Selection signature analysis reveals RDH5 performed key function in vision during sheep domestication process
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Published:2023-02-23
Issue:1
Volume:66
Page:81-91
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ISSN:2363-9822
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Container-title:Archives Animal Breeding
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language:en
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Short-container-title:Arch. Anim. Breed.
Author:
Hu Ruixue, Jiang XunpingORCID, Yang Huiguo, Liu Guiqiong
Abstract
Abstract. As one of the most successful domesticated animals in the Neolithic age,
sheep gradually migrated all over the world with human activities. During the
domestication process, remarkable changes have taken place in morphology,
physiology, and behavior, resulting in different breeds with different
characters via artificial and natural selection. However, the genetic
background responsible for these phenotypic variations remains largely
unclear. Here, we used whole genome resequencing technology to compare and
analyze the genome differences between Asiatic mouflon wild sheep (Ovis orientalis) and Hu
sheep (Ovis aries). A total of 755 genes were positively selected in the process of
domestication and selection, and the genes related to sensory perception had
directional evolution in the autosomal region, such as OPRL1, LEF1, TAS1R3, ATF6, VSX2, MYO1A, RDH5, and some novel
genes. A missense mutation of c.T722C/p.M241T in exon 4 of RDH5 existing in sheep
were found, and the T allele was completely fixed in Hu sheep. In addition, the
mutation with the C allele reduced the retinol dehydrogenase activity encoding
by RDH5, which can impair retinoic acid metabolism and further influenced the visual
cycle. Overall, our results showed significant enrichment for positively
selected genes involved in sensory perception development during sheep
domestication; RDH5 and its variants may be related to the retinal degeneration
in sheep. We infer that the wild sheep ancestors with weaker visual sensitivity
were weeded out by humans, and the mutation was selective, swept by the dual
pressures of natural and artificial selection.
Funder
Huazhong Agricultural University
Publisher
Copernicus GmbH
Reference76 articles.
1. Alberto, F. J., Boyer, F., Orozco-terWengel, P., Streeter, I., Servin, B.,
de Villemereuil, P., Benjelloun, B., Librado, P., Biscarini, F., Colli, L.,
Barbato, M., Zamani, W., Alberti, A., Engelen, S., Stella, A., Joost, S.,
Ajmone-Marsan, P., Negrini, R., Orlando, L., Rezaei, H. R., Naderi, S.,
Clarke, L., Flicek, P., Wincker, P., Coissac, E., Kijas, J., Tosser-Klopp,
G., Chikhi, A., Bruford, M. W., Taberlet, P., and Pompanon, F.: Convergent
genomic signatures of domestication in sheep and goats, Nat. Commun., 9,
1–9, https://doi.org/10.1038/s41467-018-03206-y, 2018. 2. Alexander, D. H. and Lange, K.: Enhancements to the ADMIXTURE algorithm for
individual ancestry estimation, BMC Bioinformatics, 12, 1–6,
https://doi.org/10.1186/1471-2105-12-246, 2011. 3. Al-Hasani, R. and Bruchas, M. R.: Molecular mechanisms of opioid
receptor-dependent signaling and behavior, Anesthesiology, 115, 1363–1381,
https://doi.org/10.1097/ALN.0b013e318238bba6, 2011. 4. Ashburner, M., Ball, C. A., Blake, J. A., Botstein, D., Butler, H., Cherry, J. M.,
Davis, A. P., Dolinski, K., Dwight, S. S., Eppig, J. T., Harris, M. A., Hill, D. P.,
Issel-Tarver, L., Kasarskis, A., Lewis, S., Matese, J. C., Richardson, J. E., Ringwald,
M., Rubin, G. M., and Sherlock, G.: Gene ontology: tool for the unification of
biology, Nat. Genet., 25, 25–29, https://doi.org/10.1038/75556, 2000. 5. Assanasen, P., Choochurn, P., Banhiran, W., and Bunnag, C.: Radiofrequency
inferior turbinate reduction improves smell ability of patients with chronic
rhinitis and inferior turbinate hypertrophy, Allerg. Rhinol., 5,
e12–e16, https://doi.org/10.2500/ar.2014.5.0077, 2014.
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