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Dynamic Labeling Reveals Temporal Changes in Carbon Re-Allocation within the Central Metabolism of Developing Apple Fruit

机译:动态标签揭示了发育中苹果果实中央代谢内碳再分配的时间变化

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摘要

In recent years, the application of isotopically labeled substrates has received extensive attention in plant physiology. Measuring the propagation of the label through metabolic networks may provide information on carbon allocation in sink fruit during fruit development. In this research, gas chromatography coupled to mass spectrometry based metabolite profiling was used to characterize the changing metabolic pool sizes in developing apple fruit at five growth stages (30, 58, 93, 121, and 149 days after full bloom) using 13C-isotope feeding experiments on hypanthium tissue discs. Following the feeding of [U-13C]glucose, the 13C-label was incorporated into the various metabolites to different degrees depending on incubation time, metabolic pathway activity, and growth stage. Evidence is presented that early in fruit development the utilization of the imported sugars was faster than in later developmental stages, likely to supply the energy and carbon skeletons required for cell division and fruit growth. The declined 13C-incorporation into various metabolites during growth and maturation can be associated with the reduced metabolic activity, as mirrored by the respiratory rate. Moreover, the concentration of fructose and sucrose increased during fruit development, whereas concentrations of most amino and organic acids and polyphenols declined. In general, this study showed that the imported compounds play a central role not only in carbohydrate metabolism, but also in the biosynthesis of amino acid and related protein synthesis and secondary metabolites at the early stage of fruit development.
机译:近年来,同位素标记底物的应用在植物生理学中受到广泛关注。通过代谢网络测量标签的传播可能会提供有关在果实发育过程中碳在沉果中的碳分配的信息。在这项研究中,使用气相色谱法和基于质谱的代谢物分析相结合的方法,使用来表征发育中的苹果果实在五个生长阶段(盛开后30、58、93、121和149天)的代谢池大小变化。 hy组织圆盘上的13 C-同位素加料实验。喂食[U- 13 C]葡萄糖后,根据潜伏时间,代谢途径活性和代谢时间,将 13 C-标记以不同程度掺入各种代谢物中成长阶段。有证据表明,在果实发育的早期,进口糖的利用比在后期发育阶段要快,这可能提供细胞分裂和果实生长所需的能量和碳骨架。生长和成熟过程中 13 C掺入各种代谢产物的下降与呼吸活动所反映的代谢活性降低有关。此外,在果实发育过程中,果糖和蔗糖的浓度增加,而大多数氨基酸和有机酸以及多酚的浓度下降。总的来说,这项研究表明,进口的化合物不仅在碳水化合物的代谢中起着中心作用,而且在水果发育的早期还起着氨基酸的生物合成以及相关的蛋白质合成和次级代谢产物的作用。

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