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首页> 外文期刊>Plant physiology >Quantification of compartmented metabolic fluxes in developing soybean embryos by employing Biosynthetic ally directed fractional C-13 labeling, [C-13, H-1] two-dimensional nuclear magnetic resonance, and comprehensive isotopomer balancing
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Quantification of compartmented metabolic fluxes in developing soybean embryos by employing Biosynthetic ally directed fractional C-13 labeling, [C-13, H-1] two-dimensional nuclear magnetic resonance, and comprehensive isotopomer balancing

机译:通过使用生物合成定向C-13标记,[C-13,H-1]二维核磁共振和全面的同位素平衡,对发育中的大豆胚胎中的代谢代谢通量进行定量

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摘要

Metabolic flux quantification in plants is instrumental in the detailed understanding of metabolism but is difficult to perform on a systemic level. Toward this aim, we report the development and application of a computer-aided metabolic flux analysis toot that enables the concurrent evaluation of fluxes in several primary metabolic pathways. Labeling experiments were performed by feeding a mixture of U-C-13 Suc, naturally abundant Suc, and Gln to developing soybean (Glycine max) embryos. Two-dimensional [C-13,H-1] NMR spectra of seed storage protein and starch hydrolysates were acquired and yielded a labeling data set consisting of 155 C-13 isotopomer abundances. We developed a computer program to automatically calculate fluxes from this data. This program accepts a user-defined metabolic network model and incorporates recent mathematical advances toward accurate and efficient flux evaluation. Fluxes were calculated and statistical analysis was performed to obtain SDs. A high flux was found through the oxidative pentose phosphate pathway (19.99 +/- 4.39 mumol d(-1) cotyledon(-1), or 104.2 carbon mol +/- 23.0 carbon mol per 100 carbon mol of Suc uptake). Separate transketolase and transaldolase fluxes could be distinguished in the plastid and the cytosol, and those in the plastid were found to be at least 6-fold higher. The backflux from triose to hexose phosphate was also found to be substantial in the plastid (21.72 +/- 5.00 mumol d(-1) cotyledon(-1), or 113.2 carbon mol +/-26.0 carbon mol per 100 carbon mol of Suc uptake). Forward and backward directions of anaplerotic fluxes could be distinguished. The glyoxylate shunt flux was found to be negligible. Such a generic flux analysis tool can serve as a quantitative tool for metabolic studies and phenotype comparisons and can be extended to other plant systems.
机译:植物中的代谢通量定量有助于详细了解代谢,但难以在系统水平上进行。为了实现这一目标,我们报告了计算机辅助代谢通量分析嘟嘟的开发和应用,该工具可以同时评估几种主要代谢途径中的通量。通过将U-C-13 Suc,天然丰富的Suc和Gln的混合物饲喂发育中的大豆(Glycine max)胚胎来进行标记实验。获得了种子贮藏蛋白和淀粉水解物的二维[C-13,H-1] NMR谱图,并得到了由155个C-13异构体丰度组成的标记数据集。我们开发了一个计算机程序,可以根据这些数据自动计算通量。该程序接受用户定义的代谢网络模型,并结合了最新的数学进展,以实现准确,高效的通量评估。计算通量并进行统计分析以获得SD。通过氧化戊糖磷酸途径发现了高通量(19.99 +/- 4.39摩尔d(-1)子叶(-1),或每100碳摩尔Suc吸收104.2碳摩尔+/- 23.0碳摩尔)。在质体和胞质溶胶中可以区分出单独的转酮醇酶和转醛醇酶通量,并且发现质体中的通量和酮通量至少高6倍。从三糖到己糖磷酸的回流在质体中也很明显(21.72 +/- 5.00 mol d(-1)子叶(-1),或者每100 mol的Suc含113.2 mol +/- 26.0碳mol摄取)。可以分辨出动脉通量的向前和向后方向。发现乙醛酸酯分流通量可以忽略不计。这种通用的通量分析工具可以用作代谢研究和表型比较的定量工具,并且可以扩展到其他植物系统。

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