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用于评估植物代谢途径的体内31P和多标记13C核磁共振测量。

In vivo 31P and multilabel 13C NMR measurements for evaluation of plant metabolic pathways.

作者信息

Rijhwani S K, Ho C H, Shanks J V

机构信息

Department of Bioengineering, Rice University, Houston, Texas 77251-1892, USA.

出版信息

Metab Eng. 1999 Jan;1(1):12-25. doi: 10.1006/mben.1998.0102.

Abstract

Reliable measurements of intracellular metabolites are useful for effective plant metabolic engineering. This study explored the application of in situ 31P and 13C NMR spectroscopy for long-term measurements of intracellular pH and concentrations of several metabolites in glycolysis, glucan synthesis, and central carbon metabolic pathways in plant tissues. An NMR perfusion reactor system was designed to allow Catharanthus roseus hairy root cultures to grow for 3-6 weeks, during which time NMR spectroscopy was performed. Constant cytoplasmic pH (7.40+/-0.06), observed during the entire experiment, indicated adequate oxygenation. 13C NMR spectroscopy was performed on hairy root cultures grown in solutions containing 1-13C-, 2-13C-, and 3-13C-labeled glucose in separate experiments and the flow of label was monitored. Activities of pentose phosphate pathways, nonphotosynthetic CO2 fixation, and glucan synthesis pathways were evident from the experimental results. Scrambling of label in glucans also indicated recycling of triose phosphate and their subsequent conversion to hexose phosphates.

摘要

可靠地测量细胞内代谢物对于有效的植物代谢工程很有用。本研究探索了原位³¹P和¹³C核磁共振光谱在长期测量植物组织中糖酵解、葡聚糖合成和中心碳代谢途径中细胞内pH值及几种代谢物浓度方面的应用。设计了一个核磁共振灌注反应器系统,以使长春花毛状根培养物生长3至6周,在此期间进行核磁共振光谱分析。在整个实验过程中观察到的恒定细胞质pH值(7.40±0.06)表明氧合充足。在单独的实验中,对生长在含有¹-¹³C-、²-¹³C-和³-¹³C标记葡萄糖的溶液中的毛状根培养物进行¹³C核磁共振光谱分析,并监测标记的流动情况。实验结果表明了磷酸戊糖途径、非光合二氧化碳固定和葡聚糖合成途径的活性。葡聚糖中标记的混乱也表明磷酸丙糖的循环利用及其随后向磷酸己糖的转化。

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