首页> 外文期刊>African Journal of Biotechnology >Genetic structure and variability within and among populations of the fat-tailed Barbarine sheep breed using microsatellites markers
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Genetic structure and variability within and among populations of the fat-tailed Barbarine sheep breed using microsatellites markers

机译:使用微卫星标记的肥尾巴巴宾羊品种内部和群体之间的遗传结构和变异性

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This study investigates the genetic diversity and the structure of the most dominant native fat-tailed Tunisian sheep breed (Barbarine, BAR) using microsatellite markers. Blood samples from 183 BAR animals, belonging to 4 subpopulations according to phenotypic traits, were collected across all regions in Tunisia. BAR animals and 31 Appenninica Italian sheep breed (APP) used as an out-group were genotyped at 17 microsatellites loci. A total of 270 alleles were identified with average gene diversity equal to 0.812. The mean observed heterozygosity (0.745) and allelic richness (8.09) estimates were high within BAR breed highlighting notable levels of genetic diversity. The low FIS (0.078) and FIT (0.084) values indicate low level of inbreeding within this breed while a low FST estimate (0.007) shows that the subpopulations are not genetically differentiated. The clustering analysis performed with ‘structure’ detected the absence of substructures and the clear uniqueness of the BAR. Tomiuk and Loeschcke’s DTL genetic distance values con?rmed the distinction between APP and BAR breeds. Results arising from our microsatellites analysis represent a starting point for the valorization of this indigenous Tunisian sheep breed. A suggestion was made to monitor its genetic variability and for the preservation of this breed for the next generations.
机译:这项研究使用微卫星标记研究了最主要的本地肥尾突尼斯绵羊品种(Barbarine,BAR)的遗传多样性和结构。从突尼斯的所有地区收集了183种BAR动物的血样,根据表型特征,它们属于4个亚群。在17个微卫星基因座对BAR动物和31个Appenninica意大利绵羊品种(APP)进行了分组。总共鉴定了270个等位基因,平均基因多样性等于0.812。在BAR品种中平均观察到的杂合度(0.745)和等位基因丰富度(8.09)估计值很高,突出显示了遗传多样性的显着水平。较低的FIS(0.078)和FIT(0.084)值表明该品种的近交水平较低,而较低的FST估计值(0.007)表明该亚种群没有遗传分化。使用“结构”执行的聚类分析检测到没有子结构,并且BAR清晰可见。 Tomiuk和Loeschcke的DTL遗传距离值证实了APP和BAR品种之间的区别。我们的微卫星分析得出的结果代表了这种突尼斯土著绵羊品种的增值起点。有人建议监测其遗传变异性,并将其保存给下一代。

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