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缺乏甘氨酸脱羧酶活性的十字花科植物拟南芥突变体。

Mutants of the cruciferous plant Arabidopsis thaliana lacking glycine decarboxylase activity.

作者信息

Somerville C R, Ogren W L

出版信息

Biochem J. 1982 Feb 15;202(2):373-80. doi: 10.1042/bj2020373.

Abstract

A mutant of Arabidopsis thaliana (L.) Heyn. (a small plant in the crucifer family) that lacks glycine decarboxylase activity owing to a recessive nuclear mutation has been isolated on the basis of a growth requirement for high concentrations of atmospheric CO2. Mitochondria isolated from leaves of the mutant did not exhibit glycine-dependent O2 consumption, did not release 14CO2 from [14C]glycine, and did not catalyse the glycine-bicarbonate exchange reaction that is considered to be the first partial reaction associated with glycine cleavage. Photosynthesis in the mutant was decreased after illumination under atmospheric conditions that promote partitioning of carbon into intermediates of the photorespiratory pathway, but was not impaired under non-photorespiratory conditions. Thus glycine decarboxylase activity is not required for any essential function unrelated to photorespiration. The photosynthetic response of the mutant in photorespiratory conditions is probably caused by an increased rate of glyoxylate oxidation, which results from the sequestering of all readily transferable amino groups in a metabolically inactive glycine pool, and by a depletion of intermediates from the photosynthesis cycle. The rate of release of 14CO2 from exogenously applied [14C]glycollate was 14-fold lower in the mutant than in the wild type, suggesting that glycine decarboxylation is the only significant source of photorespiratory CO2.

摘要

已分离出一种拟南芥(十字花科的一种小型植物)突变体,该突变体由于隐性核突变而缺乏甘氨酸脱羧酶活性,其分离依据是对高浓度大气二氧化碳的生长需求。从该突变体叶片中分离出的线粒体未表现出甘氨酸依赖性氧气消耗,未从[14C]甘氨酸中释放14CO2,也未催化被认为是与甘氨酸裂解相关的第一个部分反应的甘氨酸 - 碳酸氢盐交换反应。在促进碳分配到光呼吸途径中间产物的大气条件下光照后,该突变体的光合作用降低,但在非光呼吸条件下未受损。因此,甘氨酸脱羧酶活性对于与光呼吸无关的任何基本功能都不是必需的。该突变体在光呼吸条件下的光合反应可能是由于乙醛酸氧化速率增加所致,这是由于所有易于转移的氨基被隔离在代谢不活跃的甘氨酸池中,以及光合作用循环中间产物的消耗。该突变体中外源施加的[14C]乙醇酸释放14CO2的速率比野生型低14倍,这表明甘氨酸脱羧是光呼吸CO2的唯一重要来源。

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