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不同光质和温度条件下斜生栅藻的生长及脂肪酸组成。

Growth and fatty acid composition of Acutodesmus obliquus under different light spectra and temperatures.

机构信息

Institute of Sustainable and Environmental Chemistry, Leuphana University of Lüneburg, Lüneburg, Germany.

Strategic Science Consult Ltd., Hamburg, Germany.

出版信息

Lipids. 2021 Sep;56(5):485-498. doi: 10.1002/lipd.12316. Epub 2021 Jun 26.

Abstract

The combined impact of temperature and light spectra on the fatty acid (FA) composition in microalgae has been sparsely investigated. The aim of this study was to investigate the interactions of light and temperature on the FA composition in Acutodesmus obliquus. For this purpose, A. obliquus was cultivated with different temperatures (20, 30, and 35°C), as well as broad light spectra (blue, green, and red light). Growth and FA composition were monitored daily. Microalgal FA were extracted, and a qualitative characterization was done by gas chromatography coupled with electron impact ionization mass spectrometry (GC-EI/MS). Compared to red light, green and blue light caused a higher percentage of the polyunsaturated fatty acids (PUFA) 16:4, 18:3, and 18:4, at all temperatures. The highest total percentage of these PUFA were observed at the lowest cultivation temperature and blue and green light. These data imply that a combination of lower temperatures and blue-green light (450-550 nm) positively influences the activity of specific FA-desaturases in A. obliquus. Additionally, a lower 16:1 trans/cis ratio was observed upon green and blue light treatment and lower cultivation temperatures. Remarkably, green light treatment resulted in a comparably high growth under all tested conditions. Therefore, a higher content of green light, compared to blue light might additionally lead to a higher biomass concentration. Microalgae cultivation with low temperatures and green light might therefore result in a suitable FA composition for the food industry and a comparably high biomass production.

摘要

温度和光质对微藻脂肪酸(FA)组成的综合影响研究甚少。本研究旨在研究光和温度对斜生栅藻 FA 组成的相互作用。为此,用不同的温度(20、30 和 35°C)以及宽光光谱(蓝光、绿光和红光)培养斜生栅藻。每天监测生长和 FA 组成。提取微藻 FA,并通过气相色谱-电子轰击电离质谱联用(GC-EI/MS)进行定性分析。与红光相比,绿光和蓝光在所有温度下都会导致多不饱和脂肪酸(PUFA)16:4、18:3 和 18:4 的比例更高。在最低培养温度和蓝光绿光下观察到这些 PUFA 的总比例最高。这些数据表明,较低的温度和蓝绿光(450-550nm)的组合会积极影响斜生栅藻中特定 FA 去饱和酶的活性。此外,绿光和蓝光处理以及较低的培养温度会导致 16:1 反式/顺式比例降低。值得注意的是,绿光处理在所有测试条件下都能获得相当高的生长。因此,与蓝光相比,绿光含量的增加可能会导致生物量浓度更高。因此,在低温和绿光下培养微藻可能会产生适合食品工业的 FA 组成和相当高的生物量产量。

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