首页> 外文期刊>Journal of Agricultural and Food Chemistry >Lipid Fraction and Intracellular Metabolite Analysis Reveal the Mechanism of Arachidonic Acid-Rich Oil Accumulation in the Aging Process of Mortierella alpina
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Lipid Fraction and Intracellular Metabolite Analysis Reveal the Mechanism of Arachidonic Acid-Rich Oil Accumulation in the Aging Process of Mortierella alpina

机译:脂质分数和细胞内代谢产物分析揭示了高山被孢霉衰老过程中花生四烯酸富集油的机理

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摘要

The mechanism of arachidonic acid (ABA) content increase during aging of Mortierella alpina was elucidated. Lipid fraction analysis showed that ARA content increased from 46.9% to 66.4% in the triacylglycerol (TAG) molecule, and ABA residue occupation increased in the majority of TAG molecules during the aging process. For the first time, intracellular metabolite analysis was conducted to reveal the pathways closely associated with ABA biosynthesis during aging. The main reason for the increased ARA content was not only at the expense of other fatty acids degradation but also at the expense of further ARA biosynthesis during aging. Furthermore, translocation played a vital role in ABA redistribution among the glycerol moiety, and mycelium did not die immediately with key pathways activated to maintain a relatively stable intracellular environment. This study lays a foundation for further improvement of ABA content in the oil product obtained from M. alpina.
机译:阐明了高山被孢霉衰老过程中花生四烯酸(ABA)含量增加的机理。脂质分数分析表明,三酰甘油(TAG)分子中ARA含量从46.9%增加到66.4%,并且在老化过程中,大多数TAG分子中的ABA残基占据率增加。首次进行了细胞内代谢物分析,以揭示衰老过程中与ABA生物合成密切相关的途径。 ARA含量增加的主要原因不仅在于其他脂肪酸降解的代价,还在于老化过程中进一步ARA生物合成的代价。此外,易位在甘油部分之间的ABA重新分布中起着至关重要的作用,菌丝体不会立即被激活维持关键稳定细胞内环境的关键途径而死亡。该研究为进一步提高从高山被孢霉得到的油产品中的ABA含量奠定了基础。

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