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首页> 外文期刊>Genetics and molecular biology: publication of the Sociedade Brasileira de Genetica >Molecular characterization and genetic structure of the Nero Siciliano pig breed
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Molecular characterization and genetic structure of the Nero Siciliano pig breed

机译:Nero Siciliano猪品种的分子表征和遗传结构

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Nero Siciliano is an autochthonous pig breed that is reared mainly in semi-extensive systems in northeastern Sicily. Despite its economic importance and well-appreciated meat products, this breed is currently endangered. Consequently, an analysis of intra-breed variability is a fundamental step in preserving this genetic resource and its breeding system. In this work, we used 25 microsatellite markers to examine the genetic composition of 147 unrelated Nero Siciliano pigs. The total number of alleles detected (249, 9.96 per locus) and the expected heterozygosity (0.708) indicated that this breed had a high level of genetic variability. Bayesian cluster analysis showed that the most likely number of groups into which the sample could be partitioned was nine. Based on the proportion of each individuals genome derived from ancestry, pigs with at least 70% of their genome belonging to one cluster were assigned to that cluster. The cluster size ranged from 7 to 17 (n = 108). Genetic variability in this sub-population was slightly lower than in the whole sample, genetic differentiation among clusters was moderate (F ST 0.125) and the F IS value was 0.011. NeighborNet and correspondence analysis revealed two clusters as the most divergent. Molecular coancestry analysis confirmed the good within-breed variability and highlighted the clusters that retained the highest genetic diversity.
机译:Nero Siciliano是土生土长的猪品种,主要在西西里岛东北部的半粗养系统中饲养。尽管具有重要的经济意义和肉类产品的知名度,但该品种目前仍处于濒危状态。因此,对品种内部变异性的分析是保护这种遗传资源及其育种系统的基本步骤。在这项工作中,我们使用了25个微卫星标记来检查147头无关的Nero Siciliano猪的遗传组成。检测到的等位基因总数(每个位点249个,9.96个)和预期的杂合度(0.708个)表明该品种具有很高的遗传变异性。贝叶斯聚类分析表明,可以将样本划分为多个组的最可能数目为九。根据每个祖先个体基因组的比例,将基因组至少70%属于一个簇的猪分配到该簇。群集大小范围从7到17(n = 108)。该亚人群的遗传变异性略低于整个样本,簇之间的遗传分化中等(F ST 0.125),F IS值为0.011。 NeighborNet和对应关系分析显示,两个群集的差异最大。分子祖先分析证实了良好的品种内变异性,并突出了保留了最高遗传多样性的簇。

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