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液泡苹果酸转运能力在景天酸代谢和硝酸盐营养中的作用。诱导景天酸代谢后冰叶日中花以及在硝酸盐营养条件下烟草中的苹果酸转运能力更强。

The role of vacuolar malate-transport capacity in crassulacean acid metabolism and nitrate nutrition. Higher malate-transport capacity in ice plant after crassulacean acid metabolism-induction and in tobacco under nitrate nutrition.

作者信息

Lüttge U, Pfeifer T, Fischer-Schliebs E, Ratajczak R

机构信息

Institute of Botany, Darmstadt University of Technology, Schnittspahnstrasse 3-5, D-64287 Darmstadt, Germany.

出版信息

Plant Physiol. 2000 Nov;124(3):1335-48. doi: 10.1104/pp.124.3.1335.

Abstract

Anion uptake by isolated tonoplast vesicles was recorded indirectly via increased H(+)-transport by H(+)-pumping of the V-ATPase due to dissipation of the electrical component of the electrochemical proton gradient, Deltamu(H+), across the membrane. ATP hydrolysis by the V-ATPase was measured simultaneously after the Palmgren test. Normalizing for ATP-hydrolysis and effects of chloride, which was added to the assays as a stimulating effector of the V-ATPase, a parameter, J(mal)(rel), of apparent ATP-dependent malate-stimulated H(+)-transport was worked out as an indirect measure of malate transport capacity. This allowed comparison of various species and physiological conditions. J(mal)(rel) was high in the obligate crassulacean acid metabolism (CAM) species Kalanchoë daigremontiana Hamet et Perrier, it increased substantially after CAM induction in ice plant (Mesembryanthemum crystallinum), and it was positively correlated with NO(3)(-) nutrition in tobacco (Nicotiana tabacum). For tobacco this was confirmed by measurements of malate transport energized via the V-PPase. In ice plant a new polypeptide of 32-kD apparent molecular mass appeared, and a 33-kD polypeptide showed higher levels after CAM induction under conditions of higher J(mal)(rel). It is concluded that tonoplast malate transport capacity plays an important role in physiological regulation in CAM and NO(3)(-) nutrition and that a putative malate transporter must be within the 32- to 33-kD polypeptide fraction of tonoplast proteins.

摘要

通过V - ATP酶的H⁺泵作用增加H⁺转运来间接记录分离的液泡膜囊泡对阴离子的摄取,这是由于跨膜的电化学质子梯度Δμ(H⁺)的电成分消散所致。在进行帕尔姆格伦试验后,同时测量V - ATP酶的ATP水解。将ATP水解以及作为V - ATP酶刺激效应物添加到测定中的氯离子的影响进行归一化处理后,计算出一个表观ATP依赖的苹果酸刺激的H⁺转运参数J(mal)(rel),作为苹果酸转运能力的间接指标。这使得能够比较不同物种和生理条件。J(mal)(rel)在专性景天酸代谢(CAM)植物落地生根(Kalanchoë daigremontiana Hamet et Perrier)中较高,在冰叶日中花(Mesembryanthemum crystallinum)中CAM诱导后显著增加,并且在烟草(Nicotiana tabacum)中与NO₃⁻营养呈正相关。对于烟草,通过测量经由V - PP酶供能的苹果酸转运证实了这一点。在冰叶日中花中出现了一种表观分子量为32 kD的新多肽,并且在较高J(mal)(rel)条件下,一种33 kD的多肽在CAM诱导后水平升高。得出的结论是,液泡膜苹果酸转运能力在CAM和NO₃⁻营养的生理调节中起重要作用,并且一种假定的苹果酸转运蛋白必定存在于液泡膜蛋白的32至33 kD多肽组分中。

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