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Two-tier vessel for photoautotrophic high-density cultures

机译:两层容器,用于光养自养高密度培养

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Two-tier vessels, developed for culturing of microalgae and cyanobacteria at high cell density on a shaken platform, were assembled from a flat lower chamber to be filled with a CO2 buffer and an upper flat sterile chamber for the culture that was separated from the lower chamber by a porous polypropylene membrane. Diffusive gas exchange with the atmosphere was controlled by the O-2 outlet channel. Referred to surface area, rates of CO2 transfer to a shaken weakly alkaline buffer solution across the membrane were higher than those reached on the conventional pathway through the free upper liquid surface. Membrane-mediated CO2 supply enabled rapid growth of Synechocystis sp. PCC 6803 and Synechococcus sp. PCC 7002 up to ultrahigh cell density. The biomass (dry weight) concentration of Synechococcus cultures reached more than 30 g L-1 on a buffered medium with adequate concentrations of mineral nutrients. An increase of 15 to 20 g L-1 was observed during repeated two-day cycles. Separate pathways for CO2 supply and oxygen outlet prevented significant loss of CO2. Convective gas flow through the oxygen outlet channel enabled the estimation of the O-2 generation rate. The permeability of the channel for diffusive O-2/N-2 exchange limited the O-2 concentration to a moderate value. It is concluded that shaken flat cultures using CO2 supply through a porous hydrophobic membrane and diffusive release of O-2 through a separate pathway are promising for research on microalgae and cyanobacteria.
机译:将两层容器开发成用于在摇动的平台上以高细胞密度培养微藻和蓝细菌的容器,该容器是从一个平坦的下腔室组装而成,并装有一个CO2缓冲液;一个上部平坦的无菌腔室用于与培养皿分开,该培养皿与下层分离室由多孔聚丙烯膜制成。通过O-2出口通道控制与大气的扩散性气体交换。以表面积计,CO 2穿过膜转移到摇动的弱碱性缓冲溶液中的速率高于通过自由上层液体表面的常规途径所达到的速率。膜介导的CO2供应使Synechocystis sp。迅速生长。 PCC 6803和Synechococcus sp。 PCC 7002高达超高单元密度。在具有足够矿物质营养浓度的缓冲培养基上,球菌培养物的生物量(干重)浓度达到30 g L-1以上。在重复的两天周期中观察到增加了15至20 g L-1。供氧和供氧的分开途径防止了二氧化碳的大量流失。通过氧气出口通道的对流气流可以估算O-2的生成速率。扩散O-2 / N-2交换通道的渗透性将O-2浓度限制在一个中等值。结论是,使用通过多孔疏水膜供应CO2的摇动平板培养物和通过单独途径的O-2扩散释放对于微藻类和蓝细菌的研究很有希望。

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