新囊藻粘膜,一种极性藻类,产生含有多不饱和必需脂肪酸的油

IF 4.5 2区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Algal Research-Biomass Biofuels and Bioproducts Pub Date : 2025-03-01 Epub Date: 2025-01-29 DOI:10.1016/j.algal.2025.103939
T. Řezanka , J. Elster , D. Kubáč , J. Kvíderová , L. Procházková , M. Vítová , J. Lukavský
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引用次数: 0

摘要

可持续培养微藻以获取生物活性化合物,如多不饱和脂肪酸(PUFAs),对于应对全球健康和营养挑战至关重要。然而,适合在温带气候下全年种植的藻类品种是有限的。本研究研究了从斯瓦尔巴群岛土壤中分离出来的耐寒绿藻Neocystis粘膜(菌株Šnokhousová and Elster, CCALA No. 1141),作为中欧气候下户外培养的有希望的候选菌。分子分析证实该菌株为粘膜奈瑟菌。在12°C低光强(10 μmol·m−2·s−1)条件下生长最佳。然而,它能承受短期光照和温度波动(5°C至25°C)。这种弹性确保了细胞不会因温度和光照变化(如在阳光明媚的冬季发生的变化)而死亡。与光照相比,夜间LED照明增加了160%的生长,产生的生物量产量为1.73 g·m−2·d−1和0.135 g·L−1·d−1,最大干物质为6.3 g·L−1。该菌株产脂率高,不饱和脂肪酸占总脂肪酸含量的51 ~ 63%。显著成分有亚油酸(14.9 ~ 17.1%)、α-亚麻酸(18.3 ~ 23.1%)和十六烯酸(10.2 ~ 16.7%)。脂质和PUFA百分比随培养年龄增加而增加。该研究强调了极地N.粘膜在温带气候下全年种植的实际潜力,为食物补充和免疫调节提供了可持续的pufa来源,包括降低与COVID-19相关的风险。这些发现推进了可持续多聚脂肪酸生产的生物技术方法,解决了全球饮食需求。
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Neocystis mucosa, a polar alga producing oils containing polyunsaturated essential fatty acids
The sustainable cultivation of microalgae for bioactive compounds, such as polyunsaturated fatty acids (PUFAs), is vital for addressing global health and nutritional challenges. However, the availability of algal strains suitable for year-round cultivation in temperate climates is limited. This study investigates the psychrotolerant green alga Neocystis mucosa (strain Šnokhousová and Elster, CCALA No. 1141), isolated from Svalbard soil, as a promising candidate for outdoor cultivation in Mid-European climates.
Molecular analysis confirmed the identification of the strain as N. mucosa. It demonstrated optimal growth at 12 °C under low light intensity (10 μmol·m−2·s−1). However, it tolerates short-term light and temperature fluctuations (5 °C to 25 °C). This resilience ensures that there is no significant risk of cell death due to temperature and light variations, such as those that occur during sunny winter days. Nighttime LED lighting increased growth by 160 % compared to sunlight alone, yielding biomass production rates of 1.73 g·m−2·d−1 and 0.135 g·L−1·d−1, with a maximum dry matter of 6.3 g·L−1. The strain displayed high lipid productivity, with unsaturated fatty acids comprising 51–63 % of total fatty acid content. Notable components included linoleic acid (14.9–17.1 %), α-linolenic acid (18.3–23.1 %), and hexadecatetraenoic acid (10.2–16.7 %). Lipid and PUFA percentages increased with culture age.
This study highlights the practical potential of polar N. mucosa for year-round cultivation in temperate climates, offering a sustainable source of PUFAs for food supplementation and immunomodulation, including reducing risks associated with COVID-19. These findings advance biotechnological approaches to sustainable PUFA production, addressing global dietary needs.
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来源期刊
Algal Research-Biomass Biofuels and Bioproducts
Algal Research-Biomass Biofuels and Bioproducts BIOTECHNOLOGY & APPLIED MICROBIOLOGY-
CiteScore
9.40
自引率
7.80%
发文量
332
期刊介绍: Algal Research is an international phycology journal covering all areas of emerging technologies in algae biology, biomass production, cultivation, harvesting, extraction, bioproducts, biorefinery, engineering, and econometrics. Algae is defined to include cyanobacteria, microalgae, and protists and symbionts of interest in biotechnology. The journal publishes original research and reviews for the following scope: algal biology, including but not exclusive to: phylogeny, biodiversity, molecular traits, metabolic regulation, and genetic engineering, algal cultivation, e.g. phototrophic systems, heterotrophic systems, and mixotrophic systems, algal harvesting and extraction systems, biotechnology to convert algal biomass and components into biofuels and bioproducts, e.g., nutraceuticals, pharmaceuticals, animal feed, plastics, etc. algal products and their economic assessment
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