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利用甘蓝型油菜胚胎代谢网络设计用于植物系统稳态通量测量的底物标记物。

Design of substrate label for steady state flux measurements in plant systems using the metabolic network of Brassica napus embryos.

作者信息

Libourel Igor G L, Gehan Jackson P, Shachar-Hill Yair

机构信息

Department of Plant Biology, Michigan State University, East Lansing, Michigan 48824, USA.

出版信息

Phytochemistry. 2007 Aug-Sep;68(16-18):2211-21. doi: 10.1016/j.phytochem.2007.04.033. Epub 2007 Jun 12.

Abstract

Steady state metabolic flux analysis using (13)C labeled substrates is of growing importance in plant physiology and metabolic engineering. The quality of the flux estimates in (13)C metabolic flux analysis depend on the: (i) network structure; (ii) flux values; (iii) design of the labeling substrate; and (iv) label measurements performed. Whereas the first two parameters are facts of nature, the latter two are to some extent controlled by the experimenter, yet they have received little attention in most plant studies. Using the metabolic flux map of developing Brassica napus (Rapeseed) embryos, this study explores the value of optimal substrate label designs obtained with different statistical criteria and addresses the applicability of different optimal designs to biological questions. The results demonstrate the value of optimizing the choice of labeled substrates and show that substrate combinations commonly used in bacterial studies can be far from optimal for mapping fluxes in plant systems. The value of performing additional experiments and the inclusion of measurements is also evaluated.

摘要

使用碳-13标记底物进行稳态代谢通量分析在植物生理学和代谢工程中变得越来越重要。碳-13代谢通量分析中通量估计的质量取决于:(i)网络结构;(ii)通量值;(iii)标记底物的设计;以及(iv)所进行的标记测量。前两个参数是自然事实,而后两个参数在一定程度上由实验者控制,但在大多数植物研究中它们很少受到关注。本研究利用发育中的甘蓝型油菜(油菜籽)胚胎的代谢通量图,探索了通过不同统计标准获得的最佳底物标记设计的价值,并探讨了不同最佳设计对生物学问题的适用性。结果证明了优化标记底物选择的价值,并表明细菌研究中常用的底物组合对于绘制植物系统中的通量可能远非最佳。还评估了进行额外实验和纳入测量的价值。

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