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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Growth and lipid synthesis promotion in mixotrophic Neochloris oleoabundans (Chlorophyta) cultivated with glucose
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Growth and lipid synthesis promotion in mixotrophic Neochloris oleoabundans (Chlorophyta) cultivated with glucose

机译:葡萄糖培养的混合营养油菜新绿藻(Chlorophyta)的生长和脂质合成促进

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In the recent years, the studies concerning the cultivation of Neochloris oleoabundans for biofuel purposes have increased, in relation to its capability to accumulate lipids when grown under nutrient starvation. Unfortunately, this cultivation mode does not allow to reach high biomass densities, which are required to improve the feasibility of the process. Increasing knowledge of the microalgal physiology is necessary to obtain new useful information for the improvement of culture performance in the perspective of large-scale cultivation. In this work, the mixotrophic cultivation of N. oleoabundans in a brackish medium added with different glucose concentrations has been tested under shaking, with the aim of stimulating growth alongside lipid accumulation inside cells. Cell morphology, glucose consumption, photosynthetic pigment content and photosynthetic efficiency were also investigated. Among all tested glucose concentrations (0–30 g L~(?1)), it was observed that 2.5 g L~(?1) was the optimal concentration, allowing to obtain the best compromise between glucose supplement, biomass production and lipid accumulation. Growth was highly enhanced in mixotrophic cultures, linked to the release of cells from sporocysts. A unique feature characterising mixotrophy in N. oleoabundans was the promotion of the maximum quantum yield of Photosystem II. Moreover, when mixotrophic cells entered the stationary phase, high lipid accumulation was induced. This study shows that the addition of glucose to N. oleoabundans remarkably increases the production of biomass enriched in lipids and represents an advancement for the cultivation of this microalga for applied purposes.
机译:近年来,关于在营养饥饿状态下生长的新油菜新生物用于生物燃料栽培的研究已经增加。不幸的是,这种培养模式不允许达到高生物质密度,这是提高该方法的可行性所必需的。从大规模种植的角度来看,增加微藻生理学知识对于获得新的有用信息对于改善培养性能是必要的。在这项工作中,已经在摇动下测试了在添加了不同葡萄糖浓度的微咸培养基中油橄榄猪笼草的混合营养培养,目的是刺激细胞内脂质堆积并促进生长。还研究了细胞形态,葡萄糖消耗,光合色素含量和光合效率。在所有测试的葡萄糖浓度(0–30 g L〜(?1))中,观察到2.5 g L〜(?1)是最佳浓度,可以在补充葡萄糖,生物量产生和脂质积累之间获得最佳平衡。混合营养培养物的生长高度增强,与孢子囊中细胞的释放有关。表征油橄榄猪笼草混合营养的一个独特特征是促进了Photosystem II的最大量子产率。此外,当混合营养细胞进入固定相时,诱导了高脂质积累。这项研究表明,将葡萄糖添加到油橄榄猪笼草中可显着增加富含脂质的生物质的产量,并代表了为应用目的培养这种微藻的进步。

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