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C3植物葡萄中光合苹果酸形成的途径

Pathway of Photosynthetic Malate Formation in Vitis vinifera, a C(3) Plant.

作者信息

Ruffner H P, Brem S, Rast D M

机构信息

Institute of Plant Biology, University of Zürich, Zollikerstrasse 107, CH-8008 Zürich, Switzerland.

出版信息

Plant Physiol. 1983 Nov;73(3):582-5. doi: 10.1104/pp.73.3.582.

Abstract

The time course of intramolecular isotope distribution in phosphoglyceric acid and serine was determined after exposure of grape leaf discs (Vitis vinifera L.) to (14)CO(2) (1000 microliters per liter) for variable metabolic periods, and the labeling patterns were compared with the respective isotope distribution in the C(1-3) fragment of malic acid. The results clearly support the classical concept of a close precursor-product relationship between photosynthetic phosphoglycerate and malic acid. Under the assimilatory conditions used in this study, there was no indication of an immediate carbon transfer from serine to malate as has been suggested for C(3) plants (Kent et al. 1974 Plant Physiol 53: 491-495) because of a coincident labeling of these compounds in Vicia faba. According to our data, previous evidence in favor of this hypothetical pathway is based largely on an unusual (14)C distribution in serine, due to an extreme suppression of photorespiration, as well as on arbitrary comparisons between compounds of divergent kinetic characteristics and consequently different degrees of metabolic label randomization.

摘要

在将葡萄叶片(葡萄)暴露于(14)CO2(1000微升/升)不同代谢时间后,测定了磷酸甘油酸和丝氨酸分子内同位素分布的时间进程,并将标记模式与苹果酸C(1-3)片段中的各自同位素分布进行了比较。结果明确支持了光合磷酸甘油酸与苹果酸之间存在紧密前体-产物关系的经典概念。在本研究使用的同化条件下,没有迹象表明如对C3植物所建议的那样(肯特等人,1974年,《植物生理学》53:491-495),丝氨酸中的碳会立即转移到苹果酸中,因为在蚕豆中这些化合物存在同时标记的情况。根据我们的数据,先前支持这一假设途径的证据很大程度上基于丝氨酸中异常的(14)C分布,这是由于光呼吸的极端抑制,以及基于具有不同动力学特征和因此不同程度代谢标记随机化的化合物之间的任意比较。

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