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The Effect of Diel Temperature and Light Cycles on the Growth of Nannochloropsis oculata in a Photobioreactor Matrix

机译:Diel温度和光循环对光生物反应器基质中拟南芥生长的影响

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摘要

A matrix of photobioreactors integrated with metabolic sensors was used to examine the combined impact of light and temperature variations on the growth and physiology of the biofuel candidate microalgal species Nannochloropsis oculata. The experiments were performed with algal cultures maintained at a constant 20°C versus a 15°C to 25°C diel temperature cycle, where light intensity also followed a diel cycle with a maximum irradiance of 1920 µmol photons m−2 s−1. No differences in algal growth (Chlorophyll a) were found between the two environmental regimes; however, the metabolic processes responded differently throughout the day to the change in environmental conditions. The variable temperature treatment resulted in greater damage to photosystem II due to the combined effect of strong light and high temperature. Cellular functions responded differently to conditions before midday as opposed to the afternoon, leading to strong hysteresis in dissolved oxygen concentration, quantum yield of photosystem II and net photosynthesis. Overnight metabolism performed differently, probably as a result of the temperature impact on respiration. Our photobioreactor matrix has produced novel insights into the physiological response of Nannochloropsis oculata to simulated environmental conditions. This information can be used to predict the effectiveness of deploying Nannochloropsis oculata in similar field conditions for commercial biofuel production.
机译:集成了代谢传感器的光生物反应器矩阵用于检查光和温度变化对生物燃料候选微藻物种Nannochloropsis oculata的生长和生理的综合影响。实验是在相对于15°C至25°C的diel温度周期保持恒定20°C的藻类培养条件下进行的,其中光强度也跟随diel周期,最大辐照度为1920 µmol光子m < / sup> s -1 。两种环境方案之间的藻类生长(叶绿素a)没有差异。然而,代谢过程对环境条件的变化全天响应不同。由于强光和高温的共同作用,可变温度处理导致对光系统II的更大破坏。细胞功能对中午之前与下午之前的条件反应不同,导致溶解氧浓度,光系统II的量子产率和净光合作用强烈滞后。过夜代谢表现不同,可能是温度对呼吸的影响所致。我们的光生物反应器基质对拟南芥对模拟环境条件的生理反应产生了新颖的见解。该信息可用于预测在类似的田间条件下将Nannochloropsis oculata部署为商业生物燃料生产的有效性。

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