首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >QTL-seq identifies an early flowering QTL located near Flowering Locus T in cucumber
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QTL-seq identifies an early flowering QTL located near Flowering Locus T in cucumber

机译:QTL-seq识别位于黄瓜中开花轨迹T附近的早期开花QTL

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Next-generation sequencing enabled a fast discovery of a major QTL controlling early flowering in cucumber, corresponding to the FT gene conditioning flowering time in Arabidopsis.Next-generation sequencing technologies are making it faster and more efficient to establish the association of agronomic traits with molecular markers or candidate genes, which is the requirement for marker-assisted selection in molecular breeding. Early flowering is an important agronomic trait in cucumber (Cucumis sativus L.), but the underlying genetic mechanism is unknown. In this study, we identified a candidate gene for early flowering QTL, Ef1.1 through QTL-seq. Segregation analysis in F-2 and BC1 populations derived from a cross between two inbred lines "Muromskij" (early flowering) and "9930" (late flowering) suggested quantitative nature of flowering time in cucumber. Genome-wide comparison of SNP profiles between the early and late-flowering bulks constructed from F-2 plants identified a major QTL, designated Ef1.1 on cucumber chromosome 1 for early flowering in Muromskij, which was confirmed by microsatellite marker-based classical QTL mapping in the F-2 population. Joint QTL-seq and traditional QTL analysis delimited Ef1.1 to an 890 kb genomic region. A cucumber gene, Csa1G651710, was identified in this region, which is a homolog of the FLOWERING LOCUS T (FT), the main flowering switch gene in Arabidopsis. Quantitative RT-PCR study of the expression level of Csa1G651710 revealed significantly higher expression in early flowering genotypes. Data presented here provide support for Csa1G651710 as a possible candidate gene for early flowering in the cucumber line Muromskij
机译:下一代测序技术可以快速发现一个控制黄瓜早期开花的主要QTL,这与拟南芥中FT基因调节开花时间相对应。下一代测序技术使其更快,更有效地建立农艺性状与分子的关联标记或候选基因,这是分子育种中标记辅助选择的要求。早开花是黄瓜(Cucumis sativus L.)的重要农艺性状,但其潜在遗传机制尚不清楚。在这项研究中,我们确定了通过QTL-seq进行早期开花QTL Ef1.1的候选基因。对两个自交系“ Muromskij”(早开花)和“ 9930”(晚开花)之间的杂交进行的F-2和BC1群体的分离分析表明,黄瓜开花时间具有定量性。从F-2植物构建的早花和晚花主体之间的SNP分布图的全基因组比较确定了主要的QTL,即在黄瓜染色体1上命名为Ef1.1的Muromskij的早花,这已通过基于微卫星标记的经典QTL证实在F-2人群中进行定位。联合QTL-seq和传统QTL分析将Ef1.1限定为一个890 kb的基因组区域。在该区域鉴定出一个黄瓜基因Csa1G651710,该基因与拟南芥中主要的开花开关基因FLOWERING LOCUS T(FT)同源。定量RT-PCR研究Csa1G651710的表达水平显示早期开花基因型中的表达明显较高。此处提供的数据支持Csa1G651710作为黄瓜品系Muromskij早期开花的可能候选基因

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