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首页> 外文期刊>Journal of industrial microbiology & biotechnology >The use of multi-parameter flow cytometry to study the impact of n-dodecane additions to marine dinoflagellate microalga Crypthecodinium cohnii batch fermentations and DHA production.
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The use of multi-parameter flow cytometry to study the impact of n-dodecane additions to marine dinoflagellate microalga Crypthecodinium cohnii batch fermentations and DHA production.

机译:使用多参数流式细胞术研究正十二烷添加对海洋藻鞭毛微藻Crypthecodinium cohnii分批发酵和DHA生产的影响。

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摘要

The physiological response of Crypthecodinium cohnii batch cultivations and docosahexaenoic acid (DHA) production to n-dodecane additions were studied. Different n-dodecane concentrations [0, 0.5, 1, 2.5, 5, 10 and 20% (v/v)] were added to preliminary shake flask cultivations. The n-dodecane fraction that gave best results in terms of biomass and DHA production was 0.5% (v/v). The n-dodecane fractions of 2.5, 5, 10 and 20% (v/v) to C. cohnii preliminary shake flask cultures inhibited the microalgal growth and DHA production, although a high proportion of cells with intact cytoplasmic membrane was present in the end of these fermentations. After the addition of a pulse of n-dodecane (0.5% v/v) to C. cohnii exponential growing cells in a bioreactor, glucose uptake volumetric rate increased 2.5-fold, while biomass production volumetric rate increased 2.8-fold. The specific growth rate was increased 1.5-fold. The DHA % in biomass, DHA % of TFA and DHA concentration also increased (54, 22 and 58%, respectively), after the n-dodecane addition. At this n-dodecane fraction (0.5% v/v), multi-parameter flow cytometry demonstrated that C. cohnii cell membrane integrity was not affected. The results demonstrated that the addition of 0.5% of n-dodecane (v/v) to C. cohnii fermentations can be an easy and cheap way for enhancing the biomass and DHA production, avoiding the use of high speed rates (resulting in important power agitation costs) that affects the microalga proliferation and increases the bioprocess costs. A new strategy to improve the DHA production from this microalga in two-phase large-scale bioreactors is now in progress.
机译:研究了Crypthecodinium cohnii分批培养和二十二碳六烯酸(DHA)生成对正十二烷添加的生理响应。将不同的正十二烷浓度[0、0.5、1、2.5、5、10和20%(v / v)]添加到初步摇瓶培养中。就生物质和DHA产生而言,提供最佳结果的正十二烷分数为0.5%(v / v)。尽管最终存在大量具有完整细胞质膜的细胞,但相对于C. cohnii摇瓶的摇瓶培养,正十二烷分数为2.5%,5%,10%和20%(v / v)抑制了微藻的生长和DHA的产生。这些发酵。向生物反应器中的C. cohnii指数生长细胞添加正十二烷(0.5%v / v)脉冲后,葡萄糖摄取体积速率增加了2.5倍,而生物质生产体积速率增加了2.8倍。比增长率提高了1.5倍。加入正十二烷后,生物量中的DHA%,TFA中的DHA%和DHA浓度也有所增加(分别为54%,22%和58%)。在此正十二烷级分(0.5%v / v)下,多参数流式细胞术表明,C。cohnii细胞膜完整性未受到影响。结果表明,将0.5%的正十二烷(v / v)添加到C. cohnii发酵中可以是一种简便,廉价的方法,可以提高生物量和DHA的产量,避免使用高速速率(产生重要的能量)。搅动成本)会影响微藻的增殖并增加生物工艺成本。目前正在研究一种新的策略,以改善这种微藻在两相大型生物反应器中的DHA产量。

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