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Lipid induction of Chlamydomonas reinhardtii CC-124 using bicarbonate ion

机译:使用碳酸氢盐离子脂质诱导衣原体Reinhardtii CC-124

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Algal oils, which can be converted into biofuels, are one of the few possible substitutes for fossil fuels that can be used in conventional transportation systems. The algae have the distinctive advantage of having an exceptionally high productivity much higher than that of terrestrial plant-based oil production. However, the commercial viability of algal oils can only be achieved if the algal lipid content and consequently their productivity are still further enhanced. In this study, bicarbonate ions were investigated for their potential as a lipid-inducing chemical because they are one of the first key substrates in triacylglycerol (TAG) biosynthesis in microalgae. To examine this hypothesis, Chlamydomonas reinhardtii CC-124 was chosen as a model microalgae species, and the TAG content in CC-124 was semi-quantitatively detected by the Nile Red staining method. The highest TAG accumulation was observed for 12.5 g L-1 sodium bicarbonate. At this concentration, the light intensity was found to have a more important role than the cultivation temperature. This result suggests that the simple addition of sodium bicarbonate to a harvested and concentrated algae solution could serve as a facile and effective method for boosting the biofuel productivity of algae.
机译:可以转化为生物燃料的藻类油是可以在传统运输系统中使用的化石燃料的少数可能的替代品之一。藻类具有特别高生产率的独特优势,高于基于陆地植物的油生产。然而,只有在藻类脂质含量仍然可以进一步增强藻类脂质含量,才能实现藻类油的商业活力。在这项研究中,研究了碳酸氢盐离子,以它们作为脂质诱导化学品的潜力,因为它们是微藻中三酰基甘油(标签)生物合成中的第一关键基质之一。为了检查该假设,选择衣原体Reinhardtii CC-124作为模型微藻物种,CC-124中的标签含量由尼罗红染色方法半定量检测。观察到最高标签累积为12.5g L-1碳酸氢钠。在这种浓度下,发现光强度具有比培养温度更重要的作用。该结果表明,将碳酸氢钠简单地添加到收获和浓缩的藻类溶液中可以作为促进藻类生物燃料生产率的容易和有效的方法。

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