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首页> 外文期刊>Plant Molecular Biology >Two new grape cultivars, bud sports of Cabernet Sauvignon bearing pale-coloured berries, are the result of deletion of two regulatory genes of the berry colour locus
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Two new grape cultivars, bud sports of Cabernet Sauvignon bearing pale-coloured berries, are the result of deletion of two regulatory genes of the berry colour locus

机译:两种新的葡萄品种,即带有淡色浆果的赤霞珠的嫩芽运动,是浆果色基因座的两个调控基因缺失的结果

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摘要

Bud sports are infrequent changes in phenotype affecting shoots of woody perennials but the molecular basis of these mutations has rarely been identified. In this report, we show that the bronze-coloured berries of the Malian cultivar, a documented bud sport of the wine grape Cabernet Sauvignon (Vitis vinifera L.), lack anthocyanins in the subepidermal cells compared to the red/black berried Cabernet Sauvignon in which both the epidermis and several subepidermal cell layers contain anthocyanin. The Malian phenotype is correlated with an alteration in the genome indicated by a reduction of hybridisation signal using a MYBA probe. In Shalistin, a white-berried bud sport of Malian, the red allele at the berry colour locus appears to have been deleted completely. These data suggest that Malian could be a L1/L2 periclinal chimera, which gave rise to Shalistin by an invasion of epidermal cells (L1) by the mutated subepidermal cells (L2). The red grape Pinot Noir has given rise to a number of pale coloured sports, although the provenance of the extant sports is not known. We show that a clone of Pinot Blanc (white-berried) does not have a deletion of the red allele of the same dimensions as that in Shalistin, though a small deletion is a likely explanation for the altered phenotype. However, the mechanism of deletion of the red allele of the berry colour locus is a possible means by which other red to white clonal mutations of grapevines have occurred.
机译:芽运动是不常见的表型变化,会影响多年生木本植物的嫩芽,但很少确定这些突变的分子基础。在本报告中,我们显示了马里品种的青铜色浆果,一种有记载的酿酒葡萄赤霞珠(Vitis vinifera L.)芽运动,与表皮中的红色/黑色浆果赤霞珠相比,表皮下细胞缺少花色苷表皮和几个表皮下细胞层都含有花青素。通过使用MYBA探针,杂交信号的减少表明了马里的表型与基因组的改变有关。在马里(Malian)的白百合花蕾运动Shalistin中,浆果色位点上的红色等位基因似乎已被完全删除。这些数据表明,马里可能是L1 / L2的周缘嵌合体,其通过突变的表皮下细胞(L2)侵袭表皮细胞(L1)产生了Shalistin。红葡萄黑皮诺引起了许多浅色的运动,尽管现存运动的起源尚不清楚。我们显示,白皮诺的克隆(白浆果)没有删除与Shalistin中相同尺寸的红色等位基因,尽管小的删除可能是表型改变的可能原因。但是,浆果色基因座的红色等位基因的缺失机制是葡萄其他红色至白色克隆突变的可能途径。

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