Gerasimov Nikolay P, Dzhulamanov K M, Lebedev S V, Kolpakov V I
Federal Research Centre of Biological Systems and Agrotechnologies RAS, Orenburg, Russian Federation.
Vet World. 2023 Aug;16(8):1584-1592. doi: 10.14202/vetworld.2023.1584-1592. Epub 2023 Aug 10.
Improving the feed efficiency of beef cattle is necessary to increase the profitability of meat production. Implementing marker-assisted selection breeding systems can improve the genetic potential of beef cattle for increased productivity. This research aimed to study the effects of insulin-like growth factor (IGF)-1 C472T, growth hormone (GH) C2141G, and GH receptor (GHR) T914A polymorphisms on growth performance and feed efficiency in young Kazakh white-headed cattle.
Young Kazakh white-headed cattle (n = 50) were grouped after weaning according to sex (28 bulls and 22 heifers) and they were genotyped according to the IGF-1 C472T, GH C2141G, and GHR T914A polymorphisms. The test period was conducted from 8 to 15 months of age. The experimental animals were evaluated for live weight (LW) at the beginning and end of the test period. They were also assessed for average daily gain, hip height, metabolic mid-weight (MMWT), actual dry matter intake (DMI), and residual feed intake (RFI).
Significant differences in MMWT were found between the bulls with the IGF-1 and IGF-1 genotypes, which was a 2.2 kg increase in heterozygous cattle (p < 0.05). Heterozygous IGF-1 bulls differed with a higher DMI of 0.087 kg/day (p < 0.05) compared to IGF-1 homozygotes. Carriers of the IGF-1 genotype had the greatest feed efficiency at 0.068 kg/day (p < 0.05). Heifers with the GH genotype differed in their maximum DMI with an increase of 1.17%-1.57% (p < 0.05) relative to the other genotypes. The G allele in the GH C2141G polymorphism was associated with better (p < 0.05) feed efficiency in the Kazakh white-headed breed. The minimum DMI and RFI in GHR T914A heterozygous heifers were significantly inferior (p < 0.05) to the other genotypes.
Association studies of the IGF-1 C472T, GH C2141G, and GHR T914A polymorphisms indicate a relationship between growth, development, and feed efficiency with the genetic characteristics of young Kazakh white-headed cattle. A significant (p < 0.05) dominant effect was found in the IGF-1 gene in bulls and in the GHR gene in heifers, which should be considered when breeding with heterogeneous parental pairs. The negative effect of the allele substitution in the IGF-1 C472T polymorphism was observed in the LW of heifers (-3.25 kg) at the age of 8 months and bulls (-6.05 kg) at 15 months. The substitution in the GH C2141G polymorphism was associated with a significant reduction in DMI by 0.036 kg (p < 0.05) and an increase in feed efficiency by 0.023 kg (p < 0.05) during the rearing of heifers. These results can improve the production efficiency of mature herds of Kazakh white-headed cattle.
提高肉牛的饲料效率对于提高肉类生产的盈利能力至关重要。实施标记辅助选择育种系统可以提高肉牛的遗传潜力,从而提高生产力。本研究旨在探讨胰岛素样生长因子(IGF)-1 C472T、生长激素(GH)C2141G和生长激素受体(GHR)T914A基因多态性对哈萨克白头犊牛生长性能和饲料效率的影响。
将50头哈萨克白头犊牛在断奶后按性别分组(28头公牛和22头母牛),并根据IGF-1 C472T、GH C2141G和GHR T914A基因多态性进行基因分型。试验期为8至15月龄。在试验期开始和结束时对实验动物的体重(LW)进行评估。还对它们的平均日增重、体高、代谢体重(MMWT)、实际干物质摄入量(DMI)和剩余饲料摄入量(RFI)进行了评估。
IGF-1不同基因型的公牛在MMWT上存在显著差异,杂合牛增加了2.2千克(p < 0.05)。与IGF-1纯合子相比,杂合IGF-1公牛的DMI更高,为0.087千克/天(p < 0.05)。IGF-1基因型的携带者饲料效率最高,为0.068千克/天(p < 0.05)。GH基因型的母牛最大DMI有所不同,相对于其他基因型增加了1.17%-1.57%(p < 0.05)。GH C2141G基因多态性中的G等位基因与哈萨克白头品种更好的(p < 0.05)饲料效率相关。GHR T914A杂合母牛的最低DMI和RFI显著低于(p < 0.05)其他基因型。
对IGF-1 C472T、GH C2141G和GHR T914A基因多态性的关联研究表明,生长、发育和饲料效率与哈萨克白头犊牛的遗传特征之间存在关联。在公牛的IGF-1基因和母牛的GHR基因中发现了显著的(p < 0.05)显性效应,在异质亲本配对育种时应予以考虑。在8月龄的母牛(-3.25千克)和15月龄的公牛(-6.05千克)中,观察到IGF-1 C472T基因多态性中等位基因替代的负面影响。在母牛饲养期间,GH C2141G基因多态性中的替代与DMI显著降低0.036千克(p < 0.05)和饲料效率提高0.023千克(p < 0.05)相关。这些结果可以提高哈萨克白头成年牛群的生产效率。