首页> 外文期刊>Journal of Plant Physiology >Decrease in vacuolar pH during petunia flower opening is reflected in theactivity of tonoplast H+-ATPase
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Decrease in vacuolar pH during petunia flower opening is reflected in theactivity of tonoplast H+-ATPase

机译:矮牵牛花朵开放期间液泡pH的降低反映在液泡膜H + -ATPase的活性中

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摘要

Flower color is determined by two major factors, pigments present in the vacuole, and intra-vacuolar environment (vacuolar pH and metal ion content). Several reports demonstrate the importance of vacuolar pH in determining flower color, and show that increase in vacuolar pH changes-the color of the petal. We study vacuolar pH in petunia flower as a model system, and the H+ pumps (H+-ATPase and H+-PPase) using flower pH mutants. Two lines of petunia are being used in this study, a red line (R) with a low vacuolar pH (flower sap pH 5.6) and a purple line (P) with a high vacuolar pH (flower sap pH 6.1). ATP hydrolyzing activity of the tonoplast H+-ATPase of petals from the R line was three times higher than that from the P line. Western blot analysis showed similar amounts of the 70 kD and 58kD subunits of vacuolar H+-ATPase in the two lines; however, subunit E amounts differed between the lines. The difference in the pH of the flower sap manifested with higher amounts of subunit E in the R line. The two lines did not differ in their organic acids synthesis. Genetic analysis of R and P lines showed that vacuolar pH is partially controlled by a single dominant gene (Ph gene).
机译:花的颜色由两个主要因素决定,液泡中的色素和气孔内环境(气孔pH和金属离子含量)。一些报道证明了液泡pH值在确定花色中的重要性,并显示液泡pH值的增加会改变花瓣的颜色。我们研究矮牵牛花卉的液泡pH作为模型系统,并使用花卉pH突变体研究H +泵(H + -ATPase和H + -PPase)。本研究中使用了两行矮牵牛,红色液泡(pH)低的液泡pH值(花液汁pH值为5.6),紫色液泡(pH)液泡的pH值较高(P)液泡pH值较高(pH 6.1)。 R系花瓣的液泡膜H + -ATPase的ATP水解活性是P系花瓣的三倍。蛋白质印迹分析显示,在两条细胞系中液泡H + -ATPase的70 kD和58kD亚基数量相似。但是,亚单位E的量在两行之间有所不同。 R系中较高含量的亚基E表现出花汁pH值的差异。两条线的有机酸合成没有差异。 R和P系的遗传分析表明,液泡pH值部分受单个显性基因(Ph基因)控制。

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