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QTL analysis of photoperiod sensitivity in common buckwheat by using markers for expressed sequence tags and photoperiod-sensitivity candidate genes

机译:利用表达序列标签和光敏候选基因的标记对普通荞麦的光敏敏感性进行QTL分析

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摘要

Photoperiod sensitivity is an important trait related to crop adaptation and ecological breeding in common buckwheat (Fagopyrum esculentum Moench). Although photoperiod sensitivity in this species is thought to be controlled by quantitative trait loci (QTLs), no genes or regions related to photoperiod sensitivity had been identified until now. Here, we identified QTLs controlling photoperiod sensitivity by QTL analysis in a segregating F4 population (n = 100) derived from a cross of two autogamous lines, 02AL113(Kyukei SC2)LH.self and C0408-0 RP. The F4 progenies were genotyped with three markers for photoperiod-sensitivity candidate genes, which were identified based on homology to photoperiod-sensitivity genes in Arabidopsis and 76 expressed sequence tag markers. Among the three photoperiod-sensitivity candidate genes (FeCCA1, FeELF3 and FeCOL3) identified in common buckwheat, FeELF3 was associated with photoperiod sensitivity. Two EST regions, Fest_L0606_4 and Fest_L0337_6, were associated with photoperiod sensitivity and explained 20.0% and 14.2% of the phenotypic variation, respectively. For both EST regions, the allele from 02AL113(Kyukei SC2)LH.self led to early flowering. An epistatic interaction was also confirmed between Fest_L0606_4 and Fest_L0337_6. These results demonstrate that photoperiod sensitivity in common buckwheat is controlled by a pathway consisting of photoperiod-sensitivity candidate genes as well as multiple gene action.
机译:光周期敏感性是与普通荞麦(Fagopyrum esculentum Moench)的作物适应性和生态育种相关的重要特征。尽管该物种的光周期敏感性被认为是由数量性状基因座(QTL)控制的,但迄今为止尚未发现与光周期敏感性相关的基因或区域。在这里,我们通过QTL分析确定了一个QTL,这些QTL通过QTL分析来分析来自两个自交系02AL113(Kyukei SC2)LH.self和C0408-​​0 RP的杂交的分离F4种群(n = 100)。对F4后代进行了光敏候选基因的三个标记的基因分型,这些标记是基于与拟南芥中的光敏基因的同源性和76个表达的序列标记。在普通荞麦中鉴定出的三个光周期敏感性候选基因(FeCCA1,FeELF3和FeCOL3)中,FeELF3与光周期敏感性相关。 FEST_L0606_4和Fest_L0337_6这两个EST区域与光周期敏感性相关,分别解释了表型变异的20.0%和14.2%。对于两个EST区域,来自02AL113(Kyukei SC2)LH.self的等位基因导致早期开花。 Fest_L0606_4和Fest_L0337_6之间也确认了上位相互作用。这些结果表明普通荞麦中的光周期敏感性受光周期敏感性候选基因以及多种基因作用组成的途径控制。

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