CMB_2024v14n5

Computational Molecular Biology 2024, Vol.14, No.5, 202-210 http://bioscipublisher.com/index.php/cmb 210 Shirai L.T., Saenko S.V., Keller R.A., Jerónimo M.A., Brakefield P.M., Descimon H., Wahlberg N., and Beldade P., 2012, Evolutionary history of the recruitment of conserved developmental genes in association to the formation and diversification of a novel trait, BMC Evolutionary Biology, 12: 21-21. https://doi.org/10.1186/1471-2148-12-21 Slotte T., Bataillon T., Hansen T.T., Onge K., Wright S.I., and Schierup M.H., 2011, Genomic determinants of protein evolution and polymorphism in arabidopsis, Genome Biology and Evolution, 3: 1210-1219. https://doi.org/10.1093/gbe/evr094 Vakirlis N., Hebert A.S., Opulente D.A., Achaz G., Hittinger C.T., Fischer G., Coon J.J., and Lafontaine I., 2018, A molecular portrait of de novo genes in yeasts, Molecular Biology and Evolution, 35(3): 631-645. https://doi.org/10.1093/molbev/msx315 Wunderlich Z., Fowlkes C.C., Eckenrode K., Bragdon M., Abiri A., and DePace A., 2018, Quantitative comparison of the anterior-posterior patterning system in the embryos of five drosophila species, G3: Genes|Genomes|Genetics, 9(7): 2171-2182. https://doi.org/10.1534/g3.118.200953 Xia S., VanKuren N.W., Chen C., Zhang L., Kemkemer C., Shao Y., Jia H., Lee U.J., Advani A., Gschwend A., Vibranovski M., Chen S., Zhang Y., and Long M., 2020, Genomic analyses of new genes and their phenotypic effects reveal rapid evolution of essential functions in Drosophila development, PLoS Genetics, 17(7): e1009654. https://doi.org/10.1371/journal.pgen.1009654 Xu H.B., Li Y.X., Li Y., Otecko N.O., Zhang Y.P., Mao B., and Wu D.D., 2018, Origin of new genes after zygotic genome activation in vertebrate, Journal of Molecular Cell Biology, 10(2): 139-146. https://doi.org/10.1093/jmcb/mjx057 Zhang A.T., 2024, Research on the role of DNA methylation in the epigenetic regulation mechanism of Pomeranian dogs, Animal Molecular Breeding, 14(1): 72-81. https://doi.org/10.5376/amb.2024.14.0009

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