首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Fine mapping of the pleiotropic locus B for black spine and orange mature fruit color in cucumber identifies a 50 kb region containing a R2R3-MYB transcription factor.
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Fine mapping of the pleiotropic locus B for black spine and orange mature fruit color in cucumber identifies a 50 kb region containing a R2R3-MYB transcription factor.

机译:黄瓜的黑脊柱和橙色成熟果实颜色的多效性基因座B的精细图谱确定了一个包含R2R3-MYB转录因子的50 kb区域。

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In cucumber, Cucumis sativus L., the spine and skin colors are two important fruit quality traits for variety improvement. In this study, we investigated the inheritance of spine and mature fruit skin colors in F2 and F3 populations derived from a cross between two inbred lines WI7200 (black spine and orange fruit skin colors) and WI7201 (white spine and creamy fruit skin colors). We confirmed that a single, dominant gene, B, controlled both black spine color and orange mature fruit color. Initial framework mapping with microsatellite markers located the B locus in the distal region of the short arm of cucumber chromosome 4. Fine mapping was conducted with draft genome scaffold-assisted chromosome walking and stepwise increase of mapping population sizes, which allowed for the assignment of the B locus to a 50 kb genomic DNA region with two flanking markers that were 0.06 and 0.09 cM, respectively, from the B locus in a mapping population of 2,001 F2 plants. Gene annotation of this 50 kb region identified six genes including one encoding for a R2R3-MYB transcription factor. Sequence alignment of the R2R3-MYB homologs between the two parent inbreds identified a 1 bp deletion in the third intron of this gene in WI 7201. A molecular marker based on this indel was co-segregating with the spine and fruit colors. Quantitative RT-PCR revealed higher level of expression of this R2R3-MYB gene in WI7200 than in WI7201 in both immature and mature fruits. This R2R3-MYB gene seems to be the best candidate gene for the B locus conditioning black spine and orange mature fruit colors of cultivated cucumber.
机译:在黄瓜(Cucumis sativus L.)中,脊柱和肤色是改善品种的两个重要的果实品质性状。在这项研究中,我们调查了来自两个自交系WI7200(黑色脊柱和橙色)之间的杂交得到的F 2 和F 3 群体的脊椎和成熟果皮颜色的遗传水果肤色)和WI7201(白色脊柱和乳白色水果肤色)。我们证实,一个单一的显性基因B控制着黑棘色和橙色成熟果色。利用微卫星标记的初始框架作图位于黄瓜第4号染色体短臂的远端区域中的B位点。用基因组支架辅助的染色体行走草图和逐步增加作图种群的大小进行精细作图,从而可以分配图谱。 B位点位于50 kb基因组DNA区域,带有两个侧翼标记,分别来自2,001 F 2 植物作图种群中的B位点,分别为0.06和0.09 cM。这个50 kb区域的基因注释识别了六个基因,包括一个编码R2R3-MYB转录因子的基因。两个亲本近交系之间的R2R3-MYB同源物的序列比对确定了WI 7201中该基因的第三个内含子缺失1 bp。基于此indel的分子标记与脊柱和果实颜色共分离。定量RT-PCR显示在未成熟和成熟果实中,该R2R3-MYB基因在WI7200中的表达水平高于WI7201。 R2R3-MYB基因似乎是B基因座调节栽培黄瓜的黑脊柱和橙色成熟果实颜色的最佳候选基因。

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