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QTL-seq 鉴定出黄瓜中位于 Flowering Locus T 附近的一个早期开花 QTL。

QTL-seq identifies an early flowering QTL located near Flowering Locus T in cucumber.

机构信息

Key Laboratory of Biology and Genetic Improvement of Horticultural Crops of Ministry of Agriculture, Sino-Dutch Joint Lab of Horticultural Genomics, Institute of Vegetables and Flowers, CAAS, Beijing, 100081, China.

出版信息

Theor Appl Genet. 2014 Jul;127(7):1491-9. doi: 10.1007/s00122-014-2313-z. Epub 2014 May 21.

Abstract

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 F2 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 F2 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 F2 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.

摘要

下一代测序技术使我们能够快速发现控制黄瓜早期开花的主要 QTL,该 QTL 对应于调节拟南芥开花时间的 FT 基因。下一代测序技术使我们能够更快、更有效地将农艺性状与分子标记或候选基因建立关联,这是分子育种中标记辅助选择的要求。早期开花是黄瓜(Cucumis sativus L.)的一个重要农艺性状,但遗传机制尚不清楚。在这项研究中,我们通过 QTL-seq 鉴定了一个控制早期开花 QTL 的候选基因 Ef1.1。来自两个自交系“Muromskij”(早花)和“9930”(晚花)杂交的 F2 和 BC1 群体的分离分析表明,黄瓜开花时间具有数量性状的特征。通过对来自 F2 植物的早花和晚花群体构建的 SNP 图谱进行全基因组比较,鉴定出一个主要的 QTL,命名为 Ef1.1,位于黄瓜第 1 号染色体上,控制 Muromskij 的早期开花,这一结果在 F2 群体中通过微卫星标记的经典 QTL 作图得到了验证。联合 QTL-seq 和传统 QTL 分析将 Ef1.1 限定在一个 890 kb 的基因组区域内。在这个区域中鉴定出一个黄瓜基因 Csa1G651710,它是拟南芥开花主开关基因 FLOWERING LOCUS T(FT)的同源物。对 Csa1G651710 表达水平的定量 RT-PCR 研究表明,其在早期开花基因型中的表达水平显著较高。本文提供的证据支持 Csa1G651710 作为黄瓜品系 Muromskij 早期开花的候选基因。

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