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High Cell Density Culture of Anabaena variabilis with Controlled Light Intensity and Nutrient Supply

机译:受控光强度和养分供应的鱼腥藻高细胞密度培养

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Controlling the light energy and major nutrients is important for high cell density culture of cyanobacterial cells. The growth phase of Anabaena variabilis can be divided into an exponential growth phase and a deceleration phase. In this study, the cell growth in the deceleration phase showed a linear growth pattern. Both the period of the exponential growth phase and the average cell growth rate in the deceleration phase increased by controlling the light intensity. To control the light intensity, the specific irradiation rate was maintained above 10 mmol/s/g dry cell by increasing the incident light intensity stepwise. The final cell density increased by controlling the nutrient supply. For the control of the nutrient supply, nitrate, phosphate, and sulfate were intermittently added based on the growth yield, along with the combined control of light intensity and nutrient concentration. Under these control conditions, both final cell concentration and cell productivity increased, to 8.2 g/l and 1.9 g/l/day, respectively.
机译:控制光能和主要营养素对于蓝细菌细胞的高细胞密度培养非常重要。鱼腥藻的生长期可分为指数生长期和减速生长期。在这项研究中,细胞在减速阶段的生长呈线性增长模式。通过控制光强度,指数生长期的周期和减速期的平均细胞生长率均增加。为了控制光强度,通过逐步增加入射光强度,将比辐射率保持在10 mmol / s / g干电池以上。通过控制营养供应,最终细胞密度增加。为了控制养分供应,根据生长量间歇性添加硝酸盐,磷酸盐和硫酸盐,并同时控制光照强度和养分浓度。在这些控制条件下,最终细胞浓度和细胞生产率均分别增加至8.2 g / l和1.9 g / l / day。

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