基于STR基因座多态性的牛和牛牛的鉴别。

IF 0.9 Q3 AGRICULTURE, MULTIDISCIPLINARY
K B Chekirov, Zh T Isakova, V N Kipen, M I Irsaliev, S B Mukeeva, K A Aitbaev, G A Sharshenalieva, S B Beyshenalieva, B U Kydyralieva
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引用次数: 0

摘要

利用分子遗传分析对亲缘关系密切的生物物种进行分化,对于养殖农场动物、创建杂交系、保持品种、系和分层的遗传纯度非常重要。基于STR基因座多态性的牛牛和牛牛分化将有助于保持这些物种的遗传隔离,并识别杂交个体。本研究的目的是通过分子遗传学分析,评估15个微卫星基因座的分化潜力,以区分在Kalmak Ashuu高地地区(Kochkor区,Naryn区,吉尔吉斯共和国)饲养的家养牦牛(B.grunniens)和三个品种(Aberdeen Angus、Holstein和Alatau)的牛(B.taurus)。样本在15个微卫星位点(ETH3、INRA023、TGLA227、TGLA126、TGLA122、SPS115、ETH225、TGLA53、BM2113、BM1824、ETH10、BM1818、CSM66、ILSTS006和CSRM60)进行基因分型。其中12个基因座来自ISAG推荐的标准标记组。使用GenAlEx v.6.503、Structure v.2.3.4、PAST v.4.03和POPHELPER v1.0.10进行统计分析。使用structure v.2.3.4和15 STR基因座基因分型对样本的亚群结构进行分析,结果表明,将样本分配给牛双歧杆菌的准确率为99.6±0.4%,而将样本分配到格鲁氏双歧杆菌的准确性为99.2±2.6%。在15个STR中,具有最大FST计算值的菌株(包括BM1818(0.056)、BM1824(0.041)、BM2113(0.030)、CSSM66(0.034)和ILSTS006(0.063))具有最大的区分灰牛和牛牛的潜力。仅使用这5个微卫星位点对灰牛进行分类的准确率为98.8±3.4%,与牛牛相似,为99.1±1.2%。该方法基于对5个STR基因座的分子遗传学分析,可用于吉尔吉斯斯坦灰蝶育种和繁殖计划的快速检测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Differentiation of Bos grunniens and Bos taurus based on STR locus polymorphism.

Differentiation of Bos grunniens and Bos taurus based on STR locus polymorphism.

Differentiation of Bos grunniens and Bos taurus based on STR locus polymorphism.

Differentiation of Bos grunniens and Bos taurus based on STR locus polymorphism.

Differentiation of closely related biological species using molecular genetic analysis is important for breeding farm animals, creating hybrid lines, maintaining the genetic purity of breeds, lines and layering. Bos grunniens and Bos taurus differentiation based on STR locus polymorphism will help maintain the genetic isolation of these species and identify hybrid individuals. The aim of this study is to assess the differentiating potential of 15 microsatellite loci to distinguish between domestic yak (B. grunniens) bred in the Kalmak-Ashuu highland region (Kochkor district, Naryn region, Kyrgyz Republic) and cattle (B. taurus) of three breeds (Aberdeen-Angus, Holstein and Alatau) using molecular genetic analysis. The samples were genotyped at 15 microsatellite loci (ETH3, INRA023, TGLA227, TGLA126, TGLA122, SPS115, ETH225, TGLA53, BM2113, BM1824, ETH10, BM1818, CSSM66, ILSTS006 and CSRM60). Twelve of the loci were from the standard markers panel recommended by ISAG. Statistical analysis was performed using GenAlEx v.6.503, Structure v.2.3.4, PAST v.4.03, and POPHELPER v1.0.10. The analysis of the samples' subpopulation structure using the Structure v.2.3.4 and 15 STR locus genotyping showed that the accuracy of assigning a sample to B. taurus was 99.6 ± 0.4 %, whereas the accuracy of assigning a sample to B. grunniens was 99.2 ± 2.6 %. Of the 15 STRs, the greatest potential to differentiate B. grunniens and B. taurus was found in those with the maximal calculated FST values, including BM1818 (0.056), BM1824 (0.041), BM2113 (0.030), CSSM66 (0.034) and ILSTS006 (0.063). The classification accuracy of B. grunniens using only these five microsatellite loci was 98.8 ± 3.4 %, similar for B. taurus, 99.1 ± 1.2 %. The proposed approach, based on the molecular genetic analysis of 5 STR loci, can be used as an express test in Kyrgyzstan breeding and reproduction programs for B. grunniens.

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来源期刊
Vavilovskii Zhurnal Genetiki i Selektsii
Vavilovskii Zhurnal Genetiki i Selektsii AGRICULTURE, MULTIDISCIPLINARY-
CiteScore
1.90
自引率
0.00%
发文量
119
审稿时长
8 weeks
期刊介绍: The "Vavilov Journal of genetics and breeding" publishes original research and review articles in all key areas of modern plant, animal and human genetics, genomics, bioinformatics and biotechnology. One of the main objectives of the journal is integration of theoretical and applied research in the field of genetics. Special attention is paid to the most topical areas in modern genetics dealing with global concerns such as food security and human health.
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