使用微卫星标记分析南方肉羊品种等位基因库的特征

А. Ivannikova, А. Solovieva, Т. Deniskova
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Analysis of the population genetic parameters of sheep of the southern meat breed showed that the average number of alleles per locus (Na) and the effective number of alleles per locus (Ne) exceed the sample average by 1,72 and 0,58 alleles, respectively. The expected heterozygosity (He) was 0,766, while the observed heterozygosity (Ho) was 0,741. The coefficient of inbreeding (Fis) was 0,03. The analysis of the principal components, carried out for the studied breeds in the planes of the first and third principal components, did not fundamentally change the nature of the spatial clustering of the studied groups of sheep. Analysis of the principal coordinates, performed on the basis of calculation of pairwise Fst values, showed that the southern meat breed is located in the upper left quadrant and is isolated from other breeds. 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摘要

目的:利用微位点描述南方肉羊等位基因库的特征。生物材料是从拉多日斯基育种厂挑选的 80 只南方肉用品种绵羊的耳朵上摘取的。20 只东弗里斯兰绵羊、33 只多塞特绵羊和 63 只罗曼诺夫绵羊被用来进行比较。选取了九个微卫星位点(INRA005、SPS113、INRA23、MAF65、McM527、OarCP49、HSC、OarAE129、MAF214)作为 DNA 标记。使用 ABI3130x1 基因分析仪分析了微卫星的变异性。结果由 GenAIEx 6.503 程序处理,并计算出等位基因库和遗传多样性的主要指标。对南方肉羊种群遗传参数的分析表明,每个位点的平均等位基因数(Na)和每个位点的有效等位基因数(Ne)分别比样本平均值高出 1.72 和 0.58 个等位基因。预期杂合度(He)为 0.766,而观察到的杂合度(Ho)为 0.741。近交系数(Fis)为 0.03。在第一和第三主成分平面上对所研究品种进行的主成分分析并没有从根本上改变所研究羊群的空间聚类性质。在计算成对 Fst 值的基础上进行的主坐标分析表明,南方肉羊品种位于左上象限,与其他品种隔离开来。Fst 指标值表明,南方肉用种羊与多塞特种羊之间存在中度遗传分化(Fst=0,116),南方肉用种羊与罗曼诺夫种羊之间存在显著遗传分化(Fst=0,161)。对南方肉羊品种与东弗里斯兰羊、多塞特羊和罗马羊品种的群体遗传参数进行的分析表明,总体而言,从每个位点的等位基因总数和每个位点的有效等位基因数来看,南方肉羊品种具有较高的遗传多样性。杂合子不足的趋势可能是由于俄罗斯唯一的孑遗基因库所代表的种群数量有限。
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Characteristic of allele pool of sheep of the southern meat breed using microsatellite markers
Purpose: to characterize the allele pool of sheep of the southern beef breed using microsatellites.Materials and methods. The biomaterial was ear’s plucks from 80 sheep of the southern meat breed, selected from the Ladozhsky Breeding Plant. 20 East Friesian sheep, 33 Dorset sheep and 63 Romanov sheep were used for comparison. Nine microsatellite loci (INRA005, SPS113, INRA23, MAF65, McM527, OarCP49, HSC, OarAE129, MAF214) were selected as DNA markers. Microsatellite variability was analyzed using the ABI3130x1 Genetic Analyzer. The results were processed in the GenAIEx 6.503 program, with the help of which the main indicators characterizing the state of the allele pool and genetic diversity were calculated.Results. Analysis of the population genetic parameters of sheep of the southern meat breed showed that the average number of alleles per locus (Na) and the effective number of alleles per locus (Ne) exceed the sample average by 1,72 and 0,58 alleles, respectively. The expected heterozygosity (He) was 0,766, while the observed heterozygosity (Ho) was 0,741. The coefficient of inbreeding (Fis) was 0,03. The analysis of the principal components, carried out for the studied breeds in the planes of the first and third principal components, did not fundamentally change the nature of the spatial clustering of the studied groups of sheep. Analysis of the principal coordinates, performed on the basis of calculation of pairwise Fst values, showed that the southern meat breed is located in the upper left quadrant and is isolated from other breeds. The values of the Fst indicator indicate that there is moderate genetic differentiation between the southern meat and dorset breeds (Fst=0,116), and significant genetic differentiation between the southern meat and romanov breeds (Fst=0,161).Conclusion. An analysis of the population genetic parameters of sheep of the southern meat breed, in comparison with the east friesian, dorset and romanov breeds, showed that, in general, in terms of the total number of alleles per locus and the number of effective alleles per locus, it is characterized by a high level of genetic diversity. The presence of a tendency towards a deficiency of heterozygotes is probably explained by the limited population, represented by the only relict gene pool in Russia.
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