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Glyoxylate and Glutamate Effects on Photosynthetic Carbon Metabolism in Isolated Chloroplasts and Mesophyll Cells of Spinach

机译:乙醛酸盐和谷氨酸对菠菜叶绿体和叶肉细胞光合碳代谢的影响

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摘要

Addition of millimolar sodium glyoxylate to spinach (Spinacia oleracea) chloroplasts was inhibitory to photosynthetic incorporation of 14CO2 under conditions of both low (0.2 millimolar or air levels) and high (9 millimolar) CO2 concentrations. Incorporation of 14C into most metabolites decreased. Labeling of 6-P-gluconate and fructose-1,6-bis-P increased. This suggested that glyoxylate inhibited photosynthetic carbon metabolism indirectly by decreasing the reducing potential of chloroplasts through reduction of glyoxylate to glycolate. This hypothesis was supported by measuring the reduction of [14C]glyoxylate by chloroplasts. Incubation of isolated mesophyll cells with glyoxylate had no effect on net photosynthetic CO2 uptake, but increased labeling was observed in 6-P-gluconate, a key indicator of decreased reducing potential. The possibility that glyoxylate was affecting photosynthetic metabolism by decreasing chloroplast pH cannot be excluded. Increased 14C-labeling of ribulose-1,5-bis-P and decreased 3-P-glyceric acid and glycolate labeling upon addition of glyoxylate to chloroplasts suggested that ribulose-bis-P carboxylase and oxygenase might be inhibited either indirectly or directly by glyoxylate. Glyoxylate addition decreased 14CO2 labeling into glycolate and glycine by isolated mesophyll cells but had no effect on net 14CO2 fixation. Glutamate had little effect on net photosynthetic metabolism in chloroplast preparations but did increase 14CO2 incorporation by 15% in isolated mesophyll cells under air levels of CO2.
机译:在低(0.2毫摩尔或空气水平)和高(9毫摩尔)CO 2浓度条件下,向菠菜(菠菜(Spinacia oleracea))叶绿体中添加毫摩尔乙醛酸钠可抑制光合作用掺入 14 CO2。在大多数代谢物中, 14 C的掺入减少。 6-P-葡萄糖酸盐和果糖-1,6-bis-P的标记增加。这表明乙醛酸酯通过通过将乙醛酸酯还原为乙醇酸酯而降低叶绿体的还原潜力来间接抑制光合碳代谢。通过测量叶绿体对[ 14 C]乙醛酸酯的还原,可以支持这一假设。乙醛酸酯对分离的叶肉细胞进行培养对净光合作用CO2的吸收没有影响,但是在6-P-葡萄糖酸酯中观察到标记增加,这是还原电位降低的关键指标。不能排除乙醛酸通过降低叶绿体pH值影响光合代谢的可能性。在叶绿体中添加乙醛酸酯后,核糖-1,5-bis-P的 14 C标记增加,而3-P-甘油酸和乙醇酸标记降低,这表明核糖-bis-P羧化酶和加氧酶可能被乙醛酸酯间接或直接抑制。乙醛酸酯的添加减少了分离的叶肉细胞将 14 CO2标记为乙醇酸盐和甘氨酸,但对净 14 CO2的固定没有影响。谷氨酸对叶绿体制剂的净光合代谢影响不大,但在空气中CO2浓度下,分离的叶肉细胞中的 14 CO2掺入量却增加了15%。

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