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Exploring a Tomato Landraces Collection for Fruit-Related Traits by the Aid of a High-Throughput Genomic Platform

机译:借助高通量基因组平台探索与果实相关性状的番茄地方品种

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摘要

During its evolution and domestication Solanum lycopersicum has undergone various genetic ‘bottlenecks’ and extreme inbreeding of limited genotypes. In Europe the tomato found a secondary centre for diversification, which resulted in a wide array of fruit shape variation given rise to a range of landraces that have been cultivated for centuries. Landraces represent a reservoir of genetic diversity especially for traits such as abiotic stress resistance and high fruit quality. Information about the variation present among tomato landrace populations is still limited. A collection of 123 genotypes from different geographical areas was established with the aim of capturing a wide diversity. Eighteen morphological traits were evaluated, mainly related to the fruit. About 45% of morphological variation was attributed to fruit shape, as estimated by the principal component analysis, and the dendrogram of relatedness divided the population in subgroups mainly on the basis of fruit weight and locule number. Genotyping was carried out using the tomato array platform SolCAP able to interrogate 7,720 SNPs. In the whole collection 87.1% markers were polymorphic but they decreased to 44–54% when considering groups of genotypes with different origin. The neighbour-joining tree analysis clustered the 123 genotypes into two main branches. The STRUCTURE analysis with K = 3 also divided the population on the basis of fruit size. A genomic-wide association strategy revealed 36 novel markers associated to the variation of 15 traits. The markers were mapped on the tomato chromosomes together with 98 candidate genes for the traits analyzed. Six regions were evidenced in which candidate genes co-localized with 19 associated SNPs. In addition, 17 associated SNPs were localized in genomic regions lacking candidate genes. The identification of these markers demonstrated that novel variability was captured in our germoplasm collection. They might also provide a viable indirect selection tool in future practical breeding programs.
机译:在其进化和驯化过程中,番茄茄子经历了各种遗传“瓶颈”和有限基因型的近亲繁殖。在欧洲,番茄找到了一个多元化的次级中心,由于种植了多个世纪的地方品种,导致了各种各样的水果形状变化。地方品种代表着遗传多样性的库,尤其是非生物抗逆性和高品质水果等性状。关于番茄地方品种种群之间存在的差异的信息仍然有限。建立了来自不同地理区域的123个基因型的集合,目的是捕获广泛的多样性。评价了18个形态特征,主要与果实有关。通过主成分分析估计,大约45%的形态变异归因于果实形状,相关性树状图主要根据果实重量和子房数将种群划分为亚组。使用能够查询7,720个SNP的番茄阵列平台SolCAP进行基因分型。在整个集合中,有87.1%的标记是多态性的,但考虑不同来源的基因型组时,它们降至44–54%。邻居加入树分析将123个基因型聚类为两个主要分支。 K = 3的结构分析也根据果实大小对种群进行了划分。全基因组关联策略揭示了与15个性状的变异相关的36个新标记。将标记与98个候选基因一起定位在番茄染色体上,以分析性状。六个区域被证实,其中候选基因与19个相关SNP共定位。另外,17个相关的SNPs定位在缺少候选基因的基因组区域。这些标记物的鉴定表明,在我们的种质收集中捕获了新的变异性。它们还可能在将来的实用育种计划中提供可行的间接选择工具。

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