首页> 外文期刊>Journal of the Japanese Society for Horticultural Science >A major QTL controlling earliness of fruit maturity linked to the red leaf/red flesh trait in apple cv. 'Maypole'.
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A major QTL controlling earliness of fruit maturity linked to the red leaf/red flesh trait in apple cv. 'Maypole'.

机译:控制果实成熟度的主要QTL与苹果简历的红叶/红肉性状有关。 '五月柱'。

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摘要

Anthocyanins, which contribute red coloration to apple skin, are recognized for their antioxidant properties. Some apple cultivars also accumulate anthocyanins in fruit flesh. In this study, we analyzed the inheritance of coloration traits in fruit skin, fruit flesh, and leaves as well as their candidate gene, and searched for quantitative trait loci (QTLs) for fruit maturity linked to the red flesh trait in 'Maypole', using a 'Fuji' x 'Maypole' F1 population. Phenotypic segregation in the F1 population indicated that red skin, striped skin, red flesh, and red leaf traits are each controlled by separate single dominant genes and that red leaves co-segregated with red flesh. Of these, a striped skin trait derived from 'Fuji' corresponded to the MdMYBA genotype, known to regulate anthocyanin synthesis in fruit skin, suggesting that this genotype may be responsible for fruit skin coloring patterns. The red leaf/red flesh trait derived from 'Maypole' co-segregated with the MdMYB10 R6 promoter. MdMYBA and MdMYB10 were located in the same region at the bottom of linkage group (LG) 9 on the same genetic material, supporting that these genes are allelic. Analysis of the relationship between red coloration and fruit maturity revealed that fruits of red-fleshed progeny tended to mature earlier than those of white-fleshed progeny. A major QTL accounting for 35.6% of the total variance (logarithm of odds [LOD]=8.94) was detected near the MdMYB10 locus in 'Maypole', indicating that the factor controlling earliness of fruit maturity is tightly linked to the red leaf/red flesh trait.
机译:花青素为苹果皮带来红色,被认为具有抗氧化特性。一些苹果品种也会在果肉中积累花青素。在这项研究中,我们分析了果皮,果肉和叶片及其候选基因的着色性状的遗传,并搜索了与“五月柱”中红色果肉性状相关的果实成熟度的定量性状位点(QTL),使用'Fuji'x'Maypole'F 1 种群。 F 1 群体的表型隔离表明,红色皮肤,条纹皮肤,红色肉和红色叶片性状均受单独的单个显性基因控制,并且红色叶片与红色肉体共同分离。其中,源自“ Fuji”的条纹状皮肤性状与MdMYBA基因型相对应,已知该基因型可调节果皮中花色苷的合成,这表明该基因型可能是导致果皮着色模式的原因。源自“ Maypole”的红叶/红肉性状与MdMYB10 R6启动子共分离。 MdMYBA和MdMYB10位于同一遗传材料上连锁组(LG)9底部的同一区域,支持这些基因是等位基因。对红色与果实成熟度之间关系的分析表明,红肉后代的果实比白肉后代的果实更早成熟。在“五月柱”的MdMYB10基因座附近检测到占总变异35.6%(优势对数[LOD] = 8.94)的主要QTL,表明控制果实成熟度的早期因素与红叶/红紧密相关。肉质。

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