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首页> 外文期刊>Acta Horticulturae >Metabolic profiling of the response of tomato cells to oxygen stress.
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Metabolic profiling of the response of tomato cells to oxygen stress.

机译:番茄细胞对氧胁迫的响应的代谢分布图。

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To cope with postharvest storage under controlled atmosphere (CA) conditions, plant metabolism must be able to adapt to varying levels of oxygen, carbon dioxide and temperature. To further improve CA storage it is essential to understand the control and the dynamics of plant metabolism under the different storage conditions at the cellular level. To study the fast response of the metabolome to CA conditions tomato cells (Lycopersicon esculentum) were exposed to low levels of dissolved oxygen. Gas Chromatography-Mass Spectrometry (GC-MS) based metabolic profiling was performed to monitor the changes in soluble metabolites and 13C label within a 12 h time period. Limiting oxygen levels had an impact on primary metabolism with a decrease in anabolic pathways and amino acids linked to downstream glycolytic intermediates and the TCA cycle. On the other hand catabolic and antioxidant metabolism was up-regulated. 13C label measurement showed that metabolites which were directly involved or closely linked to the central pathway were more labeled under the different conditions.
机译:为了应对在受控大气(CA)条件下进行的收获后储存,植物的新陈代谢必须能够适应不同水平的氧气,二氧化碳和温度。为了进一步改善CA的存储,必须了解细胞水平上不同存储条件下植物代谢的控制和动态。为了研究代谢组对CA条件的快速反应,将番茄细胞()暴露于低水平的溶解氧中。进行了基于气相色谱-质谱(GC-MS)的代谢谱分析,以监测12小时内可溶性代谢产物和 13 C标签的变化。限制氧气含量对初级代谢产生影响,其合成代谢途径的减少以及与下游糖酵解中间体和TCA循环相关的氨基酸的减少。另一方面,分解代谢和抗氧化代谢被上调。 13 C标记测量结果显示,在不同条件下,直接参与或紧密联系中枢途径的代谢物标记更多。

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