files/journal/2022-09-02_12-30-09-000000_653.png

Journal of Animal and Veterinary Advances

ISSN: Online 1993-601X
ISSN: Print 1680-5593

References

  1. Isaac L.J., S.A. Adenaike and R.A. Lawrence., 2025. Variation in The Pit 1 Gene Sequence of Two Nigerian Local Chicken Strains.   0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, Journal of Research in Agriculture and Animal Science., 12: 1-10.
  2. Ajibike, A.B., O.O. Adeleye, B.M. Ilori, D.A. Osinbowale and O.A. Adeniyi et al., 2017. Genetic diversity, phylogeographic structure and effect of selection at the mitochondrial hypervariable region of Nigerian chicken populations. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, J. Genet., 96: 1-10.
  3. Eda, M., 2021. Origin of the domestic chicken from modern biological and zooarchaeological approaches. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, Anim. Front., 11: 1-10.
  4. Lawal, R.A. and O. Hanotte, 2021. Domestic chicken diversity: Origin, distribution, and adaptation. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, Anim. Genet., 52: 1-10.
  5. van Grouw, H. and W. Dekkers, 2020. Temminck's Gallus giganteus; a gigantic obstacle to Darwin's theory of domesticated fowl origin? 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, Bull. Br. Ornithologists’ Club, Vol. 140. 10.25226/bboc.v140i3.2020.a5 1-10.
  6. Hosnedlova, B., K. Vernerova, R. Kizek, R. Bozzi and J. Kadlec et al., 2020. Associations Between IGF1, IGFBP2 and TGFß3 Genes Polymorphisms and Growth Performance of Broiler Chicken Lines. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, Animals, Vol. 10. 10.3390/ani10050800 1-10.
  7. W.M., N.G. Chima, N.G. Chima, A.J.A. J and B.M. Ilori et al., 2023. Insulin-like growth factor-1 (Igfi) gene polymorphism and its effect on egg quality traits of three chicken genotypes reared in hot humid tropics. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, Niger. J. Anim. Prod., 49: 1-10.
  8. Fouda, M., A. Ateya, I. El-Araby and A. Elzeer, 2022. GENETIC POLYMORPHISMS AND EXPRESSION PATTERN OF IGF-I GENE IN COMMERCIAL BROILER STRAINS. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, The J. Anim. Plant Sci., 31: 1-10.
  9. Mohsin, D.G. and A.A.A. Kareem, 2023. Genetic Variants of Insulin-Like Growth Factor 1 (IGF-1) Gene and Their Relationship with Productive Traits in Ross 308 Broilers. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, IOP Conf. Ser.: Earth Environ. Sci., Vol. 1262. 10.1088/1755-1315/1262/7/072066 1-10.
  10. Abdulkareem A.A., 2020.  The Genetic Variations in Mitochondrial D-Loop Sequence for Local Ducks in Iraq.  0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, Plant Archives., 20: 1-10.
  11. Jaffar A.A. and A.A. Abdulkareem., 2022. Genetic Diversity and Identification of MC1R SNPs Association with Colors in Iraqi Local Ducks.   0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, In IOP Conference Series: Earth and Environmental Science., Vol. 1060. 10.1088/1754-1315/1060/1/012066 1-10.
  12. Gasteiger E., 2005. The Proteomics Protocols Handbook. 0 0, January 01-01, 1970, In: 0, (In) John M.W., (edition)., (Ed.)., 0 Edn., Humana Pres.,, 0, ISBN-1: 0, 0 pp: 1-10.
  13. Dauda, A., A. Yakubu, I. Dim and D. Gwaza, 2017. Proteins sequence analysis of Contagious Caprine Pleuropneumonia. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, Biotechnol. Anim. Husbandry, 33: 1-10.
  14. DARMAWATI, S., S.N. ETHICA, M.E. PRASTIYANTO, S.N. DEPAMEDE, E.O. PUTRI and M. KAMARUDDIN, 2022. Molecular characterization of a 42 kDa subunit pili protein of Salmonella typhi causes typhoid fever. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, Biodiversitas J. Bio. Diversity, 23: 1-10.
  15. Payá, G., V. Bautista, M. Camacho, J. Esclapez and M.J. Bonete, 2023. Comprehensive Bioinformatics Analysis of the Biodiversity of Lsm Proteins in the Archaea Domain. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, Microorganisms, Vol. 11. 10.3390/microorganisms11051196 1-10.
  16. Dauda A., h. Duwa and V.N. Ebegbulem., 2017. Computational algorithm to assess the functionality of non-synonymous substitution and genetic relationship of DRA II gene of cattle, goat and sheep. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, Global Journal of Animal Breeding and Genetics., 5: 1-10.
  17. Kaur, A., P.K. Pati, A.M. Pati and A.K. Nagpal, 2020. Physico-chemical characterization and topological analysis of pathogenesis-related proteins from Arabidopsis thaliana and Oryza sativa using in-silico approaches. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, PLOS ONE, Vol. 15. 10.1371/journal.pone.0239836 1-10.
  18. Hofmann K. and W. Stoffel., 1993.  TMbase - A database of membrane spanning proteins segments.  0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, Biol Chem Hoppe-Seyler., Vol. 347. 0 1-10.
  19. Bachmair, A., D. Finley and A. Varshavsky, 1986. In Vivo Half-Life of a Protein Is a Function of Its Amino-Terminal Residue. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, Science, 234: 1-10.
  20. Wang, Y.P., L.N. Yang, Y.Y. Feng, S. Liu and J. Zhan, 2022. Single Amino Acid Substitution in the DNA Repairing Gene Radiation-Sensitive 4 Contributes to Ultraviolet Tolerance of a Plant Pathogen. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, Front. Microbiol., Vol. 13. 10.3389/fmicb.2022.927139 1-10.
  21. Rivera, H.E., H.E. Aichelman, J.E. Fifer, N.G. Kriefall, D.M. Wuitchik, S.J. Smith and S.W. Davies, 2021. A framework for understanding gene expression plasticity and its influence on stress tolerance. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, Mol. Ecol., 30: 1-10.