BPMP, Univ Montpellier, CNRS, INRA, SupAgro, Montpellier, France.
CIRAD, UMR1334 AGAP, PHIV-MRI, 34398, Montpellier Cedex 5, France.
New Phytol. 2019 Apr;222(1):286-300. doi: 10.1111/nph.15604. Epub 2019 Feb 8.
In grapevine, climate changes lead to increased berry potassium (K ) contents that result in must with low acidity. Consequently, wines are becoming 'flat' to the taste, with poor organoleptic properties and low potential aging, resulting in significant economic loss. Precise investigation into the molecular determinants controlling berry K accumulation during its development are only now emerging. Here, we report functional characterization by electrophysiology of a new grapevine Shaker-type K channel, VvK3.1. The analysis of VvK3.1 expression patterns was performed by qPCR and in situ hybridization. We found that VvK3.1 belongs to the AKT2 channel phylogenetic branch and is a weakly rectifying channel, mediating both inward and outward K currents. We showed that VvK3.1 is highly expressed in the phloem and in a unique structure located at the two ends of the petiole, identified as a pulvinus. From the onset of fruit ripening, all data support the role of the VvK3.1 channel in the massive K fluxes from the phloem cell cytosol to the berry apoplast during berry K loading. Moreover, the high amount of VvK3.1 transcripts detected in the pulvinus strongly suggests a role for this Shaker in the swelling and shrinking of motor cells involved in paraheliotropic leaf movements.
在葡萄藤中,气候变化导致浆果钾(K)含量增加,从而使葡萄汁酸度降低。因此,葡萄酒的口感变得“平淡”,具有较差的感官特性和低的陈年潜力,导致重大的经济损失。目前,人们才刚刚开始深入研究控制浆果发育过程中钾积累的分子决定因素。在这里,我们通过电生理学功能表征报告了一种新型葡萄 Shaker 型钾通道 VvK3.1。通过 qPCR 和原位杂交分析了 VvK3.1 的表达模式。我们发现 VvK3.1 属于 AKT2 通道的系统发育分支,是一种弱整流通道,介导内向和外向 K 电流。我们表明 VvK3.1 在韧皮部中高度表达,并在叶柄的两个末端存在一种独特的结构,鉴定为叶枕。从果实成熟开始,所有数据都支持 VvK3.1 通道在果实钾装载过程中从韧皮部细胞质向浆果质外体大量钾流中的作用。此外,在叶枕中检测到大量的 VvK3.1 转录本强烈表明该 Shaker 在涉及向光性叶运动的运动细胞的膨胀和收缩中的作用。