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泡罩塔光生物反应器中培育细顶琼脂微幼苗的最佳温度和光周期

Optimal temperature and photoperiod for the cultivation of Agardhiella subulata microplantlets in a bubble-column photobioreactor.

作者信息

Huang Yao-Ming, Rorrer Gregory L

机构信息

Department of Chemical Engineering, Oregon State University, Corvallis, Oregon 97331, USA.

出版信息

Biotechnol Bioeng. 2002 Jul 20;79(2):135-44. doi: 10.1002/bit.10307.

Abstract

The optimal temperature and illumination photoperiod requirements for the phototrophic growth of a novel microplantlet suspension culture derived from the macrophytic marine red alga Agardhiella subulata were determined. The optimal growth temperature was 24 degrees C. The effects of illumination light-dark (LD) photoperiod (hour of light:hours of darkness within a 24 h cycle) on biomass production was studied within a bubble-column photobioreactor. The 4.5 cm diameter photobioreactor was maintained at near-saturation conditions with respect to light flux (38 mciromol photons m(-2) s(-1)), nutrient medium delivery (20% nutrient replacement per day), and CO(2) delivery (0.35 mmol CO(2) L(-1) h(-1)) so that the cumulative effects of photodamage on the cell density versus time curve at photoperiods approaching continuous light could be observed. Biomass production was maximized at 16:8 LD, where biomass densities exceeding 3.6 g dry cell mass L(-1) were achieved after 60 days in culture. Biomass production was proportional to photoperiod at low fractional photoperiods (< or =10:14 LD), but high fractional photoperiods approaching continuous light (> or = 20:4 LD) shut down biomass production. Biomass production versus time profiles under resource-saturated cultivation conditions were adequately described by a cumulative photodamage growth model, which coupled reversible photodamage processes to the specific growth rate. Under light-saturated growth conditions, the rate constant for photodamage was kd = 1.17 +/- 0.28 day(-1) (+/-1.0 SE), and the rate constant for photodamage repair was kr = 5.12 +/- 0.95 day(-1) (+/-1.0 SE) at 24 degrees C.

摘要

确定了源自大型海洋红藻阿氏角叉菜的新型微型植株悬浮培养物光合生长的最佳温度和光照光周期要求。最佳生长温度为24摄氏度。在鼓泡柱光生物反应器中研究了光照-黑暗(LD)光周期(24小时周期内的光照小时数:黑暗小时数)对生物量生产的影响。直径4.5厘米的光生物反应器在光通量(38微摩尔光子·米-2·秒-1)、营养培养基供应(每天20%的营养物替换)和二氧化碳供应(0.35毫摩尔二氧化碳·升-1·小时-1)方面保持在接近饱和的条件下,以便能够观察到在接近连续光照的光周期下光损伤对细胞密度与时间曲线的累积影响。生物量生产在16:8 LD时达到最大值,培养60天后生物量密度超过3.6克干细胞质量·升-1。在低分数光周期(≤10:14 LD)下,生物量生产与光周期成正比,但接近连续光照的高分数光周期(≥20:4 LD)会抑制生物量生产。资源饱和培养条件下生物量生产与时间的关系曲线可以通过累积光损伤生长模型进行充分描述,该模型将可逆光损伤过程与比生长速率联系起来。在光饱和生长条件下,24摄氏度时光损伤的速率常数为kd = 1.17 ± 0.28天-1(±1.0标准误差),光损伤修复的速率常数为kr = 5.12 ± 0.95天-1(±1.0标准误差)。

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