Analysis of the Genetic Structures of 29 Horse Breeds of Russian Selection by STR Markers

IF 0.6 4区 生物学 Q4 GENETICS & HEREDITY Russian Journal of Genetics Pub Date : 2024-08-23 DOI:10.1134/s1022795424700510
N. V. Blohina, L. A. Khrabrova
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Abstract—The current stage of genetic certification of horses of cultural and local breeds based on microsatellite analysis makes it possible to quite effectively carry out identification and genetic examination of the origin of breeding animals, as well as solve the problem of assessing and preserving genetic resources. With a reduction in the number of breeding stock to 200–300 mares observed in a number of breeds, the threat of a decrease in the genetic diversity of populations and the accumulation of genetic load increases, which necessitates the need to study and monitor the genetic structure of horse breeds. In this regard, our comparative genetic analysis of polymorphism of 17 microsatellite loci in 20 541 horses of 29 cultural and local breeds allows us to certify the basic part of the genetic resources of the horse breeding of the Russian Federation. including riding, trotter, draft, and local breeds. During the genetic population analysis of the studied breeds, basic parameters were assessed: the total number of allele variants (Na), the effective number of alleles (Ae), the average number of alleles per locus (MNA), the level of observed (Ho) and expected heterozygosity (He), as well as the coefficient of intrapopulation inbreeding Fis. Phylogenetic relationships of breeds were assessed using the R and R Studio software packages. Among horse breeds of different specializations, the highest values of all indicators of genetic diversity (Ae, Ho, He, and Na) were determined in aboriginal populations. In the allele pool of local horse breeds, there were rare alleles ASB2T, HMS7S, HMS6J, HMS6H, HMS2T, HMS1O, HTG7L, HTG6L, HTG6H, VHL20S, ASB17Z, ASB17X, ASB17U, LEX3S, LEX3R, and CA425E, which were absent in horses of stud breeds. Among the riding horse breeds created in Russia, the Budennovskaya, Donskaya, and Kabardian horse breeds stood out due to the presence of rare alleles. Alleles ASB2G, ASB2F, HMS2F, HTG7Q, and ASB23O were found in trotter horses, which were not identified in the genetic structure of other breeds. The phylogenetic analysis showed the division of horse breeds into two clear subclusters, the first of which included only stud breeds. The second cluster united all the native breeds, as well as the Orlov Trotter and a group of draft breeds, which were used for many years as improvers of the local horse population. The analysis of the genetic structure of domestic horse breeds revealed a fairly high reserve of diversity even in small populations, which is an indispensable condition for successful selection in horse breeding.

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通过 STR 标记分析俄罗斯 29 个马品种的遗传结构
摘要--现阶段基于微卫星分析对文化和地方品种马匹进行遗传认证,可以相当有效地对繁殖动物的来源进行鉴定和遗传检查,并解决评估和保护遗传资源的问题。随着一些马种的种群数量减少到 200-300 头母马,种群遗传多样性下降和遗传负荷积累的威胁也随之增加,因此有必要研究和监测马种的遗传结构。为此,我们对 29 个文化马种和地方马种的 20 541 匹马的 17 个微卫星位点的多态性进行了比较遗传分析,从而对俄罗斯联邦马育种遗传资源的基本部分进行了认证。在对所研究品种进行遗传群体分析期间,对基本参数进行了评估:等位基因变异总数(Na)、有效等位基因数(Ae)、每个位点的平均等位基因数(MNA)、观察到的杂合度(Ho)和预期杂合度(He)水平,以及种群内近交系数 Fis。使用 R 和 R Studio 软件包评估了马种的系统发育关系。在不同专业的马匹品种中,遗传多样性的所有指标(Ae、Ho、He和Na)的最高值均出现在原住民种群中。在当地马种的等位基因库中,有稀有等位基因 ASB2T、HMS7S、HMS6J、HMS6H、HMS2T、HMS1O、HTG7L、HTG6L、HTG6H、VHL20S、ASB17Z、ASB17X、ASB17U、LEX3S、LEX3R 和 CA425E,这些等位基因在种马中是不存在的。在俄罗斯培育的骑马品种中,布杰诺夫斯卡娅(Budennovskaya)、东斯卡娅(Donskaya)和卡巴尔德(Kabardian)马品种因存在稀有等位基因而脱颖而出。在木马中发现了 ASB2G、ASB2F、HMS2F、HTG7Q 和 ASB23O 等位基因,这些等位基因在其他马种的遗传结构中没有发现。系统进化分析表明,马的品种分为两个明显的亚群,第一个亚群只包括种马品种。第二个亚群包括所有本地马种以及奥尔洛夫特罗特马和一组草种,这些马种多年来一直被用作当地马群的改良剂。对家养马品种遗传结构的分析表明,即使在小种群中,马的多样性储备也相当高,而这正是成功选育马匹不可或缺的条件。
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来源期刊
Russian Journal of Genetics
Russian Journal of Genetics 生物-遗传学
CiteScore
1.00
自引率
33.30%
发文量
126
审稿时长
1 months
期刊介绍: Russian Journal of Genetics is a journal intended to make significant contribution to the development of genetics. The journal publishes reviews and experimental papers in the areas of theoretical and applied genetics. It presents fundamental research on genetic processes at molecular, cell, organism, and population levels, including problems of the conservation and rational management of genetic resources and the functional genomics, evolutionary genomics and medical genetics.
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