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Enhanced growth and total fatty acid production of microalgae under various lighting conditions induced by flashing light

机译:在闪光灯诱导的各种照明条件下,增强微藻的生长和总脂肪酸生产

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Microalgae are gaining importance as a source of high-value bioproducts. However, data regarding optimization of algal productivity via variation of environmental factors are lacking. Here, we evaluated a novel lighting method for the enhancement of biomass and total fatty acid (TFA) productivities during algal cultivation. We cultivated six different algal strains (Chlorella vulgaris KCTC AG10002, Acutodesmus obliquus KGE18, Uronema sp. KGE03, Micractinium reisseri KGE19, Fragilaria sp., and Spirogyra sp.) under various lighting conditions-continuous light (CL), lightdark cycle (LD), and continuous dark (CD)-with or without additional flashing light. We monitored dry cell weight (DCW) and TFA concentrations during cultivation. For each algal strain, the growth rate showed markedly different responses to the various lighting modes. The growth rates of C. vulgaris KCTC AG10002 (1.34-fold DCW increase, LD with flash), A. obliquus KGE18 (5.16-fold DCW increase, LD with flash), Uronema sp. KGE03 (2.77-fold DCW increase, CL with flash), and M. reisseri KGE19 (1.52-fold DCW increase, CL with flash) markedly increased in response to flashing light. Additionally, in some algal strains cultivated under the LD mode, the flashing light treatment induced increased TFA concentrations (C. vulgaris, 1.19-fold increase; A. obliquus, 2.59-fold increase; and M. reisseri, 3.31-fold increase). Phytohormone analysis of M. reisseri revealed increases in growth rate and TFA concentrations, associated with phytohormone induction via flashing light (e.g. 2.93-fold increase in gibberellic acid); hence, flashing light can promote substantial alterations in algal metabolism.
机译:微藻是作为高价值生物化学源的重要性。然而,缺乏关于通过环境因素的变化的藻类生产率优化的数据。在这里,我们评估了一种新的藻类栽培中增强生物质和总脂肪酸(TFA)生产的新颖照明方法。我们培养了六种不同的藻类菌株(Chlarla Vallara kctc Ag10002,Acutodesmus Obliquus Kge18,Uronema Sp.KGE03,Micractinium Reisseri Kge19,Fragilaria sp。和Spirogyra sp。)在各种照明条件下 - 连续光(Cl),Lightdark循环(LD)。 ,和连续的暗(CD) - 或没有额外的闪光灯。在培养期间,我们监测干细胞重量(DCW)和TFA浓度。对于每个藻类菌株,生长速率显示出对各种照明模式的响应明显不同。 C.Vulgaris KCTC AG10002的生长率(1.34倍的DCW增加,LD为闪光灯),A斜肌KGE18(5.16倍的DCW增加,LD为Flash),Uronema Sp。 KGE03(2.77倍的DCW增加,CL的CL闪存)和M. Reisseri KGE19(1.52倍的DCW增加,CL的CL闪存)显着增加,响应闪光灯。另外,在LD模式下栽培的一些藻类菌株中,闪光辐射诱导增加TFA浓度(C.Vulgaris,增加1.19倍; A.斜肌,增加2.59倍;和M. Reisseri,增加3.31倍)。对M. Reisseri的植物激素分析显示出生长速率和TFA浓度的增加,通过闪光光诱导与植物激素诱导相关的增加(例如,凝胶酸的2.93倍);因此,闪光可以促进藻类代谢的大量改变。

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