IJMEC_2025v15n1

International Journal of Molecular Ecology and Conservation, 2025, Vol.15, No.1, 44-53 http://ecoevopublisher.com/index.php/ijmec 52 Mwacharo J., Bjørnstad G., Mobegi V., Nomura K., Hanada H., Amano T., Han J., and Hanotte O., 2011, Mitochondrial DNA reveals multiple introductions of domestic chicken in East Africa, Molecular Phylogenetics and Evolution, 58(2): 374-382. https://doi.org/10.1016/j.ympev.2010.11.027 PMid:21138772 Mwacharo J., Nomura K., Hanada H., Han J., Amano T., and Hanotte O., 2013, Reconstructing the origin and dispersal patterns of village chickens across East Africa: insights from autosomal markers, Molecular Ecology, 22: 2683-2697. https://doi.org/10.1111/mec.12294 PMid:23611649 PMCid:PMC3664419 Pértille F., Guerrero-Bosagna C., Silva V., Boschiero C., De Ribamar Da Silva Nunes J., Ledur M., Jensen P., and Coutinho L., 2016, High-throughput and cost-effective chicken genotyping using next-generation sequencing, Scientific Reports, 6(1): 26929. https://doi.org/10.1038/srep26929 PMid:27220827 PMCid:PMC4879531 Pius L.O., Strausz P., and Kusza S., 2021, Overview of poultry management as a key factor for solving food and nutritional security with a special focus on chicken breeding in East African countries, Biology, 10(8): 810. https://doi.org/10.3390/biology10080810 PMid:34440042 PMCid:PMC8389547 Rachman M., Bamidele O., Dessie T., Smith J., Hanotte O., and Gheyas A., 2024, Genomic analysis of Nigerian indigenous chickens reveals their genetic diversity and adaptation to heat-stress, Scientific Reports, 14(1): 2209. https://doi.org/10.1038/s41598-024-52569-4 PMid:38278850 PMCid:PMC10817956 Rosenberg N., Burke T., Elo K., Feldman M., Freidlin P., Groenen M., Hillel J., Mäki-Tanila A., Tixier-Boichard M., Vignal A., Wimmers K., and Weigend S., 2001, Empirical evaluation of genetic clustering methods using multilocus genotypes from 20 chicken breeds, Genetics, 159(2): 699-713. https://doi.org/10.1093/genetics/159.2.699 PMid:11606545 PMCid:PMC1461842 Shi S., Shao D., Yang L., Liang Q., Han W., Xue Q., Qu L., Leng Ľ., Li Y., Zhao X., Dong P., Walugembe M., Kayang B., Muhairwa A., Zhou H., and Tong H., 2022, Whole genome analyses reveal novel genes associated with chicken adaptation to tropical and frigid environments, Journal of Advanced Research, 47: 13-25. https://doi.org/10.1016/j.jare.2022.07.005 PMid:35907630 PMCid:PMC10173185 Tian S., Zhou X., Phuntsok T., Zhao N., Zhang D., Ning C., Li D., and Zhao H., 2020, Genomic analyses reveal genetic adaptations to tropical climates in chickens, iScience, 23(11): 101644. https://doi.org/10.1016/j.isci.2020.101644 PMid:33103083 PMCid:PMC7578744 Wang M., Li Y., Peng M., Zhong L., Wang Z., Li Q., Tu X., Dong Y., Zhu C., Wang L., Yang M., Wu S., Miao Y., Liu J., Irwin D., Wang W., Wu D., and Zhang Y., 2015, Genomic analyses reveal potential independent adaptation to high altitude in Tibetan chickens, Molecular Biology and Evolution, 32(7): 1880-1889. https://doi.org/10.1093/molbev/msv071 PMid:25788450 Wang M., Zhang J., Guo X., Li M., Meyer R., Ashari H., Zheng Z., Wang S., Peng M., Jiang Y., Thakur M., Suwannapoom C., Esmailizadeh A., Hirimuthugoda N., Zein M., Kusza S., Kharrati-Koopaee H., Zeng L., Wang Y., Yin T., Yang M., Li M., Lu X., Lasagna E., Ceccobelli S., Gunwardana H., Senasig T., Feng S., Zhang H., Bhuiyan A., Khan M., Silva G., Thuy L., Mwai O., Ibrahim M., Zhang G., Qu K., Hanotte O., Shapiro B., Bosse M., Wu D., Han J., and Zhang Y., 2021, Large-scale genomic analysis reveals the genetic cost of chicken domestication, BMC Biology, 19(1): 118. https://doi.org/10.1186/s12915-021-01052-x PMid:34130700 PMCid:PMC8207802 Xie X., Wang Z., Zhong Z., Pan D., Hou G., and Xiao Q., 2024, Genome-wide scans for selection signatures in indigenous chickens reveal candidate genes associated with local adaptation, Animal: An International Journal of Animal Bioscience, 18(5): 101151. https://doi.org/10.1016/j.animal.2024.101151 PMid:38701711 Yan S., Gao C., Tian K., Xiao C., Shi J., Jia X., Wang K., Sun G., Li D., Kang X., and Li W., 2024, Comparative population genomics analysis for chicken body sizes using genome-wide SNPs, Animal Bioscience, 38(4): 600. https://doi.org/10.5713/ab.24.0347 PMid:39482999 PMCid:PMC11917417 Ye S., Yuan X., Huang S., Zhang H., Chen Z., Li J., Zhang X., and Zhang Z., 2019, Comparison of genotype imputation strategies using a combined reference panel for chicken population, Animal: An International Journal of Animal Bioscience, 13(6): 1119-1126. https://doi.org/10.1017/S1751731118002860 PMid:30370890

RkJQdWJsaXNoZXIy MjQ4ODYzNA==