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首页> 外文期刊>Aquatic Microbial Ecology >Short-term variations in photosynthetic parameters of Nannochloropsis cultures grown in two types of outdoor mass cultivation systems
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Short-term variations in photosynthetic parameters of Nannochloropsis cultures grown in two types of outdoor mass cultivation systems

机译:两种室外大规模栽培系统中生长的拟南芥培养物光合参数的短期变化

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ABSTRACT: The present study evaluated productivity under different operational (optical) conditions using the unicellular alga Nannochloropsis sp. (Eustigmatophyta). This alga is often grown in mass algal cultures because it contains high contents of the polyunsaturated fatty acid, eicosapentaenoic acid (EPA, 20:5ω3). We followed biomass, photosynthetic activities and physiological parameters in a 3 d experiment using various photosynthesis techniques in 2 outdoor cultivation systems: a flat panel photobioreactor (FPP) and a high rate algal pond (HRAP). We aimed to detect acclimation behaviour to the different optical conditions, with the FPP having a short light path and the HRAP having a long light path. Both algae cultures showed an afternoon depression of photosynthetic activity, which was more pronounced in the FPP. Therefore, the HRAP culture showed ‘classical’ shade adaptation behaviour, whereas the FPP algae was high-light acclimated. The FPP showed diurnal changes in the potential rates of photosynthesis and respiration. High temperatures (41°C) on Day 3 in the FPP caused a large reduction in the maximum Photosystem II (PSII) efficiency (Fv/Fm) and an over-reduction of the PSII acceptors, which did not recover during the light period. Chlorophyll fluorescence measurements with and without dark adaptation suggested that the decreased photosynthetic activity was due to both chronic and dynamic downregulation. Photodamage was higher in the FPP, but most was recovered during the evening. A comparison between the quantum efficiencies for PSII charge separation and oxygen evolution revealed a close coupling between the 2 processes. We also concluded that the optical absorption cross section of PSII equalled 75% of the total absorption cross section.
机译:摘要:本研究使用单细胞藻类 Nannochloropsis sp评估了在不同操作(光学)条件下的生产率。 (桔梗)。这种藻类经常在大规模藻类培养物中生长,因为它含有高含量的多不饱和脂肪酸二十碳五烯酸(EPA,20:5ω3)。我们在2种室外栽培系统(平板光生物反应器(FPP)和高速率藻池(HRAP))中使用各种光合作用技术在3天的实验中跟踪了生物量,光合作用活动和生理参数。我们旨在检测不同光学条件下的适应行为,其中FPP的光程短,而HRAP的光程长。两种藻类培养物都显示出光合作用的下午降低,这在FPP中更为明显。因此,HRAP文化表现出“经典的”阴影适应行为,而FPP藻类则是高光适应性的。 FPP显示出潜在的光合作用和呼吸速率的日变化。 FPP第3天的高温(41​​°C)导致最大光系统II(PSII)效率( F v / F m )和PSII受体的过度还原,在光照期没有恢复。叶绿素荧光测量在有暗适应和无暗适应的情况下均表明,光合作用降低是由于慢性和动态下调。 FPP的光损伤较高,但大部分在晚上恢复。 PSII电荷分离的量子效率与氧气释放之间的比较表明,这两个过程之间存在紧密的耦合。我们还得出结论,PSII的光吸收截面等于总吸收截面的75%。

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