不同营养条件对鳗鲡总脂肪酸、氨基酸、色素和基因表达谱的影响

Wen Hui Zhang, Jin Wei Gao, Cher Chien Lau, Zhi Fei Jiang, Yik Sung Yeong, Wen Jye Mok, Wenli Zhou
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引用次数: 0

摘要

Euglena gracilis是一种独特的微藻,它缺乏细胞壁,能够在不同的营养培养条件下生长。本研究评估了光自养、混养和顺序异养-光诱导(SHP)条件下培养的E. gracilis细胞的生长、生物量生产和超微结构变化。在混合营养条件下,蟛蜞菊细胞的生长和生物量产量最高(6.27 ± 0.59 mg/L/d),而在SHP条件下,脂肪酸含量最高(占细胞干重的2.69 ± 0.04%),氨基酸含量最高(占细胞干重的38.16 ± 0.08%)。在 SHP 条件下,褐藻积累的饱和脂肪酸也明显较高,不饱和脂肪酸较低。转录组分析表明,与其他组相比,SHP培养细胞中光合基因(PsbA、PsbC、F型ATP酶α和β)的表达量较低,碳水化合物和蛋白质合成基因(glnA、alg14和fba)的表达量较高。不同的营养条件也会引起细胞超微结构的变化,在SHP培养的细胞中,副基质和淀粉颗粒更为丰富。本研究的结果表明,有氧SHP培养的褐藻埃希氏菌在人类和动物饲料应用方面具有巨大潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effects of different trophic conditions on total fatty acids, amino acids, pigment and gene expression profiles in Euglena gracilis

Effects of different trophic conditions on total fatty acids, amino acids, pigment and gene expression profiles in Euglena gracilis

Euglena gracilis is a unique microalga that lacks a cell wall and is able to grow under different trophic culture conditions. In this study, cell growth, biomass production, and changes in the ultrastructure of E. gracilis cells cultivated photoautotrophically, mixotrophically, and under sequential-heterotrophy-photoinduction (SHP) were assessed. Mixotrophy induced the highest cell growth and biomass productivity (6.27 ± 0.59 mg/L/d) in E. gracilis, while the highest content of fatty acids, 2.69 ± 0.04% of dry cell weight (DCW) and amino acids, 38.16 ± 0.08% of DCW was obtained under SHP condition. E. gracilis also accumulated significantly higher saturated fatty acids and lower unsaturated fatty acids when cultivated under SHP condition. Transcriptomic analysis showed that the expression of photosynthetic genes (PsbA, PsbC, F-type ATPase alpha and beta) was lower, carbohydrate and protein synthetic genes (glnA, alg14 and fba) were expressed higher in SHP-culture cells when compared to other groups. Different trophic conditions also induced changes in the cell ultrastructure, where paramylon and starch granules were more abundant in SHP-cultured cells. The findings generated in this study illustrated that aerobic SHP cultivation of E. gracilis possesses great potential in human and animal feed applications.

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