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首页> 外文期刊>Theoretical and Applied Genetics >Genetic dissection of fruit quality traits in the octoploid cultivated strawberry highlights the role of homoeo-QTL in their control
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Genetic dissection of fruit quality traits in the octoploid cultivated strawberry highlights the role of homoeo-QTL in their control

机译:八倍体栽培草莓果实品质性状的遗传剖析突显了同源QTL在其控制中的作用

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摘要

Fruit quality traits are major breeding targets in the Rosaceae. Several of the major Rosaceae species are current or ancient polyploids. To dissect the inheritance of fruit quality traits in polyploid fleshy fruit species, we used a cultivated strawberry segregating population comprising a 213 full-sibling F1 progeny from a cross between the variety ‘Capitola’ and the genotype ‘CF1116’. We previously developed the most comprehensive strawberry linkage map, which displays seven homoeology groups (HG), including each four homoeology linkage groups (Genetics 179:2045–2060, 2008). The map was used to identify quantitative trait loci (QTL) for 19 fruit traits related to fruit development, texture, colour, anthocyanin, sugar and organic acid contents. Analyses were carried out over two or three successive years on field-grown plants. QTL were detected for all the analysed traits. Because strawberry is an octopolyploid species, QTL controlling a given trait and located at orthologous positions on different homoeologous linkage groups within one HG are considered as homoeo-QTL. We found that, for various traits, about one-fourth of QTL were putative homoeo-QTL and were localised on two linkage groups. Several homoeo-QTL could be detected the same year, suggesting that several copies of the gene underlying the QTL are functional. The detection of some other homoeo-QTL was year-dependent. Therefore, changes in allelic expression could take place in response to environmental changes. We believe that, in strawberry as in other polyploid fruit species, the mechanisms unravelled in the present study may play a crucial role in the variations of fruit quality.
机译:果实品质性状是蔷薇科的主要育种目标。蔷薇科的几种主要物种是当前或古代的多倍体。为了剖析多倍体果肉果实中果实品质性状的遗传,我们使用了栽培的草莓分离种群,该种群包括来自'Capitola'和基因型'CF1116'的213个全同胞F1后代。我们之前开发了最全面的草莓连锁图谱,其中显示了七个同源性组(HG),包括每个四个同源性联动组(Genetics 179:2045-2060,2008)。该图用于确定与水果发育,质地,颜色,花色苷,糖和有机酸含量有关的19个水果性状的数量性状基因座(QTL)。连续两年或三年对田间种植的植物进行了分析。检测所有分析性状的QTL。因为草莓是一种八倍体物种,所以将控制给定性状且位于一个HG内不同同源连锁基团上直系同源位置的QTL视为同源QTL。我们发现,对于各种性状,大约四分之一的QTL是推定的同源QTL,位于两个连锁群上。同一年可以检测到多个同质QTL,这表明该QTL基础基因的几个拷贝具有功能。其他一些同质QTL的检测取决于年份。因此,等位基因表达的变化可响应于环境变化而发生。我们认为,与其他多倍体水果种类一样,草莓中的机制可能在水果质量变化中起关键作用。

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  • 来源
    《Theoretical and Applied Genetics》 |2012年第6期|1059-1077|共19页
  • 作者单位

    Ciref Maison Jeannette 24140 Douville France;

    UMR 1332 Biologie du Fruit et Pathologie INRA 33140 Villenave d’Ornon France;

    UMR 1332 Biologie du Fruit et Pathologie INRA 33140 Villenave d’Ornon France;

    UMR 1332 Biologie du Fruit et Pathologie INRA 33140 Villenave d’Ornon France;

    Ciref Maison Jeannette 24140 Douville France;

    UMR 1332 Biologie du Fruit et Pathologie INRA 33140 Villenave d’Ornon France;

    UMR 1332 Biologie du Fruit et Pathologie INRA 33140 Villenave d’Ornon France;

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