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Genetic diversity in European Pisum germplasm collections

机译:欧洲豌豆种质资源的遗传多样性

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摘要

The distinctness of, and overlap between, pea genotypes held in several Pisum germplasm collections has been used to determine their relatedness and to test previous ideas about the genetic diversity of Pisum. Our characterisation of genetic diversity among 4,538 Pisum accessions held in 7 European Genebanks has identified sources of novel genetic variation, and both reinforces and refines previous interpretations of the overall structure of genetic diversity in Pisum. Molecular marker analysis was based upon the presence/absence of polymorphism of retrotransposon insertions scored by a high-throughput microarray and SSAP approaches. We conclude that the diversity of Pisum constitutes a broad continuum, with graded differentiation into sub-populations which display various degrees of distinctness. The most distinct genetic groups correspond to the named taxa while the cultivars and landraces of Pisum sativum can be divided into two broad types, one of which is strongly enriched for modern cultivars. The addition of germplasm sets from six European Genebanks, chosen to represent high diversity, to a single collection previously studied with these markers resulted in modest additions to the overall diversity observed, suggesting that the great majority of the total genetic diversity collected for the Pisum genus has now been described. Two interesting sources of novel genetic variation have been identified. Finally, we have proposed reference sets of core accessions with a range of sample sizes to represent Pisum diversity for the future study and exploitation by researchers and breeders.Electronic supplementary materialThe online version of this article (doi:10.1007/s00122-012-1839-1) contains supplementary material, which is available to authorized users.
机译:几种豌豆种质资源中保存的豌豆基因型的独特性和重叠性已被用来确定它们的相关性,并检验关于豌豆遗传多样性的先前观点。我们对欧洲7个基因库中4,538个Pisum品种的遗传多样性进行了鉴定,从而确定了新的遗传变异的来源,并加强和完善了对Pisum遗传多样性总体结构的先前解释。分子标记分析是基于高通量微阵列和SSAP方法对反转录转座子插入的多态性的存在/不存在进行的。我们得出的结论是,Pisum的多样性构成了一个广泛的连续体,并逐渐分化为显示不同程度不同程度的亚种群。最独特的遗传群体与命名的分类单元相对应,而豌豆(Pisum sativum)的品种和地方品种可分为两大类,其中一种对现代品种而言非常丰富。从六个欧洲种质库中选出代表高多样性的种质集添加到先前用这些标记物研究的单个集合中,导致观察到的总体多样性适度添加,这表明为Pisum属收集的总遗传多样性中的绝大部分现在已经描述。已经发现了两个有趣的新颖遗传变异的来源。最后,我们提出了一系列核心样本的参考集,以代表Pisum的多样性,供研究人员和育种者将来研究和利用。电子补充材料本文的在线版本(doi:10.1007 / s00122-012-1839- 1)包含补充材料,授权用户可以使用。

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