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Genomic and genetic analysis of Myb -related genes that regulate anthocyanin biosynthesis in grape berry skin

机译:调控葡萄浆果皮中花色苷生物合成的Myb相关基因的基因组和遗传分析

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As a result of natural hybridization and human selection over millennia, the skin colors of grapes have become greatly diversified. The color is determined by the quantity and composition of anthocyanins. Color-skinned cultivars accumulate anthocyanins in their skins, whereas white-skinned cultivars do not. Myb-related transcription-factor genes such as VvmybA1 regulate anthocyanin biosynthesis. VvMYBA2r, VlmybA1-1, VlmybA1-2, and VlmybA2, which are homologs of VvmybA1, also regulate anthocyanin biosynthesis. In this study, we isolated a novel Myb-related sequence, VlmybA1-3, from cultivars of Vitis labruscana (Vitis vinifera × Vitis labrusca) by means of inverse PCR, and confirmed by means of transient gene expression assay that the gene regulates anthocyanin biosynthesis in grape berry skin. Seedlings of V. labruscana with two functional haplotypes at a region of berry color loci accumulated more anthocyanins than seedlings with a single functional haplotype. In addition, we investigated the haplotypes at the region in 35 cultivars (both V. vinifera and V. labruscana), and found certain typical characteristics. These findings will contribute to the selection of seedlings with high anthocyanin quantities in breeding programs for wine and table grapes, and will help elucidate the origin and evolution of Vitis species.
机译:几千年来,自然杂交和人类选择的结果是,葡萄的肤色已经变得非常多样化。颜色取决于花色苷的数量和组成。颜色肤色的品种在其皮肤中积累花青素,而肤色白色的品种则没有。 Myb相关的转录因子基因(例如VvmybA1)调节花色苷的生物合成。 VvmybA1的同系物VvMYBA2r,VlmybA1-1,VlmybA1-2和VlmybA2也调节花色苷的生物合成。在这项研究中,我们通过反向PCR从唇葡萄(Vitis vinifera×Vitis labrusca)的栽培品种中分离了一个与Myb相关的新序列VlmybA1-3,并通过瞬时基因表达分析证实了该基因调节花色苷的生物合成。在葡萄浆果的皮肤中。在浆果色基因座区域具有两种功能性单倍型的拉布拉索氏弧菌幼苗比具有单一功能性单倍型的幼苗积累更多的花色苷。此外,我们调查了35个品种(V. vinifera和V. labruscana)中该区域的单倍型,并发现了某些典型特征。这些发现将有助于在葡萄酒和食用葡萄的育种计划中选择花青素含量高的幼苗,并有助于阐明葡萄的起源和进化。

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