AMB_2024v14n1

Animal Molecular Breeding 2024, Vol.14, No.1, 86-94 http://animalscipublisher.com/index.php/amb 94 Brunberg E., Eythórsdóttir E., Dýrmundsson Ó., and Grøva L., 2020, The presence of Icelandic leadersheep affects flock behaviour when exposed to a predator test, Applied Animal Behaviour Science, 232: 105128. https://doi.org/10.1016/j.applanim.2020.105128 Esmaeili-Fard S., Gholizadeh M., Hafezian S., and Abdollahi-Arpanahi R., 2021, Genes and pathways affecting sheep productivity traits: genetic parameters, genome-wide association mapping, and pathway enrichment analysis. Frontiers in Genetics, 12: 710613. https://doi.org/10.3389/fgene.2021.710613 PMid:34394196 PMCid:PMC8355708 Gootwine E., 2020, Invited review: Opportunities for genetic improvement toward higher prolificacy in sheep, Small Ruminant Research, 186: 106090. https://doi.org/10.1016/j.smallrumres.2020.106090 Jiang J., Cao Y., Shan H., Wu J., Song X., and Jiang Y., 2021, The GWAS analysis of body size and population verification of related SNPs in Hu Sheep, Frontiers in Genetics, 12: 642552. https://doi.org/10.3389/fgene.2021.642552 PMid:34093644 PMCid:PMC8173124 Kirichenko A., Zlobin A., Shashkova T., Volkova N., Iolchiev B., Bagirov V., Borodin P., Karssen L., Tsepilov Y., and Aulchenko Y., 2022, The GWAS-MAP|ovis platform for aggregation and analysis of genome-wide association study results in sheep, Vavilov Journal of Genetics and Breeding, 26: 378-384. https://doi.org/10.18699/VJGB-22-46 PMid:35864937 PMCid:PMC9271487 Lama G., Pascual-Alonso M., Aguayo-Ulloa L., Sepúlveda W., Villarroel M., and María G., 2019, Social personality in sheep: can social strategies predict individual differences in cognitive abilities, morphology features, and reproductive success?. Journal of Veterinary Behavior, 31: 82-91. https://doi.org/10.1016/j.jveb.2019.03.005 Marina H., Pelayo R., Suárez-Vega A., Gutiérrez-Gil B., Esteban-Blanco C., and Arranz J., 2021, Genome-wide association studies (GWAS) and post-GWAS analyses for technological traits in Assaf and Churra dairy breeds, Journal of Dairy Science, 104(11): 11850-11866. https://doi.org/10.3168/jds.2021-20510 PMid:34454756 Moghaddar N., Brown D., Swan A., Gurman P., Li L., and Werf J., 2021, Genomic prediction in a numerically small breed population using prioritized genetic markers from whole-genome sequence data, Journal of Animal Breeding and Genetics, 139(1): 71-83. https://doi.org/10.1111/jbg.12638 PMid:34374454 Mohammadi H., Rafat S., Moradi-Shahrbabak H., Shodja J., and Moradi M., 2020, Genome-wide association study and gene ontology for growth and wool characteristics in Zandi sheep, Journal of Livestock Science and Technologies, 8: 45-55. Ozella L., Langford J., Gauvin L., Price E., Cattuto C., and Croft D., 2020, The effect of age, environment and management on social contact patterns in sheep, Applied Animal Behaviour Science, 225: 104964. https://doi.org/10.1016/j.applanim.2020.104964 Plush K., Hebart M., Brien F., and Hynd P., 2011, The genetics of temperament in Merino sheep and relationships with lamb survival, Applied Animal Behaviour Science, 134: 130-135. https://doi.org/10.1016/j.applanim.2011.07.009 Shi L., Ma L.Y., Muhetapa M., Yang H.G., and Yiming S., 2024, Study on the genetic structure and litter size candidate genes of pishan red sheep population based on whole genome resequencing, Zhongguo Xumu Shouyi (China Animal Husbandry & Veterinary Medicine), (2): 624-638. Su P., Huang Y.M., Xu T.Q., Lin C.J., Pan C.Y., Zhang Q.F., and Lan X.Y., 2023, Application of genome-wide association study in sheep genetics and breeding, Zhongguo Xumu Zazhi (Chinese Journal of Animal Science), (10): 74-85. Wang J.J., Zhao Y., Min L.J., Lei C.C., and Shen W., 2017, Research progress of genome-wide association study and genomic selection for economic traits in goat and sheep breeding, Jiachu Shengtai Xuebao (Journal of Domestic Animal Ecology), (11): 1-7. Wang W., Zhang X., Zhou X., Zhang Y., La Y., Zhang Y., Li C., Zhao Y., Li F., Liu B., and Jiang Z., 2019, Deep genome resequencing reveals artificial and natural selection for visual deterioration, plateau adaptability and high prolificacy in Chinese domestic sheep. Frontiers in Genetics, 10: 300. https://doi.org/10.3389/fgene.2019.00300 PMid:31001329 PMCid:PMC6454055 Welch M., Alzubaidi S., and Schaerf, T. (2023). Modelling collective states and individual-level interactions in small sheep flocks. MODSIM2023, 25th International Congress on Modelling and Simulation, pp.1051. Zhang C.L., Zheng L.M., Liu C.J., Gao Q.H., and Liu S.D., 2022, Analysis of genetic law of Hetian and Qira black sheep using illumina ovine SNP50 chip, Xumu Shouyi Xuebao (Acta Veterinaria et Zootechnica Sinica), (4): 1051-1063. Disclaimer/Publisher’s Note The statements, opinions, and data contained in all publications are solely those of the individual authors and contributors and do not represent the views of the publishing house and/or its editors. The publisher and/or its editors disclaim all responsibility for any harm or damage to persons or property that may result from the application of ideas, methods, instructions, or products discussed in the content. Publisher remains neutral with regard to jurisdictional claims in published maps and institutional affiliations.

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