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Overview of the genetic control of horse coat color patterns

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  • Inner Mongolia Key Laboratory of Equus Genetics, Breeding and Reproduction, Hohhot 010018, China

Received date: 2017-11-09

  Revised date: 2018-04-25

  Online published: 2018-05-04

Supported by

Supported by the National Natural Science Foundation of China(31472070);Supported by the National Natural Science Foundation of China(31360538);the National Key Research and Development Program of China(2017YFE0108700);the Natural Science Foundation Major Project of Inner Mongolia(2017ZD06);Inner Mongolia Science And Technology Department Construction Project(编号:201603002);Inner Mongolia Science And Technology Department Construction Project(201603008);Graduate Scientific Research Innovation Project of Inner Mongolia(B20171012911)

Abstract

Mammalian coat color is one of the first phenotypic changes resulting from positive selection by humans, and it serves important roles in genetic and evolutionary processes. Among them, horses show a broad variety of coat color patterns, based on which it is difficult to distinguish the real phenotypes, resulting in confused records in horse breed registration. Thus, research in the genetic mechanisms on the development of coat color patterns is significant in horse reproduction and breeding. With the recent establishment of genomics and sequencing technologies, there are significant advances in research in the genetics of horse coat colors, which demonstrate that special coat colors could be associated with certain diseases. In this review, we classify horse coat colors from the perspective of genetics, and summarize the recent research progresses of the associated genes and molecular mechanisms on horse coat color development and its application, thereby providing references to further systematic research on horse coat color patterns and their practical uses in horse breeding.

Cite this article

Ruoyang Zhao, Yiping Zhao, Bei Li, Gerelchimeg Bou, Xinzhuang Zhang, Togtokh Mongke, Tugeqin Bao, Shurenchimeg Gereliin, Tsimbai Gereltuuin, Chao Li, Dongyi Bai, Manglai Dugarjaviin . Overview of the genetic control of horse coat color patterns[J]. Hereditas(Beijing), 2018 , 40(5) : 357 -368 . DOI: 10.16288/j.yczz.17-371

References

[1] Fang MY, Larson G, Ribeiro HS, Li N, Andersson L . Contrasting mode of evolution at a coat color locus in wild and domestic pigs. PLoS Genet, 2009,5(1):e1000341.
[2] Ludwig A, Pruvost M, Reissmann M, Benecke N, Brockmann GA, Castaños P, Cieslak M, Lippold S, Llorente L, Malaspinas AS, Slatkin M, Hofreiter M . Coat color variation at the beginning of horse domestication. Science, 2009,324(5926):485.
[3] Fanelli HH . Coat colour dilution lethal (‘lavender foal a’): syndrome tetany syndrome of Arabian foals. Equine Veterinary Education, 2010,17(5):260-263.
[4] 韩国才 . 相马. 北京:中国农业出版社, 2014.
[5] Sponenberg DP . Equine Color Genetics. 3rd ed. Wiley-Blackwell Publishers, 2009.
[6] Sundström E, Imsland F, Mikko S, Wade C, Sigurdsson S, Pielberg GR, Golovko A, Curik I, Seltenhammer MH, Sölkner J, Lindblad-Toh K, Andersson L . Copy number expansion of the STX17 duplication in melanoma tissue from Grey horses. BMC Genomics, 2012,13(1):365.
[7] Castle WE . Coat color inheritance in horses and in other mammals. Genetics, 1954,39(1):35-44.
[8] Scrimshaw NS, Goodland RL, Hutt FB . Variations in the ascorbic acid blood level of hens. Poult Sci, 1949,28(1):45-51.
[9] Brooks SA, Bailey E . Exon skipping in the KIT gene causes a Sabino spotting pattern in horses. Mamm Genome, 2005,16(11):893-902.
[10] Brooks SA, Lear TL, Adelson DL, Bailey E . A chromosome inversion near the KIT gene and the Tobiano spotting pattern in horses. Cytogenet Genome Res, 2007,119(3-4):225-230.
[11] Haase B, Brooks SA, Tozaki T, Burger D, Poncet PA, Rieder S, Hasegawa T, Penedo C, Leeb T . Seven novel KIT mutations in horses with white coat colour phenotypes. Anim Genet, 2009,40(5):623-629.
[12] Bellone RR. Pleiotropic effects of pigmentation genes in horses. Anim Genet, 2010,41 Suppl 2: 100-110.
[13] Haase B, Obexer-Ruff G, Dolf G, Rieder S, Burger D, Poncet PA, Gerber V, Howard J, Leeb T . Haematological parameters are normal in dominant white Franches- Montagnes horses carrying a KIT mutation. Vet J, 2010,184(3):315-317.
[14] Furumura M, Sakai C, Abdel-Malek Z, Barsh GS, Hearing VJ . The interaction of agouti signal protein and melanocyte stimulating hormone to regulate melanin formation in mammals. Pigment Cell Res, 1996,9(4):191-203.
[15] Rees JL . Genetics of hair and skin color. Annu Rev Genet, 2003,37(1):67-90.
[16] Sakamoto T, Fawcett JA, Innan H . E
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