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首页> 外文期刊>Horticulture research. >Additive QTLs on three chromosomes control flowering time in woodland strawberry (Fragaria vesca L.)
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Additive QTLs on three chromosomes control flowering time in woodland strawberry (Fragaria vesca L.)

机译:三个染色体上的加性QTL控制林地草莓(草莓> )的开花时间

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摘要

Flowering time is an important trait that affects survival, reproduction and yield in both wild and cultivated plants. Therefore, many studies have focused on the identification of flowering time quantitative trait locus (QTLs) in different crops, and molecular control of this trait has been extensively investigated in model species. Here we report the mapping of QTLs for flowering time and vegetative traits in a large woodland strawberry mapping population that was phenotyped both under field conditions and in a greenhouse after flower induction in the field. The greenhouse experiment revealed additive QTLs in three linkage groups (LG), two on both LG4 and LG7, and one on LG6 that explain about half of the flowering time variance in the population. Three of the QTLs were newly identified in this study, and one co-localized with the previously characterized FvTFL1 gene. An additional strong QTL corresponding to previously mapped PFRU was detected in both field and greenhouse experiments indicating that gene(s) in this locus can control the timing of flowering in different environments in addition to the duration of flowering and axillary bud differentiation to runners and branch crowns. Several putative flowering time genes were identified in these QTL regions that await functional validation. Our results indicate that a few major QTLs may control flowering time and axillary bud differentiation in strawberries. We suggest that the identification of causal genes in the diploid strawberry may enable fine tuning of flowering time and vegetative growth in the closely related octoploid cultivated strawberry.
机译:开花时间是影响野生和栽培植物存活,繁殖和产量的重要特征。因此,许多研究集中于鉴定不同作物上的开花时间定量性状基因座(QTL),并且已经在模型物种中广泛研究了该性状的分子控制。在这里,我们报告了在田间条件下和在田间诱导花后在温室中表型化的大型林地草莓图种群中开花时间和营养性状的QTL定位。温室实验揭示了三个连锁组(LG)的加性QTL,两个分别在LG4和LG7上,一个在LG6上,这解释了种群中大约一半的开花时间差异。在这项研究中新发现了三个QTL,一个与以前鉴定的FvTFL1基因共定位。在田间和温室实验中均检测到一个与先前定位的PFRU相对应的强QTL,表明该基因座的基因除了可以控制花期和腋芽向跑步者和树枝的分化时间外,还可以控制不同环境中的开花时间。冠。在这些QTL区域中鉴定了几个推定的开花时间基因,等待功能验证。我们的结果表明,一些主要的QTL可能控制草莓的开花时间和腋芽分化。我们建议鉴定二倍体草莓中的因果基因可以使密切相关的八倍体栽培草莓的开花时间和营养生长得以微调。

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