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首页> 外文期刊>Journal of Applied Phycology >CO2 fixation and lipid accumulation in biofilms of the aerial microalga Coccomyxa sp KGU-D001 (Trebouxiophyceae)
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CO2 fixation and lipid accumulation in biofilms of the aerial microalga Coccomyxa sp KGU-D001 (Trebouxiophyceae)

机译:航空微藻Coccomyxa SP KGU-D001的生物膜中的CO2固定和脂质积累(Trebouxiophyceae)

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摘要

This study compares lipid accumulation by immobilized aerial microalga Coccomyxa sp. KGU-D001 (Trebouxiophyceae) in biofilms and in aqueous suspended cultivation. Under direct exposure to normal air (low CO2) and light conditions, triacylglycerol (TAG) synthesis was significantly stimulated in algal biofilms on wet cotton wool. The TAG accumulation increased with decreasing thickness of the biofilm. This trend was attributed to CO2 fixation by photosynthesis of the biofilm cells, which increases the cellular accumulation of TAG. In a 17-mu m-thick biofilm cultivated for 7 days, the total fatty acid (FA) content reached 27% of the cell dry weight. Under these conditions, approximately 60% of the fixed cellular carbon was presumed to be invested in TAG synthesis through free FAs. The CO2 fixation rate was almost maximized at relatively low photon flux density (25 mu mol photons m(-2) s(-1)). CO2-gas fixing algal biofilm systems can realize novel non-suspended cultivations, called artificial leaves, and thus present as strong candidates for biodiesel production in the near future.
机译:该研究通过固定的空中微藻Coccomyxa Sp比较了脂质积累。 kgu-d001(Trebouxiophyceeae)在生物膜和含水悬浮的栽培中。在直接暴露于正常空气(低CO 2)和光条件下,在湿棉羊毛上的藻类生物膜中显着刺激三酰基甘油(标签)合成。标签累积随着生物膜的厚度的降低而增加。这种趋势归因于生物膜细胞的光合作用的CO2固定,这增加了标签的蜂窝堆积。在17-mu m厚的生物膜中培养7天,总脂肪酸(Fa)含量达到细胞干重的27%。在这些条件下,假定大约60%的固定细胞碳通过自由Fas投入标签合成。在相对低的光子通量密度(25μmol光子M(-2)S(-1))中,CO 2固定速率几乎最大化。 CO2-气体固定藻类生物膜系统可以实现新的非悬浮栽培,称为人造叶子,因此在不久的将来作为生物柴油生产的强大候选者。

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