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Characterization of Metabolic States of Arabidopsis thaliana Under Diverse Carbon and Nitrogen Nutrient Conditions via Targeted Metabolomic Analysis

机译:通过靶向代谢组学分析表征不同碳和氮营养条件下拟南芥的代谢态

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摘要

Plant growth and metabolism are regulated in response to various environmental factors. To investigate modulations in plant metabolism by the combined action of elevated atmospheric CO2 concentration and other nutritional factors, we performed targeted metabolomic analysis using Arabidopsis thaliana plants grown under 24 different conditions where the CO2 concentration, amounts and species of nitrogen source, and light intensity were modified. Our results indicate that both the biosynthesis of diverse metabolites and growth are promoted in proportion to the CO2 concentration at a wide range of CO2 levels, from ambient concentrations to an extremely high concentration (3,600 p.p.m.) of CO2. This suggests that A. thaliana has the potential to utilize effectively very high concentrations of CO2. On the other hand, ammonium (but not nitrate) supplied as an additional nitrogen source induced drastic alterations in metabolite composition, including increases in the contents of glucose, starch and several amino acids, and reductions in the tricarboxylic acid (TCA) cycle-related organic acid content under any CO2 conditions. Hierarchical clustering analysis using the metabolite profiles revealed that ammonium is a prominent factor determining metabolic status, while the CO2 concentration is not. However, ammonium-induced metabolic alterations were differently modified by high concentrations of CO2. Hence, our results imply that increases in CO2 concentration may differently influence plant metabolism depending on the nitrogen nutrient conditions.
机译:响应各种环境因素来调节植物的生长和代谢。为了研究大气CO2浓度升高和其他营养因素共同作用下植物代谢的调节作用,我们使用拟南芥植物在24种不同条件下生长进行了目标代谢组学分析,其中CO2浓度,氮源的数量和种类以及光强度为改性。我们的结果表明,从环境浓度到极高浓度(3,600 p.p.m.)的CO2,在宽范围的CO2水平下,多种代谢物的生物合成和生长均与CO2浓度成比例地促进。这表明拟南芥具有有效利用非常高浓度的CO2的潜力。另一方面,作为额外氮源供应的铵盐(而非硝酸盐)引起代谢物组成的剧烈变化,包括葡萄糖,淀粉和几种氨基酸含量的增加,以及与循环相关的三羧酸(TCA)的减少任何二氧化碳条件下的有机酸含量。使用代谢物谱的分层聚类分析表明,铵是决定代谢状态的重要因素,而CO2浓度不是。但是,铵诱导的代谢变化被高浓度的二氧化碳不同地修饰。因此,我们的结果表明,取决于氮营养状况,CO2浓度的增加可能会不同地影响植物的新陈代谢。

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