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在带有透明导流管的气升式光生物反应器中培养:流体动力学、光照和二氧化碳对生化特征尤其是ω-6/ω-3脂肪酸比例的影响

cultivation in airlift photobioreactor with transparent draft tube: effect of hydrodynamics, light and carbon dioxide on biochemical profile particularly ω-6/ω-3 fatty acid ratio.

作者信息

Madhubalaji C K, Sarat Chandra T, Chauhan V S, Sarada R, Mudliar Sandeep N

机构信息

1Plant Cell Biotechnology Department, CSIR-Central Food Technological Research Institute, Mysore, Karnataka 570020 India.

2Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002 India.

出版信息

J Food Sci Technol. 2020 Mar;57(3):866-876. doi: 10.1007/s13197-019-04118-5. Epub 2019 Oct 12.

Abstract

is used for food and feed applications due to its nutraceutical, antioxidant and anticancer properties. An airlift photobioreactor comprising transparent draft tube was used for cultivation. The effect of reactor parameters like hydrodynamics (0.3-1.5 vvm), light intensity (85-400 μmol m s), photoperiod (12-24 h) and gas-phase carbon dioxide (CO) concentration (5-15% v/v) were evaluated on microalgae and associated bacterial growth, biochemical profile; with special emphasis on ω-3, ω-6 fatty acids, and vitamin B. The optimal growth of without CO supplementation was observed at 1.2 vvm, which was associated with higher algal productivity, chlorophyll, vitamin B content, and bacterial load along with 72% of nitrate removal. The higher light intensity (400 μmol m s) and photoperiod (24:0) increased biomass productivity and ω-3 fatty acid content (in lipid) up to 2-3 fold. The elevated levels of gas-phase CO concentration (15% v/v) enhanced EPA content up to 7% and biomass productivity up to 171 mg L day. However, the increase in CO concentration lowered vitamin B content (up to 30%) and bacterial load (2-3 log). Also, all the cultivation conditions favoured desirable ω-6/ω-3 ratio(in the range of 1-2).

摘要

由于其营养保健、抗氧化和抗癌特性,它被用于食品和饲料应用。使用了一个包含透明导流管的气升式光生物反应器进行培养。评估了诸如流体动力学(0.3 - 1.5 vvm)、光照强度(85 - 400 μmol m⁻² s⁻¹)、光周期(12 - 24小时)和气相二氧化碳(CO₂)浓度(5 - 15% v/v)等反应器参数对微藻和相关细菌生长、生化特性的影响;特别强调了ω-3、ω-6脂肪酸和维生素B。在不补充CO₂的情况下,观察到在1.2 vvm时生长最佳,这与较高的藻类生产力、叶绿素、维生素B含量、细菌负荷以及72%的硝酸盐去除率相关。较高的光照强度(400 μmol m⁻² s⁻¹)和光周期(24:0)使生物量生产力和ω-3脂肪酸含量(在脂质中)提高了2 - 3倍。气相CO₂浓度升高(15% v/v)使二十碳五烯酸(EPA)含量提高了7%,生物量生产力提高到171 mg L⁻¹ day⁻¹。然而,CO₂浓度的增加降低了维生素B含量(高达30%)和细菌负荷(2 - 3个对数)。而且,所有培养条件都有利于获得理想的ω-6/ω-3比值(在1 - 2范围内)。

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