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Characterization and comparison of lipid and PUFA production by native thraustochytrid strains using complex carbon sources

机译:利用复合碳源对天然Thaustochytridtrid株脂质和PUFA生产的特征与比较

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摘要

The thraustochytrid are marine heterotrophic protists that are widely distributed in the marine world. They are characterized by producing and accumulating great amount of lipids in their cells, especially long chain polyunsaturated fatty acids (LC-PUFA), highlighting the docosahexaenoic acid (DHA, 22:6, n-3), eicosapentaenoic acid (EPA, 20:5, n-3) and arachidonic acid (ARA, 20:4, n-6), as well as pigments of interest for human health and animal nutrition, such as carotenoids. Therefore, the objective of this study was to isolate and characterize three natives isolated of thraustochytrids and assess the potential of the by-products of the manufacture of beer (RB) and protein extraction of Lupine flour (RL) as complex carbon sources to produce biomass, lipid and polyunsaturated fatty acids. Three native strains of thraustochytrid (AS5-B2, IQ81 y VAL-B1), isolated from Chilean coastal waters were morphologically and genetically identified as thraustochytrid. For the determination of biomass production cultures were quantified by gravimetry and the fatty acids quantification and identification were carried out by gas chromatography (GC-FID). Our results show that the culture with any sources of complex carbon used, increased significantly the production of both biomass and total lipids in the strains IQ81 and VAL-B1, compared to glucose as pure carbon source. On the other hand, strain AS5-B2 showed a decrease in the total production of lipids in RB compared to the pure carbon source. For the production of fatty acids, the strains IQ81 and VAL-B1 showed a significant increase in DHA when growing in RB. In conclusion strains IQ81 and VAL-B1 can be used to biotransform industrial waste, such as RB and RL, into a more valuable product such as DHA, EPA, ARA and lipids.
机译:Thraustochytrid是海洋杂养的原权,广泛分布在海洋世界中。它们的特征在于在其细胞中产生和积累大量的脂质,特别是长链多不饱和脂肪酸(LC-PUFA),突出二十二碳六烯酸(DHA,22:6,N-3),己醛苯甲酸(EPA,20: 5,N-3)和arachidonic酸(ARA,20:4,N-6),以及人类健康和动物营养的感兴趣的颜料,如类胡萝卜素。因此,本研究的目的是分离和表征三苏福特(Thaustochytrids)分离的三种当地物,并评估啤酒(RB)制造和羽扇粉(R1)的蛋白质提取作为复杂碳源的副产品的潜力,以产生生物质,脂质和多不饱和脂肪酸。从智利沿海水域分离的三种Thraustochytrid(AS5-B2,IQ81 Y Val-B1)的三种土着菌株在形态上和基因上被识别为Thraustochytrid。为了测定生物质生产培养物通过重量计量化,并通过气相色谱(GC-FID)进行脂肪酸定量和鉴定。我们的研究结果表明,与葡萄糖作为纯碳源相比,使用所用复杂碳的任何含量的培养物,在菌株IQ81和VAL-B1中产生了显着的产生。另一方面,与纯碳源相比,菌株AS5-B2显示出RB中的脂质总产量的降低。为了生产脂肪酸,菌株IQ81和Val-B1在RB中生长时显示DHA显着增加。总之,菌株IQ81和Val-B1可用于生物转移工业废物,例如RB和RL,进入更有价值的产品,如DHA,EPA,ARA和脂质。

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