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首页> 外文期刊>The Plant Cell >Metabolic fluxes in an illuminated Arabidopsis rosette.
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Metabolic fluxes in an illuminated Arabidopsis rosette.

机译:照明的拟南芥花丛中的代谢通量。

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摘要

Photosynthesis is the basis for life, and its optimization is a key biotechnological aim given the problems of population explosion and environmental deterioration. We describe a method to resolve intracellular fluxes in intact Arabidopsis thaliana rosettes based on time-dependent labeling patterns in the metabolome. Plants photosynthesizing under limiting irradiance and ambient CO2 in a custom-built chamber were transferred into a 13CO2-enriched environment. The isotope labeling patterns of 40 metabolites were obtained using liquid or gas chromatography coupled to mass spectrometry. Labeling kinetics revealed striking differences between metabolites. At a qualitative level, they matched expectations in terms of pathway topology and stoichiometry, but some unexpected features point to the complexity of subcellular and cellular compartmentation. To achieve quantitative insights, the data set was used for estimating fluxes in the framework of kinetic flux profiling. We benchmarked flux estimates to four classically determined flux signatures of photosynthesis and assessed the robustness of the estimates with respect to different features of the underlying metabolic model and the time-resolved data set.
机译:考虑到种群爆炸和环境恶化的问题,光合作用是生命的基础,其优化是关键的生物技术目标。我们描述了一种基于代谢组中随时间变化的标记模式解决完整拟南芥玫瑰花结中细胞内通量的方法。将定制室内的有限辐照度和环境CO 2 下的光合作用转移到富含 13 CO 2 的环境中。使用液相色谱或气相色谱-质谱联用技术获得了40种代谢物的同位素标记图谱。标记动力学揭示了代谢物之间的显着差异。在定性水平上,它们在途径拓扑和化学计量方面符合预期,但一些意外的特征表明亚细胞和细胞区室的复杂性。为了获得定量的见解,该数据集用于在动态通量分析框架内估计通量。我们将通量估计值与光合作用的四个经典确定的通量签名进行基准比较,并针对基础代谢模型和时间分辨数据集的不同特征评估了估计值的稳健性。

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