National Wine and Grape Industry Centre, Charles Sturt University, Locked Bag 588, Wagga Wagga, Australia.
The Australian Research Council Training Centre for Innovative Wine Production, University of Adelaide, PMB 1, Glen Osmond, Adelaide, Australia.
Plant Cell Physiol. 2019 Oct 1;60(10):2331-2342. doi: 10.1093/pcp/pcz130.
A link between the accumulation of sugar and potassium has previously been described for ripening grape berries. The functional basis of this link has, as of yet, not been elucidated but could potentially be associated with the integral role that potassium has in phloem transport. An experiment was conducted on Shiraz grapevines in a controlled environment. The accumulation of berry sugar was curtailed by reducing the leaf photoassimilation rate, and the availability of potassium was increased through soil fertilization. The study characterizes the relationship between the accumulation of sugar and potassium into the grape berry and describes how their accumulation patterns are related to the expression patterns of their transporter proteins. A strong connection was observed between the accumulation of sugar and potassium in the grape berry pericarp, irrespective of the treatment. The relative expression of proteins associated with sugar and potassium transport across the tonoplast and plasma membrane was closely correlated, suggesting transcriptional coregulation leading to the simultaneous translocation and storage of potassium and sugar in the grape berry cell.
先前已有研究表明,葡萄浆果成熟过程中糖和钾的积累之间存在关联。虽然这种关联的功能基础尚未阐明,但它可能与钾在韧皮部运输中所起的重要作用有关。本实验在受控环境下对设拉子葡萄进行了研究。通过降低叶片光合作用速率来减少浆果的糖分积累,同时通过土壤施肥来增加钾的供应。本研究描述了葡萄浆果中糖和钾积累之间的关系,并探讨了它们的积累模式与转运蛋白表达模式之间的关系。研究发现,无论采用何种处理方式,在葡萄浆果果皮中均观察到糖和钾的积累之间存在很强的关联性。与质膜和液泡膜上糖和钾转运相关的蛋白的相对表达水平密切相关,这表明转录水平的协同调控导致钾和糖在葡萄浆果细胞中的同时转运和储存。