[1] |
Andersson, L. Melanocortin receptor variants with phenotypic effects in horse, pig, and chicken Ann. N. Y. Acad. Sci., 994 (2003),pp. 313-318
|
[2] |
Andersson, L. Studying phenotypic evolution in domestic animals: a walk in the footsteps of Charles Darwin. Cold Spring Harb Symp. Quant. Biol., 74 (2009),pp. 319-325
|
[3] |
Barsh, G.S. The genetics of pigmentation: from fancy genes to complex traits Trends Genet., 12 (1996),pp. 299-305
|
[4] |
Eggermont, A.M., Spatz, A., Robert, C. Cutaneous melanoma Lancet, 383 (2014),pp. 816-827
|
[5] |
Giuffra, E., Tornsten, A., Marklund, S. et al. A large duplication associated with dominant white color in pigs originated by homologous recombination between LINE elements flanking KIT Mamm. Genome, 13 (2002),pp. 569-577
|
[6] |
Hai, T., Teng, F., Guo, R. et al. One-step generation of knockout pigs by zygote injection of CRISPR/Cas system Cell Res., 24 (2014),pp. 372-375
|
[7] |
Kijas, J.M., Wales, R., Tornsten, A. et al. Melanocortin receptor 1 (MC1R) mutations and coat color in pigs Genetics, 150 (1998),pp. 1177-1185
|
[8] |
Klungland, H., Vage, D.I., Gomez-Raya, L. et al. The role of melanocyte-stimulating hormone (MSH) receptor in bovine coat color determination Mamm. Genome, 6 (1995),pp. 636-639
|
[9] |
Marklund, S., Kijas, J., Rodriguez-Martinez, H. et al. Molecular basis for the dominant white phenotype in the domestic pig Genome Res., 8 (1998),pp. 826-833
|
[10] |
Miyagi, R., Terai, Y. The diversity of male nuptial coloration leads to species diversity in Lake Victoria cichlids Genes Genet. Syst., 88 (2013),pp. 145-153
|
[11] |
Newton, J.M., Wilkie, A.L., He, L. et al. Melanocortin 1 receptor variation in the domestic dog Mamm. Genome, 11 (2000),pp. 24-30
|
[12] |
Robbins, L.S., Nadeau, J.H., Johnson, K.R. et al. Pigmentation phenotypes of variant extension locus alleles result from point mutations that alter MSH receptor function Cell, 72 (1993),pp. 827-834
|
[13] |
Schook, L.B., Collares, T.V., Darfour-Oduro, K.A. et al. Unraveling the swine genome: implications for human health Annu. Rev. Anim. Biosci., 3 (2015),pp. 219-244
|
[14] |
Slominski, A., Tobin, D.J., Shibahara, S. et al. Melanin pigmentation in mammalian skin and its hormonal regulation Physiol. Rev., 84 (2004),pp. 1155-1228
|
[15] |
Sun, Z., Wang, G., Yang, X. et al. Experimental study on effect of natural hirudin on vein congestion of random skin flap in porcine models Chin. J. Reparative Reconstr. Surg., 22 (2008),pp. 1296-1300
|
[16] |
Takeuchi, S., Suzuki, H., Yabuuchi, M. et al. A possible involvement of melanocortin 1-receptor in regulating feather color pigmentation in the chicken Biochim. Biophys. Acta, 1308 (1996),pp. 164-168
|
[17] |
Wang, X., Cao, C., Huang, J. et al. One-step generation of triple gene-targeted pigs using CRISPR/Cas9 system Sci. Rep., 6 (2016),p. 20620
|
[18] |
Zhang, B., Chen, B., Ma, D. et al. Establishment of a Bama miniature swine model of chronic myocardial ischemic models by thoracoscopy J. Med. Res., 43 (2014),pp. 104-107
|
[19] |
Zhang, Y., Liu, X., Xie, L. et al. Variation of nitric oxide synthase in penis of Bama mini-pigs with diabetic erectile dysfunction Prog. Veterinary Med., 31 (2010),pp. 28-31
|
[20] |
Zhou, X., Wang, L., Du, Y. et al. Efficient generation of gene-modified pigs harboring precise orthologous human mutation via CRISPR/Cas9-induced homology-directed repair in zygotes Hum. Mutat., 37 (2016),pp. 110-118
|