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Strategies for metabolic flux analysis in plants using isotope labelling.

机译:使用同位素标记的植物代谢通量分析策略。

摘要

Flux measurements through metabolic pathways generate insights into the integration of metabolism, and there is increasing interest in using such measurements to quantify the metabolic effects of mutation and genetic manipulation. Isotope labelling provides a powerful approach for measuring metabolic fluxes, and it gives rise to several distinct methods based on either dynamic or steady-state experiments. We discuss the application of these methods to photosynthetic and non-photosynthetic plant tissues, and we illustrate the different approaches with an analysis of the pathways interconverting hexose phosphates and triose phosphates. The complicating effects of the pentose phosphate pathway and the problems arising from the extensive compartmentation of plant cell metabolism are considered. The non-trivial nature of the analysis is emphasised by reference to invalid deductions in earlier work. It is concluded that steady-state isotopic labelling experiments can provide important information on the fluxes through primary metabolism in plants, and that the combination of stable isotope labelling with detection by nuclear magnetic resonance is particularly informative.
机译:通过代谢途径进行的通量测量产生了对代谢整合的见解,并且越来越多的兴趣使用这种测量来量化突变和遗传操作的代谢作用。同位素标记为测量代谢通量提供了一种有力的方法,并且它基于动态或稳态实验提出了几种不同的方法。我们讨论了这些方法在光合作用和非光合作用植物组织中的应用,并通过分析相互转化己糖磷酸酯和磷酸三糖磷酸酯的途径说明了不同的方法。考虑了戊糖磷酸途径的复杂作用以及植物细胞代谢的广泛区隔所引起的问题。通过提及早期工作中的无效推论,强调了分析的非平凡性质。结论是,稳态同位素标记实验可以提供有关植物中主要代谢过程中通量的重要信息,并且稳定同位素标记与核磁共振检测相结合特别有用。

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