Centre of Pear Engineering Technology Research, State Key Laboratory of Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing, China.
Plant Pathology and Plant-Microbe Biology Section, Cornell University, Geneva, NY, USA.
Plant Biotechnol J. 2019 Aug;17(8):1582-1594. doi: 10.1111/pbi.13085. Epub 2019 Feb 17.
Pear (Pyrus; 2n = 34), the third most important temperate fruit crop, has great nutritional and economic value. Despite the availability of many genomic resources in pear, it is challenging to genotype novel germplasm resources and breeding progeny in a timely and cost-effective manner. Genotyping arrays can provide fast, efficient and high-throughput genetic characterization of diverse germplasm, genetic mapping and breeding populations. We present here 200K AXIOM PyrSNP, a large-scale single nucleotide polymorphism (SNP) genotyping array to facilitate genotyping of Pyrus species. A diverse panel of 113 re-sequenced pear genotypes was used to discover SNPs to promote increased adoption of the array. A set of 188 diverse accessions and an F population of 98 individuals from 'Cuiguan' × 'Starkrimson' was genotyped with the array to assess its effectiveness. A large majority of SNPs (166 335 or 83%) are of high quality. The high density and uniform distribution of the array SNPs facilitated prediction of centromeric regions on 17 pear chromosomes, and significantly improved the genome assembly from 75.5% to 81.4% based on genetic mapping. Identification of a gene associated with flowering time and candidate genes linked to size of fruit core via genome wide association studies showed the usefulness of the array in pear genetic research. The newly developed high-density SNP array presents an important tool for rapid and high-throughput genotyping in pear for genetic map construction, QTL identification and genomic selection.
梨(Pyrus;2n=34)是第三大重要的温带水果作物,具有巨大的营养价值和经济价值。尽管梨有许多基因组资源,但及时、经济高效地对新的种质资源和育种后代进行基因分型仍然具有挑战性。基因分型芯片可以快速、高效、高通量地对多样化的种质资源、遗传图谱和育种群体进行遗传特征分析。我们在此展示了 200K AXIOM PyrSNP,这是一个大规模的单核苷酸多态性(SNP)基因分型芯片,用于促进梨属物种的基因分型。使用多样化的 113 个重测序梨基因型面板来发现 SNP,以促进该芯片的广泛采用。利用该芯片对 188 个多样化的品种和‘翠冠’ב斯塔克红润’的一个 F1 群体进行了基因分型,以评估其有效性。大量 SNP(166335 个或 83%)的质量很高。该芯片 SNP 的高密度和均匀分布促进了 17 条梨染色体着丝粒区域的预测,并基于遗传图谱将基因组组装的质量从 75.5%显著提高到 81.4%。通过全基因组关联研究鉴定出一个与开花时间相关的基因和一个与果实心型大小相关的候选基因,表明该芯片在梨遗传研究中的有用性。新开发的高密度 SNP 芯片为梨的快速高通量基因分型提供了一个重要工具,可用于遗传图谱构建、QTL 鉴定和基因组选择。