1, Houghton, Huntingdon, Cambs. PE17 2DA, England.
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Abstract

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Type
Research Article
Copyright
Copyright © Cambridge University Press 1987

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References

Brackett, B. G., Baranska, W., Savicki, W. and Koprowski, H. (1971). Uptake of heterologous genome by mammalian spermatozoa and its transfer to ova through fertilisation. Proceedings of the National Academy of Science, USA 68: 353357.CrossRefGoogle Scholar
Bumstead, N., Messer, L. I., Freeman, B. M. and Manning, A. C. C. (1987a). Genetic transformation of chickens using irradiated male gametes. Heredity 58: 2530.CrossRefGoogle ScholarPubMed
Bumstead, N., Freeman, B. M., Manning, A. C. C. and Howes, K. (1987b). Genetic transformation of chickens using irradiated sperm: co-transfer of undesirble genes. Avian Pathology 16: 417424.CrossRefGoogle ScholarPubMed
Crittenden, L. B. (1986). Identification and cloning of genes for insertion. Poultry Science 65: 14681473.CrossRefGoogle Scholar
Crowley, T. E., Nellen, W., Gomer, R. H. and Firtel, R. A. (1985). Phenocopy of discoidin 1-minus mutants by antisense transformation of Dictyostelium. Cell 43: 633641.CrossRefGoogle Scholar
Dahan, A., Reynaud, C. A. and Weill, J. C. (1983). Nucleotide sequence of the constant region of a chicken heavy chain immunoglobulin mRNA. Nucleic Acids Research 11: 53815389.CrossRefGoogle ScholarPubMed
Doehmer, J., Barinaga, M., Vale, W., Rosenfeld, M. G., Verma, I. M. and Evans, R. M. (1982). Introduction of rat growth hormone gene into mouse fibroblasts via a retroviral DNA vector: expression and regulation. Proceedings of the National Academy of Science, USA 79: 22682272.CrossRefGoogle Scholar
Freeman, B. M. and Bumstead, N. (1987). Breeding for disease resistance—the propective role of genetic manupulation. Avian Pathology 16: 353365.CrossRefGoogle Scholar
Freeman, B. M. and Messer, L. I. (1985). Genetic manipulation of the domestic fowl—a review. World's Poultry Science Journal 41: 124132.CrossRefGoogle Scholar
Green, P. J., Pines, P. and Inouye, M. (1986). The role of antisense RNA in gene regulation. Annual Review of Biochemistry 55: 569597.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: 205210.CrossRefGoogle ScholarPubMed
Hammer, R. E., Pursel, V. G., Rexroad, C. E., Wall, R. J., Bolt, D. J., Ebert, K. M., Palmiter, R. D. and Brinster, R. L. (1985). Production of transgenic rabbits, sheep and pigs by microinjection. Nature, London 315: 680683.CrossRefGoogle ScholarPubMed
Huang, A. L., Ostrowski, M. C., Berard, D. and Hager, G. L. (1981). Glucocorticoid regulation of the Ha-MuSV p21 gene conferred by sequences form mouse mammary tumor virus. Cell 27: 245255.CrossRefGoogle Scholar
Hughes, S. H., Kosik, E., Fadly, A. M., Salter, D. W. and Crittenden, L. B. (1986). Design of retroviral vectors for the insertion of foreign deoxyribonucleic acid sequences into the avian germ line. Poultry Science 65: 14591467.CrossRefGoogle ScholarPubMed
Izant, G. I. and Weintraub, H. (1984). Inhibition of thymidine kinase gene expression by anti-sense RNA: a molecular approach to genetic analysis. Cell 36: 10071015.CrossRefGoogle ScholarPubMed
Izant, G. I. and Weintraub, H. (1985). Constitutive and conditional suppression of exogenous and endogenous genes by anti-sense RNA. Science, New York 229: 345352.CrossRefGoogle ScholarPubMed
Jahner, D. and Jaenisch, R. (1980). Integration of Moloney leukaemia virus into the germ line of mice: correlation between site of integration and virus activation. Nature, London 287: 456458.CrossRefGoogle ScholarPubMed
Joyner, A., Yamamoto, Y. and Bernstein, A. (1982). Retroviral long terminal repeats activate expression of coding sequences for the herpes simplex virus thymidine kinase gene. Proceedings of the National Academy of Sciences, USA 79: 15731577.CrossRefGoogle ScholarPubMed
Joyner, A., Keller, G., Phillips, R. A. and Bernstein, A. (1983). Retrovirus transfer of a bacterial gene into mouse haematopoietic progenitor cells. Nature, London 305: 556558.CrossRefGoogle ScholarPubMed
Kim, S. K. and Wold, B. J. (1985). Stable expression of thymidine kinase activity in cells expressing high levels of anti-sense RNA. Cell 42: 129138.CrossRefGoogle ScholarPubMed
Palmiter, R. D., Brinster, R. L., Hammer, R. E., Trumbauer, M. E., Rosenfeld, M. G., Brinberg, N. C. and Evans, R. M. (1982). Dramatic growth of mice that develop from eggs microinjected with metallothionein-growth hormone fusion genes. Nature, London 300: 611615.CrossRefGoogle ScholarPubMed
Pandey, K. K. and Patchell, M. R. (1982). Genetic transformation in chicken by use of irradiated male gametes. Molecular and General Genetics 186: 305308.CrossRefGoogle ScholarPubMed
Reynaud, C. A., Dahan, A. and Weill, J. C. (1983). Complete sequence of a chicken λ light chain immunoglobulin derived from the nucleotide sequence of its mRNA. Proceedings of the National Academy of Science, USA 80: 40994103.CrossRefGoogle ScholarPubMed
Rowlett, K. and Simkiss, K. (1987). Explanted embryo culture: in vivo and in ovo techniques for domestic fowl. British Poultry Science 28: 91101.CrossRefGoogle Scholar
Salter, D. W., Smith, E. J., Hughes, S. M., Wright, S. E., Fadly, A. M., Witter, R. L. and Crittenden, L. B. (1986). Gene insertion into the chicken germ line by retroviruses. Poultry Science 65: 14451458.CrossRefGoogle ScholarPubMed
Salterd, D. W., Smith, E. J., Hughes, S. H., Wright, S. E. and Crittenden, L. B. (1987). Transgenic chickens: insertion of retroviral genes into the chicken germ line. Virology 157: 236240.CrossRefGoogle Scholar
Schnieke, A., Harbers, K. and Jaenisch, R. (1983). Embryonic lethal mutation in mice induced by retrovirus insertion into the αl(1) collagen gene. Nature, London 304: 315320.CrossRefGoogle Scholar
Shimotohno, K. and Temin, H. M. (1981). Formation of infectious progeny virus insertion of herpes simplex thymidine kinase gene into DNA of an avian retrovirus. Cell 26: 6777.CrossRefGoogle ScholarPubMed
Shuman, R. M. and Shoffner, R. N. (1986). Gene transfer by avian retroviruses. Poultry Science 65: 14376.CrossRefGoogle Scholar
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: 4953.CrossRefGoogle ScholarPubMed
Stephenson, M. L. and Zamecnik, P. C. (1978). Inhibition of Rous sarcoma viral RNA translation by a specific oligodeoxyribonucleotide. Proceedings of the National Academy of Sciences, USA 75: 285288.CrossRefGoogle ScholarPubMed
Tabin, C. J., Hoffman, J. W., Croff, S. P. and Weinberg, R. A. (1982). Adaption of a retrovirus as a eucaryotic vector transmitting the HSV thymidine kinase gene. Molecular and Cellular Biology 2: 426.Google Scholar
Wei, C. M., Spear, P. G. and Scolnick, E. M. (1981). Construction and isolation of a transmissable retrovirus containing the sre gene of Harvey immune sarcoma virus and the TK gene of herpes simplex type 1. Journal of Virology 39: 935944.CrossRefGoogle Scholar
Yu, S-H., Von Rinden, T., Kantoff, P. W., Garber, C., Seiberg, M., Ruther, U., Anderson, W. F. Wagner, E. F. and Gilboa, E. (1986). Self-inactivating retroviral vectors designed for transfer of whole genes into mammalian cells. Procedings of the National Academy of Sciences, USA 83: 31943198.CrossRefGoogle ScholarPubMed
Zamecnik, P. C. and Stephenson, M. L. (1978). Inhibition of Rous sarcoma virus replication and cell transformation by a specific oligodeoxynucleotide. Proceedings of the National Academy of Sciences, USA 75: 280284.CrossRefGoogle ScholarPubMed