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通过鉴定其培养的限制因素来提高集胞藻 PCC 6803 的光自养生长速率。

Increasing the Photoautotrophic Growth Rate of Synechocystis sp. PCC 6803 by Identifying the Limitations of Its Cultivation.

机构信息

Molecular Microbial Physiology Group, the Swammerdam Institute for Life Sciences, the University of Amsterdam, Science Park 904, Amsterdam 1098 XH, The Netherlands.

出版信息

Biotechnol J. 2018 Aug;13(8):e1700764. doi: 10.1002/biot.201700764. Epub 2018 May 2.

Abstract

Many conditions have to be optimized in order to be able to grow the cyanobacterium Synechocystis sp. PCC 6803 (Synechocystis) for an extended period of time under physiologically well-defined and constant conditions. It is still poorly understood what limits growth of this organism in batch and continuous cultures in BG-11, the standard medium used to grow Synechocystis. Through a series of batch experiments in flasks and continuous mode experiments in advanced photobioreactors, it is shown that the limiting nutrient during batch cultivation is sulfate, the depletion of which leads to ROS formation and rapid bleaching of pigments after entry into stationary phase. In continuous mode, however, the limiting nutrient is iron. Optimizing these growth conditions resulted in a so far highest growth rate of 0.16 h (4.3 h doubling time), which is significantly higher than the textbook value of 0.09 h (8 h doubling time). An improved medium, BG-11 for prolonged cultivation (BG-11-PC) is introduced, that allows for controlled, extended cultivation of Synechocystis, under well-defined physiological conditions. The data present here have implications for mass-culturing of cyanobacteria.

摘要

为了在生理条件定义明确且恒定的条件下长时间培养集胞藻 PCC 6803(集胞藻),需要优化许多条件。在 BG-11 中分批和连续培养中,什么限制了这种生物的生长,目前仍知之甚少。BG-11 是用于培养集胞藻的标准培养基。通过一系列在摇瓶中的分批实验和在先进的光生物反应器中的连续模式实验,表明在分批培养中,限制营养物质是硫酸盐,其耗尽会导致进入静止期后 ROS 的形成和色素的快速漂白。然而,在连续模式下,限制营养物质是铁。优化这些生长条件可使目前为止的最高生长速率达到 0.16 h(4.3 h 倍增时间),这明显高于教科书上的 0.09 h(8 h 倍增时间)。引入了一种新的延长培养的培养基 BG-11(BG-11-PC),可在明确的生理条件下控制和延长集胞藻的培养。这里提供的数据对蓝藻的大规模培养具有重要意义。

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