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Crosstalk Pathway between Trehalose Metabolism and Cytokinin Degradation for the Determination of the Number of Berries per Bunch in Grapes

机译:海藻糖新陈代谢与细胞果仁素之间的串扰途径以确定每群葡萄浆果数量的劣化

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摘要

In grapes, the number of flowers per inflorescence determines the compactness of grape bunches. Grape cultivars with tight bunches and thin-skinned berries easily undergo berry splitting, especially in growing areas with heavy rainfall during the grapevine growing season, such as Japan. We report herein that grape cytokinin oxidase/dehydrogenase 5 (VvCKX5) determines the number of berries per inflorescence in grapes. The number of berries per bunch was inversely proportional to the VvCKX5 expression level in juvenile inflorescences among the cultivars tested. VvCKX5 overexpression drastically decreased the number of flower buds per inflorescence in Arabidopsis plants, suggesting that VvCKX5 might be one of the negative regulators of the number of flowers per inflorescence in grapes. Similarly, the overexpression of grape sister of ramose 3 (VvSRA), which encodes trehalose 6-phosphate phosphatase that catalyzes the conversion of trehalose-6-phosphate into trehalose, upregulated AtCKX7 expression in Arabidopsis plants, leading to a decrease in the number of flower buds per Arabidopsis inflorescence. VvCKX5 gene expression was upregulated in grapevine cultured cells and juvenile grape inflorescences treated with trehalose. Finally, injecting trehalose into swelling buds nearing bud break using a microsyringe decreased the number of berries per bunch by half. VvCKX5 overexpression in Arabidopsis plants had no effect on the number of secondary inflorescences from the main inflorescence, and similarly trehalose did not affect pedicel branching on grapevine inflorescences, suggesting that VvCKX5, as well as VvSRA-mediated trehalose metabolism, regulates flower formation but not inflorescence branching. These findings may provide new information on the crosstalk between VvSRA-mediated trehalose metabolism and VvCKX-mediated cytokinin degradation for determining the number of berries per bunch. Furthermore, this study is expected to contribute to the development of innovative cultivation techniques for loosening tight bunches.
机译:在葡萄中,每花序的鲜花数决定了葡萄串的紧凑性。葡萄品种具有紧密的束和薄皮肤浆果容易接受浆果分裂,特别是在葡萄园生长季节的降雨中的生长区域,如日本。我们在本文中报告,葡萄细胞蛋白氧化酶/脱氢酶5(VVCKX5)确定葡萄中每次花序的浆果数量。每束的浆果数量与在测试的品种中的少年花序中的VVCKX5表达水平成反比。 Vvckx5过表达拟南芥植物中每次花序的花芽数量大大降低,表明VVCKX5可能是葡萄中每花序的花朵数量的负调节器之一。类似地,葡萄卷的ramose 3(VVSRA)的过表达,其编码海藻糖6-磷酸磷酸酶,其催化海藻糖-6-磷酸盐转化为海藻糖,上调拟南芥植物中的Atckx7表达,导致花的数量减少芽为拟南芥花序。在用海藻糖处理的葡萄培养细胞和少年葡萄花序中升高了VVCKX5基因表达。最后,将海藻糖注入膨胀芽,接近芽断裂的微妙突破减少了每束的浆果的数量。拟南芥植物的Vvckx5过表达对来自主要花序的二次花序的数量没有影响,同样的海藻糖在葡萄花序上没有影响Peincel分支,表明Vvckx5以及Vvsra介导的海藻糖代谢,调节花形成但不是花序分枝。这些发现可以提供关于VVSRA介导的海藻糖代谢和VVCKX介导的细胞蛋白素降解的新信息,用于确定每束的浆果数量。此外,该研究预计会有助于开发创新培养技术,以松动紧张束。

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