AMB_2024v14n1

Animal Molecular Breeding 2024, Vol.14, No.1, 19-26 http://animalscipublisher.com/index.php/amb 26 Cat genome research will provide a more scientific and personalized management method for the overall health and behavior of cats, and also provide new ideas and possibilities for the relationship between humans and animals. As technology and research continue to advance, people's understanding of the cat genome will continue to deepen, paving the way for a shared future for humans and this special companion. References Armingol E., Officer A., Harismendy O., and Lewis N.E., 2021, Deciphering cell–cell interactions and communication from gene expression, Nature Reviews Genetics, 22(2) : 71-88. https://doi.org/10.1038/s41576-020-00292-x PMid:33168968 PMCid:PMC7649713 Bradshaw J.W., 2013, Evolution and history of the cat, In The Behaviour of the Domestic Cat, pp.1-22. https://doi.org/10.1079/9781845939922.0001 Buckley R.M., and Lyons L.A., 2020, Precision/genomic medicine for domestic cats, Veterinary Clinics: Small Animal Practice, 50(5): 983-990. https://doi.org/10.1016/j.cvsm.2020.05.005 PMid:32653264 Driscoll C.A., and Clutton-Brock J., 2010, The taming of the cat. In The domestic cat: The biology of its behaviour, pp.37-52. Jurek B., and Neumann I.D., 2018, The oxytocin receptor: from intracellular signaling to behavior, Physiological reviews, 98(3): 1805-1908. https://doi.org/10.1152/physrev.00031.2017 PMid:29897293 Nebert D.W., 1999, Pharmacogenetics and pharmacogenomics: why is this relevant to the clinical geneticist? Clinical Genetics, 56(4): 247-258. https://doi.org/10.1034/j.1399-0004.1999.560401.x PMid:10636440 O’Brien S.J., Johnson W., Driscoll C., Pontius J., Pecon-Slattery J., and Menotti-Raymond M., 2008, State of cat genomics, Trends in genetics, 24(6): 268-279. https://doi.org/10.1016/j.tig.2008.03.004 PMid:18471926 PMCid:PMC7126825 Schoenfelder S., and Fraser P., 2019, Long-range enhancer–promoter contacts in gene expression control, Nature Reviews Genetics, 20(8): 437-455. https://doi.org/10.1038/s41576-019-0128-0 PMid:31086298 Yang J., Zhong Y.H., Peng P.X., Liu P., Wang P., and Wang L., 2022, Study on lysis spectrum and genomic characteristics of the first Yersinia pestis bacteriophage isolated from cats, Disease Surveillance, 37(9): 1159 -1164. Yu Y., Grahn R.A., and Lyons L.A., 2019, Mocha tyrosinase variant: a new flavour of cat coat coloration, Animal genetics, 50(2): 182-186. https://doi.org/10.1111/age.12765 PMid:30716167 PMCid:PMC6590430 Zhang W., and Schoenebeck J.J., 2020, The ninth life of the cat reference genome, Felis_catus, PLoS Genetics, 16(10): e1009045. https://doi.org/10.1371/journal.pgen.1009045 PMid:33091014 PMCid:PMC7580993 Zhao X.P., Pu J., Chong Y., Gao Z.Q., Du S.L., Bai Z.L., Lai P.A., and Wang L., Duplex real-time PCR for accurate identification of tiger-derived materials in animal products, China Port Science and Technology, 4(12): 85-91.

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