Organization of Advanced Science and Technology, Kobe University, 1-1 Rokkodai, Nada, Kobe, 657-8501, Japan.
J Exp Bot. 2013 Jul;64(10):2943-54. doi: 10.1093/jxb/ert134. Epub 2013 May 8.
Cyanobacteria represent a globally important biomass because they are responsible for a substantial proportion of primary production in the hydrosphere. Arthrospira platensis is a fast-growing halophilic cyanobacterium capable of accumulating glycogen and has the potential to serve as a feedstock in the fermentative production of third-generation biofuels. Accordingly, enhancing cyanobacterial glycogen production is a promising biofuel production strategy. However, the regulatory mechanism of glycogen metabolism in cyanobacteria is poorly understood. The aim of the present study was to determine the metabolic flux of glycogen biosynthesis using a dynamic metabolomic approach. Time-course profiling of widely targeted cyanobacterial metabolic intermediates demonstrated a global metabolic reprogramming that involves transient increases in the levels of some amino acids during the glycogen production phase induced by nitrate depletion. Also, in vivo labelling with NaH(13)CO3 enabled direct measurement of metabolic intermediate turnover in A. platensis, revealing that under conditions of nitrate depletion glycogen is biosynthesized with carbon derived from amino acids released from proteins via gluconeogenesis. This dynamic metabolic profiling approach provided conclusive evidence of temporal alterations in the metabolic profile in cyanobacterial cells.
蓝藻是一种具有全球重要意义的生物质,因为它们是水圈中大部分初级生产的主要贡献者。节旋藻是一种快速生长的嗜盐蓝藻,能够积累糖原,并且有可能作为发酵生产第三代生物燃料的原料。因此,提高蓝藻中糖原的产量是一种很有前途的生物燃料生产策略。然而,蓝藻中糖原代谢的调控机制还知之甚少。本研究旨在采用动态代谢组学方法来确定糖原生物合成的代谢通量。对广泛靶向的蓝藻代谢中间产物的时程分析表明,在氮耗尽诱导的糖原生产阶段,涉及到一些氨基酸水平的短暂增加,这是一种全局代谢重编程。此外,利用 NaH(13)CO3 进行体内标记,能够直接测量 A. platensis 中代谢中间产物的周转,结果表明,在氮耗尽的条件下,糖原是通过糖异生从蛋白质中释放的氨基酸来合成的。这种动态代谢谱分析方法为蓝藻细胞代谢谱的时间变化提供了确凿的证据。