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Physiological Properties of Photoautotrophic Microalgae and Cyanobacteria Relevant to Industrial Biomass Production

机译:与工业生物量生产相关的光学营养性微藻和蓝藻的生理特性

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Photoautotrophic mass culture of microalgae is currently under investigation for social implementation, since such organisms are anticipated to be resources of alternative fuels and materials for reducing global warming. Production scale-up of culture systems and economy balance are great barriers for practical usage. In order to develop new culture systems such as attachment on solid surfaces or biofilms, we investigated various characteristics of photosynthesis in Chlorella, not only in liquid but also on filter membranes. In aquatic cultures, the photosynthetic rate was almost the same as the specific exponential growth rate at over 32 degrees C, suggesting that highly efficient cell growth was achieved at that temperature. The algal cells could fix about 50mmolcarbons per mole photons, at cloudy-day-level light intensities, which result to produce 1.2 g dry cell weight in calculation.Moreover, Chlorella could grow on a membrane surface at almost the same rate as in liquid. Similar tolerance to water deficiency was observed in a cyanobacterium, Synechocystis, in which gene expression responded in 30min after the stress. Such a tolerance was also observed in other species of microalgae and cyanobacteria in photosynthesis.
机译:微藻的光谱繁体培养物目前正在进行社会实施的调查中,因为这些生物预计是替代燃料和用于减少全球变暖的材料的资源。生产扩大规模的文化系统和经济平衡是实际使用量的巨大障碍。为了开发新的培养系统,如固体表面或生物膜上的附着,我们研究了小球藻中光合作用的各种特征,不仅在液体中,还在过滤膜上。在水生培养物中,光合速率与超过32摄氏度的特定指数增长率几乎相同,表明在该温度下实现了高效的细胞生长。藻类细胞可以在浑浊的光强度下每摩尔光子固定约50mmolcarbons,这导致在计算中产生1.2g干细胞重量.Oore,小球藻可以以与液体的几乎相同的速率在膜表面上生长。在综合症综合症术中观察到类似的对水缺乏的耐受性,其中基因表达在压力后30min响应。在光合作用中的其他种类微藻和蓝藻中也观察到这种耐受性。

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