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Analysis of Arabidopsis with Highly Reduced Levels of Malate and Fumarate Sheds Light on the Role of These Organic Acids as Storage Carbon Molecules

机译:苹果酸和富马酸酯含量降低的拟南芥分析揭示了这些有机酸作为储碳分子的作用

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摘要

While malate and fumarate participate in a multiplicity of pathways in plant metabolism, the function of these organic acids as carbon stores in C3 plants has not been deeply addressed. Here, Arabidopsis (Arabidopsis thaliana) plants overexpressing a maize (Zea mays) plastidic NADP-malic enzyme (MEm plants) were used to analyze the consequences of sustained low malate and fumarate levels on the physiology of this C3 plant. When grown in short days (sd), MEm plants developed a pale-green phenotype with decreased biomass and increased specific leaf area, with thin leaves having lower photosynthetic performance. These features were absent in plants growing in long days. The analysis of metabolite levels of rosettes from transgenic plants indicated similar disturbances in both sd and long days, with very low levels of malate and fumarate. Determinations of the respiratory quotient by the end of the night indicated a shift from carbohydrates to organic acids as the main substrates for respiration in the wild type, while MEm plants use more reduced compounds, like fatty acids and proteins, to fuel respiration. It is concluded that the alterations observed in sd MEm plants are a consequence of impairment in the supply of carbon skeletons during a long dark period. This carbon starvation phenotype observed at the end of the night demonstrates a physiological role of the C4 acids, which may be a constitutive function in plants.
机译:苹果酸和富马酸酯参与植物代谢的多种途径,但这些有机酸作为C3植物中碳存储的功能尚未得到深入研究。在这里,使用过表达玉米(Zea mays)质体NADP-苹果酸酶(MEm植物)的拟南芥(Arabidopsis thaliana)植物来分析持续的低苹果酸和富马酸水平对这种C3植物生理的影响。当在短日(sd)中生长时,MEm植物表现出淡绿色的表型,具有减少的生物量和增加的比叶面积,而薄叶具有较低的光合性能。这些特征在长时间生长的植物中不存在。对来自转基因植物的莲座丛的代谢物水平的分析表明,在sd和漫长的日子里,苹果酸和富马酸酯的含量都非常低,这在sd和漫长的日子中都是相似的。在深夜之前确定呼吸商表明,从碳水化合物到有机酸已成为野生型呼吸的主要底物,而MEm植物则使用更多还原性化合物(如脂肪酸和蛋白质)来增强呼吸作用。可以得出结论,在sd MEm植物中观察到的这种变化是长期处于黑暗期的碳骨架供应受损的结果。在深夜观察到的这种碳饥饿表型证明了C4酸的生理作用,这可能是植物的组成功能。

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