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在景天酸代谢植物叶片中维持碳循环:夜间合成苹果酸的碳源和区隔化。

Maintenance carbon cycle in crassulacean Acid metabolism plant leaves : source and compartmentation of carbon for nocturnal malate synthesis.

机构信息

Biochemistry Department, University of Georgia, Athens, Georgia 30602.

出版信息

Plant Physiol. 1985 Jan;77(1):183-9. doi: 10.1104/pp.77.1.183.

Abstract

The reciprocal relationship between diurnal changes in organic acid and storage carbohydrate was examined in the leaves of three Crassulacean acid metabolism plants. It was found that depletion of leaf hexoses at night was sufficient to account quantitatively for increase in malate in Ananas comosus but not in Sedum telephium or Kalanchoë daigremontiana. Fructose and to a lesser extent glucose underwent the largest changes. Glucose levels in S. telephium leaves oscillated diurnally but were not reciprocally related to malate fluctuations.Analysis of isolated protoplasts and vacuoles from leaves of A. comosus and S. telephium revealed that vacuoles contain a large percentage (>50%) of the protoplast glucose, fructose and malate, citrate, isocitrate, ascorbate and succinate. Sucrose, a major constituent of intact leaves, was not detectable or was at extremely low levels in protoplasts and vacuoles from both plants.In isolated vacuoles from both A. comosus and S. telephium, hexose levels decreased at night at the same time malate increased. Only in A. comosus, however, could hexose metabolism account for a significant amount of the nocturnal increase in malate. We conclude that, in A. comosus, soluble sugars are part of the daily maintenance carbon cycle and that the vacuole plays a dynamic role in the diurnal carbon assimilation cycle of this Crassulacean acid metabolism plant.

摘要

我们研究了三种景天酸代谢植物叶片中有机酸和贮藏碳水化合物昼夜变化的相互关系。结果发现,夜间叶片己糖的消耗足以完全解释菠萝中苹果酸的增加,但在落地生根或长寿花中则不然。果糖和葡萄糖变化最大。落地生根叶片中的葡萄糖水平呈昼夜波动,但与苹果酸波动没有互为消长的关系。对菠萝和落地生根叶片分离的原生质体和液泡进行分析表明,液泡中含有原生质体中葡萄糖、果糖和苹果酸、柠檬酸、异柠檬酸、抗坏血酸和琥珀酸的很大一部分(>50%)。蔗糖是完整叶片的主要成分,但在这两种植物的原生质体和液泡中均无法检测到或含量极低。在从菠萝和落地生根中分离的液泡中,己糖水平在夜间下降,而苹果酸增加。然而,只有在菠萝中,己糖代谢才能解释苹果酸在夜间显著增加的原因。我们的结论是,在菠萝中,可溶糖是日常维持碳循环的一部分,液泡在这种景天酸代谢植物的昼夜碳同化循环中发挥着动态作用。

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