Cultivation of a Novel Strain of Chlorella vulgaris S2 under Phototrophic, Mixotrophic, and Heterotrophic Conditions, and Effects on Biomass Growth and Composition

Marina Grubišić, Ines Peremin, Elvis Djedović, B. Šantek, Mirela Ivančić Šantek
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Abstract

Microalgal biomass is an excellent platform for producing food, feed, nutraceuticals, pharmaceuticals, and biofuels. This study aimed to investigate the effect of the trophic mode of cultivation (phototrophic, heterotrophic, and mixotrophic) on the growth and biomass composition of Chlorella vulgaris S2. The contents of lipids and carbohydrates, as well as the fatty acid composition of total lipids, were studied. The effects of the carbon-to-nitrogen ratio (C:N) and the organic carbon concentration of the growth media under mixotrophic and heterotrophic conditions were also investigated. The C:N ratio of 30 mol mol−1 favoured lipid synthesis, and the C:N ratio of 10 mol mol−1 favoured carbohydrate synthesis. Maximal lipid and biomass productivities (2.238 and 0.458 g L−1 d−1, respectively) were obtained under mixotrophic conditions at the C:N ratio of 50 mol mol−1 and glucose concentration of 50 g L−1. Fed-batch cultivation conducted in a stirrer tank bioreactor under heterotrophic growth conditions increased biomass (2.385 g L−1 d−1, respectively) and lipid (0.339 L−1 d−1) productivities ~50 and ~60 times compared to the fed-batch phototrophic cultivation, respectively. The trophic mode, growth phase, and growth medium composition significantly influenced the fatty acid composition. Under mixotrophic and heterotrophic growth conditions, lipid accumulation is associated with an increase in oleic acid (C18:1) content. Mixotrophically grown biomass of Chlorella vulgaris S2 under optimised conditions is a suitable source of lipids for biodiesel production.
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在光养、混养和异养条件下培养一种新的小球藻菌株 S2 及其对生物量生长和组成的影响
微藻生物质是生产食品、饲料、营养保健品、药品和生物燃料的绝佳平台。本研究旨在探讨培养模式(光养型、异养型和混养型)对小球藻 S2 生长和生物量组成的影响。研究了脂质和碳水化合物的含量以及总脂质的脂肪酸组成。此外,还研究了混养和异养条件下生长介质的碳氮比(C:N)和有机碳浓度的影响。30 mol mol-1 的碳氮比有利于脂质的合成,10 mol mol-1 的碳氮比有利于碳水化合物的合成。在 C:N 比为 50 mol-1 和葡萄糖浓度为 50 g L-1 的混养条件下,获得了最大的脂质和生物量生产率(分别为 2.238 和 0.458 g L-1 d-1)。在搅拌槽生物反应器中进行异养生长条件下的分批给料培养,生物量(分别为 2.385 g L-1 d-1)和脂质(0.339 L-1 d-1)生产率分别比分批给料光养培养提高了 ~50 倍和 ~60 倍。营养模式、生长阶段和生长介质组成对脂肪酸组成有显著影响。在混养和异养生长条件下,脂质积累与油酸(C18:1)含量的增加有关。在优化条件下混养生长的小球藻 S2 生物质是生物柴油生产的合适脂质来源。
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