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Construction of Core Collections Suitable for Association Mapping to Optimize Use of Mediterranean Olive (Olea europaea L.) Genetic Resources

机译:构建适合协会作图以最优化利用地中海橄榄(Olea europaea L.)遗传资源的核心集合

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摘要

Phenotypic characterisation of germplasm collections is a decisive step towards association mapping analyses, but it is particularly expensive and tedious for woody perennial plant species. Characterisation could be more efficient if focused on a reasonably sized subset of accessions, or so-called core collection (CC), reflecting the geographic origin and variability of the germplasm. The questions that arise concern the sample size to use and genetic parameters that should be optimized in a core collection to make it suitable for association mapping. Here we investigated these questions in olive (Olea europaea L.), a perennial fruit species. By testing different sampling methods and sizes in a worldwide olive germplasm bank (OWGB Marrakech, Morocco) containing 502 unique genotypes characterized by nuclear and plastid loci, a two-step sampling method was proposed. The Shannon-Weaver diversity index was found to be the best criterion to be maximized in the first step using the Core Hunter program. A primary core collection of 50 entries (CC50) was defined that captured more than 80% of the diversity. This latter was subsequently used as a kernel with the Mstrat program to capture the remaining diversity. 200 core collections of 94 entries (CC94) were thus built for flexibility in the choice of varieties to be studied. Most entries of both core collections (CC50 and CC94) were revealed to be unrelated due to the low kinship coefficient, whereas a genetic structure spanning the eastern and western/central Mediterranean regions was noted. Linkage disequilibrium was observed in CC94 which was mainly explained by a genetic structure effect as noted for OWGB Marrakech. Since they reflect the geographic origin and diversity of olive germplasm and are of reasonable size, both core collections will be of major interest to develop long-term association studies and thus enhance genomic selection in olive species.
机译:种质收集物的表型鉴定是进行关联作图分析的决定性步骤,但对于多年生木本植物而言,它特别昂贵且繁琐。如果关注合理大小的种质子集或所谓的核心种质(CC),从而反映种质的地理起源和变异性,则表征可能会更有效。出现的问题涉及要使用的样本大小和遗传参数,应在核心集合中对其进行优化以使其适合关联映射。在这里,我们研究了多年生水果橄榄(Olea europaea L.)中的这些问题。通过在世界范围内的橄榄种质库(OWGB,马拉喀什,摩洛哥)中测试不同的采样方法和大小,该库包含502个具有核和质体基因座特征的独特基因型,提出了一种两步采样方法。在使用Core Hunter程序的第一步中,发现Shannon-Weaver多样性指数是最佳的最佳标准。定义了50个条目(CC50)的主要核心集合,该集合捕获了80%以上的多样性。后者随后被用作Mstrat程序的内核,以捕获剩余的多样性。因此,建立了200个94个条目(CC94)的核心收藏,以灵活地选择要研究的品种。由于亲缘关系系数低,两个核心收藏品(CC50和CC94)的大多数条目都被发现是无关的,而注意到了横跨东部和西部/地中海中部地区的遗传结构。在CC94中观察到连锁不平衡,这主要由OWGB马拉喀什所指出的遗传结构效应来解释。由于它们反映了橄榄种质的地理起源和多样性,并且大小合理,因此两个核心馆藏将对开展长期的关联研究并因此增强橄榄种的基因组选择具有重大意义。

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