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Media optimization of Parietochloris incisa for arachidonic acid accumulation in an outdoor vertical tubular photobioreactor

机译:用于室外立式管状光生物反应器中花生四烯酸积累的拟除草剂介质优化

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摘要

The green alga Parietochloris incisa contains a significant amount of the nutritionally valuable polyunsaturated fatty acid and arachidonic acid (AA) and is being considered for mass cultivation for commercial AA production. This study was primarily aimed to define a practical medium formulation that can be used in commercial mass cultivation that will contribute to a substantial increase in the AA productivity of P. incisa with concomitant reduction of nutritional cost. The effect of nutrient limitation on growth and AA content of this microalga was explored in a batch culture in outdoor conditions using a vertical tubular photobioreactor. The study was conducted in two parts: the first was primarily focused on the effect of different nitrogen concentration on growth and AA content and the second part compares nitrogen deprivation, combination of nitrogen and phosphorus deprivation, and combined overall nutrient limitations at different levels of deprivation under low and high population densities. Since complete nitrogen deprivation hampers lipid and AA accumulation of P. incisa, thus, a critical value of nitrogen supply that will activate AA accumulation must be elucidated under specific growth conditions. Under the present experimental conditions, 0.5 g−1 sodium nitrate obtained a higher AA productivity and volumetric yield relative to the nitrogen-deprived culture corresponding to 36.32 mg L−1 day−1 and 523.19 mg L−1. The combined nitrogen and phosphorus limitation seemed to enhance AA productivity better than nitrogen deprivation alone. The effect of overall nutrient limitation indicates that acute nutrient deficiency can trigger rapid lipid and AA syntheses. The effect of light as a consequence of culture cell density was also discussed. This study therefore shows that the nutrient cost can be greatly reduced by adjusting the nutrient levels and culture density to induce AA accumulation in P. incisa.
机译:绿藻Parietochloris incisa包含大量营养价值高的多不饱和脂肪酸和花生四烯酸(AA),并被考虑用于商业化AA生产的大规模种植。这项研究的主要目的是确定一种可用于商业化大规模种植的实用培养基配方,该配方将大大提高印度假单胞菌的AA生产率,同时降低营养成本。在室外条件下使用立式管状光生物反应器,在分批培养中探索了养分限制对这种微藻生长和AA含量的影响。该研究分为两个部分:第一部分主要关注不同氮浓度对生长和AA含量的影响,第二部分比较氮剥夺,氮磷磷剥夺的组合以及不同剥夺水平下综合养分限制在人口密度高低下。由于完全的氮剥夺阻碍了P. incisa的脂质和AA积累,因此,必须在特定的生长条件下阐明将激活AA积累的氮供应的临界值。在目前的实验条件下,相对于缺氮培养物(对应于36.32 mg L -1 day <),0.5 g -1 硝酸钠获得了更高的AA生产率和体积产率。 sup> -1 和523.19 mg L -1 。氮和磷的联合限制似乎比单独的氮剥夺更好地提高了AA生产率。总体养分限制的影响表明,急性养分缺乏会触发脂质和AA的快速合成。还讨论了光对培养细胞密度的影响。因此,这项研究表明,通过调节营养水平和培养密度以诱导P. incisa的AA积累,可以大大降低营养成本。

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