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氮、盐度和光照强度对 sp.生物量组成的影响:优化脂类积累(包括 EPA)。

Effect of Nitrogen, Salinity, and Light Intensity on the Biomass Composition of sp.: Optimization of Lipids Accumulation (Including EPA).

机构信息

Laboratory of Biochemical Engineering & Environmental Technology (LBEET), Department of Chemical Engineering, University of Patras, 26504 Patras, Greece.

Department of Animal Production, Fisheries & Aquaculture, University of Patras, Mesolonghi, 30200 Nea Ktiria, Greece.

出版信息

Mar Drugs. 2023 May 28;21(6):331. doi: 10.3390/md21060331.

Abstract

Microalgal biomass is characterized by high protein, carbohydrates, and lipids concentrations. However, their qualitative and quantitative compositions depend not only on the cultivated species but also on the cultivation conditions. Focusing on the microalgae's ability to accumulate significant fatty acids (FAs) amounts, they can be valorized either as dietary supplements or for biofuel production, depending on the accumulated biomolecules. In this study, a local isolate ( sp.) was precultured under autotrophic conditions, while the Box-Behnken experimental design followed using the parameters of nitrogen (0-250 mg/L), salinity (30-70 ppt) and illuminance (40-260 μmol m s) to evaluate the accumulated biomolecules, with an emphasis on the amount of FAs and its profile. Regardless of the cultivation conditions, the FAs of C14:0, C16:0, and C18:0 were found in all samples (up to 8% in total), while the unsaturated C16:1 and C18:1 were also characterized by their high accumulations. Additionally, the polyunsaturated FAs, including the valuable C20:5n3 (EPA), had accumulated when the nitrogen concentration was sufficient, and the salinity levels remained low (30 ppt). Specifically, EPA approached 30% of the total FAs. Therefore, sp. could be considered as an alternative EPA source compared to the already-known species used in food supplementation.

摘要

微藻生物质的特点是蛋白质、碳水化合物和脂质浓度高。然而,它们的定性和定量组成不仅取决于所培养的物种,还取决于培养条件。鉴于微藻积累大量脂肪酸(FAs)的能力,它们可以作为膳食补充剂或用于生物燃料生产,具体取决于积累的生物分子。在这项研究中,使用氮(0-250 mg/L)、盐度(30-70 ppt)和光照(40-260 μmol m s)的参数,通过自养条件下的预培养对本地分离株( sp.)进行了 Box-Behnken 实验设计,以评估积累的生物分子,重点是 FAs 的含量及其分布。无论培养条件如何,所有样品中都发现了 FAs 的 C14:0、C16:0 和 C18:0(最高可达 8%),而不饱和的 C16:1 和 C18:1 也因其高积累而具有特征。此外,当氮浓度充足且盐度水平较低(30 ppt)时,包括有价值的 C20:5n3(EPA)在内的多不饱和 FAs 也会积累。具体来说,EPA 接近总 FAs 的 30%。因此,与已经用于食品补充的已知物种相比, sp. 可以被认为是 EPA 的替代来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2a2/10301981/55858910b87e/marinedrugs-21-00331-g001.jpg

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