含有花生四烯酸及其相关多不饱和脂肪酸的微生物脂质的生产

E. Sakuradani, A. Ando, S. Shimizu, J. Ogawa
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引用次数: 0

摘要

多不饱和脂肪酸(PUFAs)等功能性脂质在健康和营养方面的应用研究已在各个领域展开。碳含量超过20的PUFAs主要来自鸡蛋中的花生四烯酸和鱼油中的n-3 PUFAs。筛选碳数大于20的PUFAs积累微生物,发现丝状真菌高山Mortierella s -4产生富含花生四烯酸的三酰基甘油,即浓度达到20 g/l,花生四烯酸总脂肪酸含量为30-70%。从M. alpina 1S-4衍生的各种突变体导致生产含有各种PUFAs的油。通过操纵参与PUFA生物合成的基因对M. alpina菌株进行分子育种,有助于提高PUFA产量和阐明其酶的功能。本文综述了花生四烯酸及其相关PUFA的突变育种、参与PUFA生物合成的酶基因的功能分析以及通过分子育种生产独特PUFA的最新进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Production of Microbial Lipids Containing Arachidonic Acid and Its Related Polyunsaturated Fatty Acids
The researches of the application of functional lipids such as polyunsaturated fatty acids (PUFAs) have been conducted in various fields with a view to health and nutrition. The sources of remarkable PUFAs with more than carbon 20 were arachidonic acid from eggs and n-3 PUFAs from fish oils. The filamentous fungus Mortierella alpina 1S-4, which was found on screening of microorganisms accumulating PUFAs with more than carbon 20, produces triacylglycerols rich in arachidonic acid, i.e., ones reaching 20 g/l in concentration and containing 30-70% arachidonic acid as total fatty acids. Various mutants derived from M. alpina 1S-4 have led to the production of oils containing various PUFAs. Molecular breeding of M. alpina strains by means of manipulation of the genes involved in PUFA biosynthesis facilitates improvement of PUFA productivity and elucidation of the functions of their enzymes. This review describes practical production of arachidonic acid and its related PUFAs through mutant breeding, functional analyses of the genes of the enzymes involved in PUFA biosynthesis, and recent advances in unique PUFA production through molecular breeding.
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