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Fatty acid biosynthesis in microorganisms being used for Single Cell Oil production

机译:用于单细胞油生产的微生物中的脂肪酸生物合成

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Single cell oils (SCOs) are now produced by various microorganisms as commercial sources of arachidonic acid (ARA) and docosa-hexaenoic acid (DHA). These oils are now used extensively as dietary supplements in infant formulas. An understanding of the underlying biochemistry and genetics of oil accumulation in such microorganisms is therefore essential if lipid yields are to be improved. Also an understanding of the biosynthetic pathways involved in the production of these polyunsaturated fatty acids (PUFAs) is also highly desirable as a prerequisite to increasing their content in the oils. An account is provided of the biosynthetic machinery that is necessary to achieve oil accumulation in an oleaginous species where it can account for lipid build up in excess of 70% of the cell biomass. Whilst PUFA production in most microorganisms uses a conventional fatty acid synthase (FAS) system followed by a series of desaturases and elongases, in Schizochytrium sp., and probably related thraustochytrid marine protists, PUFA synthesis now appears to be via a polyketide synthase (PKS) route. This route is discussed. It clearly represents a major departure from conventional fatty acid biosynthesis, possibly as a means of decreasing the amount of NADPH that is needed in the overall process.
机译:现在,作为微生物的花生四烯酸(ARA)和二十二碳六烯酸(DHA)的商业来源,单细胞油(SCO)由各种微生物产生。这些油现在被广泛用作婴儿配方食品中的膳食补充剂。因此,如果要提高脂质产量,则必须了解这类微生物中油的基本生化和遗传学。还非常需要了解这些多不饱和脂肪酸(PUFA)的生产中涉及的生物合成途径,以此作为增加其在油中含量的前提。提供了对于在油质物种中实现油积累所必需的生物合成机制的说明,在油质物种中它可以解释脂质积累超过细胞生物量的70%。尽管大多数微生物中的PUFA生产都使用常规的脂肪酸合酶(FAS)系统,然后在Schizochytrium sp。和可能相关的破囊壶菌海洋生物中使用一系列去饱和酶和延伸酶,但PUFA的合成现在似乎是通过聚酮化合物合酶(PKS)进行的。路线。讨论了这条路线。显然,它代表了与常规脂肪酸生物合成的重大偏离,这可能是减少整个过程所需的NADPH量的一种手段。

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