Borodin А М, Alekseev Ya I, Gerasimov K E, Konovalova N V, Тerentjeva E V, Efimov D N, Emanuilova Zh V, Tuchemskiy L I, Komarov A A, Fisinin V I
Breeding and Genetic Center "Smena", Bereznyaki, Moscow Region, Russia Institute of Medical and Biological Research, Nizhnii Novgorod, Russia.
Limited liability company "Syntol", Moscow, Russia Institute for Analytical Instrumentation of the Russian Academy of Sciences, St. Petersburg, Russia.
Vavilovskii Zhurnal Genet Selektsii. 2020 Nov;24(7):755-760. doi: 10.18699/VJ20.670.
The quantitative trait loci associated with the immune properties of chickens are of interest from the point of view of obtaining animals resistant to infectious agents using marker-assisted selection. In the process of selecting markers for genomic selection in broiler-type chickens, a non-standard genotype frequency of the RACK1 gene allele (SNP Gga_rs15788101) in the B5 line of broiler-type chicken cross Smena 8 was identified and it was suggested that this gene was involved in selection. Therefore, it was decided to investigate the available polymorphisms in the three genes responsible for the IgY titer (DMA, RACK1 and CD1B). Molecular typing of single nucleotide polymorphisms of three loci revealed an approach to fixation of the unfavorable allele of the DMA gene (SNP Gga_rs15788237), an approach to fixation of the unfavorable allele of the RACK1 gene and the prevalence of the favorable CD1B gene allele (SNP Gga_rs16057130). Analysis of the haplotypes revealed a strong linkage disequilibrium of these genes. This suggests that these genes experience selection pressure. Analysis of the protein-coding sequences of the CD1B and DMA genes of various breeds of chickens revealed a negative selection of these genes. In order to understand whether the fixation of the studied alleles is the result of artificial selection of the B5 line of the cross Smena 8, an analysis of similar loci in layer chickens Hisex White was carried out. The frequencies of the alleles at the loci of the CD1B gene (Gga_rs16057130) and the RACK1 gene (Gga_rs15788101) in the Hisex White chicken genome differ from the frequencies of the alleles obtained for chickens of the B5 line of the cross Smena 8. It can be assumed that the fixation of the allele in the DMA gene (SNP Gga_rs15723) is associated with artificial or natural selection, consistent in broilers and layers. Changes in the loci Gga_rs16057130 and Gga_rs15788101 in the B5 line of the Smena 8 chickens are most likely associated with artificial selection of broiler productivity traits, which can subsequently lead to fixation of alleles at these loci. Artificial breeding of chickens leads to degradation of the variability of genes encoding elements of the immune system, which can cause a decrease in resistance to various diseases. The study of the negative impact of selection of economic traits on immunity should provide means to mitigate negative consequences and help find ways to obtain disease-resistant animals.
从利用标记辅助选择获得对感染因子具有抗性的动物的角度来看,与鸡的免疫特性相关的数量性状位点备受关注。在为肉用型鸡进行基因组选择筛选标记的过程中,在肉用型鸡Smena 8杂交系的B5品系中鉴定出RACK1基因等位基因(SNP Gga_rs15788101)的基因型频率不标准,并推测该基因参与了选择过程。因此,决定研究负责卵黄抗体效价的三个基因(DMA、RACK1和CD1B)中的现有多态性。对三个位点的单核苷酸多态性进行分子分型,揭示了DMA基因(SNP Gga_rs15788237)不利等位基因的固定方式、RACK1基因不利等位基因的固定方式以及有利的CD1B基因等位基因(SNP Gga_rs16057130)的流行情况。单倍型分析表明这些基因存在很强的连锁不平衡。这表明这些基因受到选择压力。对不同品种鸡的CD1B和DMA基因的蛋白质编码序列分析显示这些基因受到负选择。为了弄清楚所研究等位基因的固定是否是Smena 8杂交系B5品系人工选择的结果,对海赛克斯白蛋鸡的相似位点进行了分析。海赛克斯白蛋鸡基因组中CD1B基因(Gga_rs16057130)和RACK1基因(Gga_rs15788101)位点的等位基因频率与Smena 8杂交系B5品系鸡所获得的等位基因频率不同。可以推测,DMA基因(SNP Gga_rs15723)中该等位基因的固定与人工选择或自然选择有关,在肉鸡和蛋鸡中是一致的。Smena 8鸡的B5品系中Gga_rs16057130和Gga_rs15788101位点的变化很可能与肉用型鸡生产性能性状的人工选择有关,这随后可能导致这些位点的等位基因固定。鸡的人工选育导致编码免疫系统元件的基因变异性降低,这可能导致对各种疾病的抵抗力下降。研究经济性状选择对免疫力的负面影响应能提供减轻负面后果的方法,并有助于找到获得抗病动物的途径。