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首页> 外文期刊>Livestock Science >Pedigree relatedness and pseudo-phenotypes as a first approach to assess and maintain genetic diversity of the Walloon Pietrain pig population
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Pedigree relatedness and pseudo-phenotypes as a first approach to assess and maintain genetic diversity of the Walloon Pietrain pig population

机译:血统相关性和伪表型作为评估和维持山脉泛猪群的遗传多样性的第一种方法

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The breeding of pure Pietrain animals is currently performed in two different contexts: industrial lines and individual breeders. As one of the four main pig breeds worldwide, the Pietrain breed might not be considered to be endangered. However, in Wallonia (southern Belgium), even though the Belgian Pietrain programme aims to preserve the Walloon Pietrain population through cryopreservation of semen of relevant boars, only 10 pure Pietrain breeders remain and produce traditional breeding stock. Current breeders are retiring and no new breeders are replacing them. Moreover, the genetic diversity of the pigs from these individual breeders may highly contribute to the global gene pool of the breed, therefore it is important to assess this diversity. This was done on a local level by using pedigree relatedness but also differences in phenotypes. Pedigree parameters such as effective population size (N-e), genetic diversity and inbreeding coefficients were estimated for 219 boars from which offspring performances were recorded at the Walloon test station. A multi-dimensional scaling (MDS) was performed based on genetic distances. Considering the current owners of the boars, a principal component analysis (PCA) was made on deregressed breeding values (pseudo-phenotypes) based on the performances of their crossbred offspring at the test station. The N-e was 223, the genetic diversity parameter was 97.96%, while the mean inbreeding coefficient was 2.74%. The MDS identified four main clusters of boars. Two principal components indicated two major directions of selection: growth or meat traits. Genetically close boars did not necessarily show similar performances in their offspring. Different performances for genetically linked animals should reflect the breeding objectives of their owner, a practice that was confirmed by most owners during interviews. Pedigree, phenotypes and genotypes provide complementary information and therefore should be used simultaneously in the implementation of conservation programmes. These first results also showed that the genetic diversity of the Walloon Pietrain population is so far well preserved. However, recommendations need to be developed in order to maintain it. For example, boars provided to the progeny-testing scheme should come from equally contributing breeders, allowing the Belgian Pietrain programme to sample boars from a larger variety of animals taking into account genetic and phenotypic diversity. Finally, in-situ preservation of Pietrain diversity will require the development of new tools and mating schemes.
机译:目前在两种不同的背景下进行纯Pietrain动物的繁殖:工业生产线和个体育种者。作为全球四大品种之一,Pietrain品种可能不会被视为濒临灭绝。然而,在瓦隆尼亚(比利时南部),即使比利时普洱train计划旨在通过对相关公猪的精液进行冷冻保存,仍然只有10种纯Pietrain育种者仍然生产并产生传统的繁殖库存。目前的饲养员正在退休,没有新的育种者正在取代它们。此外,这些个体育种者的猪的遗传多样性可能对该品种的全球基因池有高度贡献,因此评估这种多样性是重要的。这是通过使用血统相关性的局部级别完成,但表型差异也是如此。据估计诸如有效群体大小(N-E),遗传多样性和近距离融合系数的谱系参数估计了219首猪,从中记录了后代表演,在沃隆测试站记录了后代性能。基于遗传距离执行多维缩放(MDS)。考虑到公猪的当前所有者,基于在测试站的杂交后代的性能的情况下对重定育种价值(伪表型)进行了主要成分分析(PCA)。 N-E为223,遗传多样性参数为97.96%,而平均近亲繁殖系数为2.74%。 MDS确定了四个主要的公猪集群。两个主要成分表示两个主要选择方向:生长或肉类特征。基因上关闭公猪并不一定在其后代表现出类似的性能。转基因动物的不同表现应反映其所有者的育种目标,这是在访谈中大多数所有者确认的做法。谱系,表型和基因型提供互补信息,因此应在实施保护计划的实施中同时使用。这些第一个结果还表明,山湖Pietrain人口的遗传多样性是迄今为止的保存。但是,需要制定建议以维持它。例如,提供给后代测试方案的公猪应该来自同等贡献的育种者,允许比利时普国的计划从遗传和表型多样性的诸如较大种类的动物进行样本公猪。最后,原位保存Pietrain多样性将需要开发新工具和交配方案。

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