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Genetic diversity, linkage disequilibrium, population structure and construction of a core collection of Prunus avium L. landraces and bred cultivars

机译:遗传多样性,联系不平衡,人口结构和核心饲养核心系列的构建

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Depiction of the genetic diversity, linkage disequilibrium (LD) and population structure is essential for the efficient organization and exploitation of genetic resources. The objectives of this study were to (i) to evaluate the genetic diversity and to detect the patterns of LD, (ii) to estimate the levels of population structure and (iii) to identify a ‘core collection’ suitable for association genetic studies in sweet cherry. A total of 210 genotypes including modern cultivars and landraces from 16 countries were genotyped using the RosBREED cherry 6?K SNP array v1. Two groups, mainly bred cultivars and landraces, respectively, were first detected using STRUCTURE software and confirmed by Principal Coordinate Analysis (PCoA). Further analyses identified nine subgroups using STRUCTURE and Discriminant Analysis of Principal Components (DAPC). Several sub-groups correspond to different eco-geographic regions of landraces distribution. Linkage disequilibrium was evaluated showing lower values than in peach, the reference Prunus species. A ‘core collection’ containing 156 accessions was selected using the maximum length sub tree method. The present study constitutes the first population genetics analysis in cultivated sweet cherry using a medium-density SNP (single nucleotide polymorphism) marker array. We provided estimations of linkage disequilibrium, genetic structure and the definition of a first INRA’s Sweet Cherry core collection useful for breeding programs, germplasm management and association genetics studies.
机译:对遗传多样性的描述,联系不平衡(LD)和人口结构对于遗传资源的有效组织和利用是必不可少的。本研究的目标是(i)评估遗传多样性,并检测LD,(ii)的模式,以估计人口结构和(iii)的水平,以确定适合关联遗传研究的“核心收集”甜樱桃。共有210个基因型,包括来自16个国家的现代品种和地体状,使用玫瑰貂樱桃6?K SNP阵列V1进行基因分型。分别使用结构软件检测到两组,主要是繁殖的品种和实体,并通过主坐标分析(PCOA)确认。进一步分析使用主成分(DAPC)的结构和判别分析确定了九个亚组。几个子组对应于LACERACES分布的不同生态地理区域。评价延长不平衡,显示比桃,参考文献物种较低的值。使用最大长度子树方法选择包含156个简录的“核心集合”。本研究构成使用中密度SNP(单核苷酸多态性)标记阵列的培养甜樱桃中的第一群遗传分析。我们提供了对连锁不平衡,遗传结构和第一个可用于育种计划,种质管理和协会遗传学研究的第一个Inra的甜樱桃核心系列的估算。

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