AMB_2024v14n1

Animal Molecular Breeding 2024, Vol.14, No.1, 54-61 http://animalscipublisher.com/index.php/amb 61 Cano-Gamez E., and Trynka G., 2020, From GWAS to function: using functional genomics to identify the mechanisms underlying complex diseases, Frontiers in genetics, 11: 424. https://doi.org/10.3389/fgene.2020.00424 PMid:32477401 PMCid:PMC7237642 Hou Y., Wei Y., Lautrup S., Yang B., Wang Y., Cordonnier S., Mattson M.P., Croteau D.L., and Bohr V.A., 2021, NAD+ supplementation reduces neuroinflammation and cell senescence in a transgenic mouse model of Alzheimer’s disease via cGAS–STING, Proceedings of the National Academy of Sciences, 118(37): e2011226118. https://doi.org/10.1073/pnas.2011226118 PMid:34497121 PMCid:PMC8449423 Jiang J., Cao Y., Shan H., and Song X., 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 Li C.L., Guo T.T., and Yue Y.J., 2023, Research advances on genomic selection and its application in sheep breeding, China Animal Husbandry & Veterinary Medicine, 50(2): 616-625. Li P., Li X.M., Long Q.M., Zeng J., Yao M., Tang M.Z., Gong F., and Zhang J.W., 2024, Effects of different feeding modes on meat quality characteristics in guizhou black goat, China Herbivore Science, 44(1): 80-84. Li X.J., Han J.G., Liang B.M., Ye S.H., Jiang L., and Ma Y.H., 2023, Research advance on available genetic markers for important economic traits in sheep, China Animal Husbandry & Veterinary Medicine, 50(8): 3142-3156. Lu Z., Yue Y., Yuan C., Liu J., Chen Z., Niu C., Sun P., Zhu S., Zhao H., Guo T., and Yang B., 2020, Genome-wide association study of body weight traits in chinese fine-wool sheep, Animals, 10(1): 170. https://doi.org/10.3390/ani10010170 PMid:31963922 PMCid:PMC7022301 Mohammadabadi M., Bordbar F., Jensen J., Du M., and Guo W., 2021, Key genes regulating skeletal muscle development and growth in farm animals, Animals, 11(3): 835. https://doi.org/10.3390/ani11030835 PMid:33809500 PMCid:PMC7999090 Safari A., and Fogarty N.M., 2019, Genetic parameters for sheep production traits. Su P., Huang Y.M., Xu T.Q., Lin C.J., Pan C.Y., Zhang Q.F., and Huang X.Y., 2023, Application of genome-wide association study in sheep genetics and breeding, Chinese Journal of Animal Science, 59(10): 74-85. Sun N., and Zhao H., 2020, Statistical methods in genome-wide association studies, Annual Review of Biomedical Data Science, 3: 265-288. https://doi.org/10.1146/annurev-biodatasci-030320-041026 Uffelmann E., Huang Q.Q., Munung N.S., De Vries J., Okada Y., Martin A.R., Martin H.C., Lappalainen T., and Posthuma D., 2021, Genome-wide association studies, Nature Reviews Methods Primers, 1(1): 59. https://doi.org/10.1038/s43586-021-00056-9 Xu Z., and Taylor J.A., 2009, SNPinfo: integrating GWAS and candidate gene information into functional SNP selection for genetic association studies, Nucleic acids research, 37(suppl_2): W600-W605. https://doi.org/10.1093/nar/gkp290 PMid:19417063 PMCid:PMC2703930 Zhang W., Xu M., Wang J., and Gan S., 2021, Comparative transcriptome analysis of key genes and pathways activated in response to fat deposition in two sheep breeds with distinct tail phenotype, Frontiers in genetics, 12: 639030. https://doi.org/10.3389/fgene.2021.639030 PMid:33897762 PMCid:PMC8060577

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