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Genetic diversity and allelic richness in Spanish wild and domestic pig population estimated from microsatellite markers

机译:根据微卫星标记估算西班牙野生和家养猪种群的遗传多样性和等位基因丰富度

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Genetic diversity measures support the conservation decisions aiming to maintain the genetic flexibility of animal populations and breeds. Many of these measures utilize neutral genetic markers and are based on classical concepts as coancestry and expected heterozygosity. As a component of genetic diversity, allelic richness is also important in conservation genetics. Its measurement requires that variations of sample size be taken into account using either the rarefaction and extrapolation techniques. Methods to estimate genetic diversity and allelic richness were compared in this study. DNA samples from 68 wild boars and 234 domestic pigs of the Duroc and Iberian breeds, including 63 animals of the Torbiscal and Guadyerbas Iberian lines, were genotyped for 18 microsatellites (one per autosome). As the results outline, the rank of these pig populations according to their contributions to the diversity will be different depending on the criteria utilized, because genetic diversity and private allelic richness do not exactly address the same type of diversity. Rarefaction and extrapolation-based techniques also produce partially discrepant results. The desirable integration of allelic richness into the diversity theory poses at the moment some unsolved difficulties.
机译:遗传多样性措施支持旨在维持动物种群和品种遗传灵活性的保护决定。这些措施中有许多利用中性遗传标记,并且基于经典概念,例如coancestry和预期的杂合性。作为遗传多样性的一部分,等位基因丰富度在保护遗传学中也很重要。它的测量要求使用稀疏和外推技术考虑样本大小的变化。本研究比较了估计遗传多样性和等位基因丰富度的方法。对来自杜洛克(Duroc)和伊比利亚(Iberian)品种的68只野猪和234头家猪(包括63只Torbiscal和Guadyerbas伊比利亚系的动物)的DNA样本进行了18型微卫星基因分型(每个常染色体一个)。如结果概述所示,根据所使用的标准,这些猪种群根据其对多样性的贡献的等级将有所不同,因为遗传多样性和私人等位基因丰富性并不完全针对同一类型的多样性。基于折射和外推的技术也会产生部分差异的结果。目前,将等位基因丰富性理想地整合到多样性理论中提出了一些尚未解决的困难。

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