首页> 外文期刊>Planta >Na+/H+-transporter, H+-pumps and an aquaporin in light and heavy tonoplast membranes from organic acid and NaCl accumulating vacuoles of the annual facultative CAM plant and halophyte Mesembryanthemum crystallinum L.
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Na+/H+-transporter, H+-pumps and an aquaporin in light and heavy tonoplast membranes from organic acid and NaCl accumulating vacuoles of the annual facultative CAM plant and halophyte Mesembryanthemum crystallinum L.

机译:一年生兼性CAM植物和盐生植物Mesembryanthemum crystallinum L的有机酸和NaCl积累的液泡和重液泡膜中的Na + / H + -转运蛋白,H + -泵和水通道蛋白

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摘要

Crassulacean acid metabolism (CAM) was induced in Mesembryanthemum crystallinum L. by either NaCl- or high light (HL)- stress. This generated in mesophyll cells predominantly of NaCl-stressed plants two different types of vacuoles: the generic acidic vacuoles for malic acid accumulation and additionally less acidic (“neutral”) vacuoles for NaCl sequestration. To examine differences in the tonoplast properties of the two types of vacuoles, we separated microsomal membranes of HL- and NaCl-stressed M. crystallinum plants by centrifugation in sucrose density gradients. Positive immunoreactions of a set of antibodies directed against tonoplast specific proteins and tonoplast specific ATP- and PPi-hydrolytic activity were used as markers for vacuolar membranes. With these criteria tonoplast membranes were detected in both HL- and NaCl-stressed plants in association with the characteristic low sucrose density but also at an unusual high sucrose density. In HL-stressed plants most of the ATP- and PPi-hydrolytic activity and cross reactivity with antibodies including that directed against the Na+/H+-antiporter from Arabidopsis thaliana was detected with light sucrose density. This relationship was inverted in NaCl-stressed plants; they exhibited most pump activity and immunoreactivity in the heavy fraction. The relative abundance of the heavy membrane fraction reflects the relative occurrence of “neutral” vacuoles in either HL- or NaCl-stressed plants. This suggests that tonoplasts of the “neutral” vacuoles sediment at high sucrose densities. This is consistent with the view that this type of vacuoles serves for Na+ sequestration and is accordingly equipped with a high capacity of proton pumping and Na+ uptake via the Na+/H+-antiporter.
机译:NaCl-或强光(HL)-胁迫在结晶膜中诱导了crassulacean酸代谢(CAM)。这主要是在NaCl胁迫的植物的叶肉细胞中产生的,是两种不同类型的液泡:用于苹果酸积累的普通酸性液泡和用于螯合NaCl的酸性较低(“中性”)液泡。为了检查两种液泡的液泡膜性质的差异,我们通过在蔗糖密度梯度中离心分离了HL-和NaCl-胁迫的M. crystallinum植物的微粒体膜。一系列针对液泡膜特异性蛋白和液泡膜特异性ATP-和PPi 水解活性的抗体的阳性免疫反应被用作液泡膜的标记。利用这些标准,在HL和NaCl胁迫的植物中均检测到了液泡膜,这与特征性的低蔗糖密度有关,但在异常高的蔗糖密度下也存在。在HL胁迫的植物中,大多数蔗糖的ATP-和PPi 水解活性以及与抗体的交叉反应性,包括针对拟南芥Na + / H + -反向转运蛋白的抗体,都用轻蔗糖检测到。密度。在NaCl胁迫的植物中,这种关系被颠倒了。它们在重组分中表现出最多的泵浦活性和免疫反应性。重膜部分的相对丰度反映了在HL或NaCl胁迫的植物中“中性”液泡的相对发生。这表明在高蔗糖密度下,“中性”液泡的液泡塑料会沉积。这与以下观点一致:这种液泡用于隔离Na + ,并因此具有高容量的质子泵送能力和通过Na + / H + 吸收Na + 的能力。 -反搬运工。

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