Animal Sciences, University of Florida, 2250 Shealy Dr, Gainesville, FL, 32608, USA.
Faculty of Animal Science, Bursa Uludag University, 16059 Nilufer, Bursa, Turkey.
Anim Genet. 2020 Oct;51(5):811-814. doi: 10.1111/age.12970. Epub 2020 Jun 16.
Thermal stress limits beef cattle production and a shorter hair coat is a key thermoregulative adaptation that allows cattle to lose heat more efficiently. The objective of this study was to identify genetic variants associated with the length of the undercoat and topcoat of cattle utilizing 1456 Brangus heifers genotyped with the Bovine GGP F250 array. Seven SNPs in the PCCA gene were significantly associated with undercoat length. PCCA belongs to the biotin transport and metabolism pathway. Biotin deficiency has been reported to cause hair loss. Four SNPs in an 110 kb including a missense mutation in the PRLR gene were significantly associated with topcoat length. Whereas the association of this polymorphism with hair length is novel, the SLICK mutation in PRLR has previously been demonstrated to significantly impact hair length in cattle. These newly detected genetic variants may contribute to a shorter hair coat and more thermotolerant animals.
热应激限制了肉牛的生产,而较短的毛层是一种关键的热调节适应性,使牛能够更有效地散热。本研究的目的是利用 1456 头布郎格斯小母牛,利用牛基因组学 250k 芯片 F250 对与牛的底绒和顶绒长度相关的遗传变异进行鉴定。在 PCCA 基因中有 7 个 SNP 与底绒长度显著相关。PCCA 属于生物素转运和代谢途径。据报道,生物素缺乏会导致脱发。在包含 PRLR 基因错义突变的 110kb 范围内的 4 个 SNP 与顶绒长度显著相关。虽然这种多态性与毛发长度的关联是新颖的,但 PRLR 中的 SLICK 突变先前已被证明对牛的毛发长度有显著影响。这些新发现的遗传变异可能有助于形成更短的毛层和更耐热的动物。