COMAV, Institute for the Conservation and Breeding of Agricultural Biodiversity, Universitat Politècnica de València (UPV), Camino de Vera s/n, 46022 Valencia, Spain.
Theor Appl Genet. 2013 May;126(5):1285-303. doi: 10.1007/s00122-013-2053-5. Epub 2013 Feb 5.
Novel sequencing technologies were recently used to generate sequences from multiple melon (Cucumis melo L.) genotypes, enabling the in silico identification of large single nucleotide polymorphism (SNP) collections. In order to optimize the use of these markers, SNP validation and large-scale genotyping are necessary. In this paper, we present the first validated design for a genotyping array with 768 SNPs that are evenly distributed throughout the melon genome. This customized Illumina GoldenGate assay was used to genotype a collection of 74 accessions, representing most of the botanical groups of the species. Of the assayed loci, 91 % were successfully genotyped. The array provided a large number of polymorphic SNPs within and across accessions. This set of SNPs detected high levels of variation in accessions from this crop's center of origin as well as from several other areas of melon diversification. Allele distribution throughout the genome revealed regions that distinguished between the two main groups of cultivated accessions (inodorus and cantalupensis). Population structure analysis showed a subdivision into five subpopulations, reflecting the history of the crop. A considerably low level of LD was detected, which decayed rapidly within a few kilobases. Our results show that the GoldenGate assay can be used successfully for high-throughput SNP genotyping in melon. Since many of the genotyped accessions are currently being used as the parents of breeding populations in various programs, this set of mapped markers could be used for future mapping and breeding efforts.
最近,新型测序技术被用于从多种甜瓜(Cucumis melo L.)基因型中生成序列,从而能够在计算机上鉴定出大量的单核苷酸多态性(SNP)。为了优化这些标记的使用,需要对 SNP 进行验证和大规模基因分型。在本文中,我们首次提出了一种经过验证的设计方案,用于对 768 个 SNP 进行基因分型,这些 SNP 均匀分布在甜瓜基因组中。该定制的 Illumina GoldenGate 分析用于对代表该物种大多数植物群的 74 个品种进行基因分型。在检测的基因座中,有 91%成功进行了基因分型。该基因分型阵列在品种内和品种间提供了大量多态性 SNP。该套 SNP 检测到了该作物起源中心以及甜瓜多样化的其他几个地区的品种的高水平变异。整个基因组的等位基因分布揭示了区分两个主要栽培品种(inodorus 和 cantalupensis)的区域。群体结构分析显示分为五个亚群,反映了作物的历史。检测到的 LD 水平相当低,在几个千碱基内迅速衰减。我们的研究结果表明,GoldenGate 分析可成功用于甜瓜的高通量 SNP 基因分型。由于许多经过基因分型的品种目前正被用作各种计划中的杂交群体的亲本,因此这套映射标记可用于未来的映射和育种工作。