Centro de Investigação e de Tecnologias Agro-ambientais e Biológicas (CITAB), Vila Real, Portugal.
UMR EGFV, Bordeaux Science Agro, INRA, Université de Bordeaux, Villenave D'Ornon, France.
Planta. 2017 Sep;246(3):525-535. doi: 10.1007/s00425-017-2708-6. Epub 2017 May 19.
Severe leaf removal decreases storage starch and sucrose in grapevine cv. Cabernet Sauvignon fruiting cuttings and modulates the activity of key enzymes and the expression of sugar transporter genes. Leaf removal is an agricultural practice that has been shown to modify vineyard efficiency and grape and wine composition. In this study, we took advantage of the ability to precisely control the number of leaves to fruits in Cabernet Sauvignon fruiting cuttings to study the effect of source-sink ratios (2 (2L), 6 (6L) and 12 (12) leaves per cluster) on starch metabolism and accumulation. Starch concentration was significantly higher in canes from 6L (42.13 ± 1.44 mg g DW) and 12L (43.50 ± 2.85 mg g DW) than in 2L (22.72 ± 3.10 mg g DW) plants. Moreover, carbon limitation promoted a transcriptional adjustment of genes involved in starch metabolism in grapevine woody tissues, including a decrease in the expression of the plastidic glucose-6-phosphate translocator, VvGPT1. Contrarily, the transcript levels of the gene coding the catalytic subunit VvAGPB1 of the VvAGPase complex were higher in canes from 2L plants than in 6L and 12L, which positively correlated with the biochemical activity of this enzyme. Sucrose concentration increased in canes from 2L to 6L and 12L plants, and the amount of total phenolics followed the same trend. Expression studies showed that VvSusy transcripts decreased in canes from 2L to 6L and 12L plants, which correlated with the biochemical activity of insoluble invertase, while the expression of the sugar transporters VvSUC11 and VvSUC12, together with VvSPS1, which codes an enzyme involved in sucrose synthesis, increased. Thus, sucrose seems to control starch accumulation through the adjustment of the cane sink strength.
严重的去叶处理会降低酿酒葡萄赤霞珠结果枝中的贮藏淀粉和蔗糖含量,并调节关键酶的活性和糖转运基因的表达。去叶是一种农业实践,已被证明可以改变葡萄园的效率和葡萄及葡萄酒的成分。在这项研究中,我们利用精确控制赤霞珠结果枝上果穗与叶片数量比(2(2L)、6(6L)和 12(12L)片叶/穗)的能力,研究源库比(source-sink ratio)对淀粉代谢和积累的影响。与 2L(22.72±3.10mg g DW)植株相比,6L(42.13±1.44mg g DW)和 12L(43.50±2.85mg g DW)植株的穗中淀粉浓度显著更高。此外,碳限制促进了葡萄木质组织中淀粉代谢相关基因的转录调整,包括质体葡萄糖-6-磷酸转运蛋白 VvGPT1 的表达降低。相反,VvAGPase 复合物的催化亚基 VvAGPB1 的基因编码的 VvAGPB1 的转录水平在 2L 植株的穗中高于 6L 和 12L,这与该酶的生化活性呈正相关。蔗糖浓度在 2L 至 6L 和 12L 植株的穗中增加,总酚含量也呈相同趋势。表达研究表明,VvSusy 转录物在 2L 至 6L 和 12L 植株的穗中减少,这与不溶性转化酶的生化活性相关,而蔗糖转运蛋白 VvSUC11 和 VvSUC12 的表达以及参与蔗糖合成的酶 VvSPS1 的表达增加。因此,蔗糖似乎通过调整穗的库强来控制淀粉积累。