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脂肪酸补充对鲁氏毛霉细胞生长、脂肪酸及三种去饱和酶基因表达谱的影响

Significance of fatty acid supplementation on profiles of cell growth, fatty acid, and gene expression of three desaturases in Mucor rouxii.

作者信息

Khoomrung Sakda, Laoteng Kobkul, Jitsue Sompit, Cheevadhanarak Supapon

机构信息

Pilot Plant Development and Training Institute, King Mongkut's University of Technology Thonburi, Bangkhuntien, Bangkok, Thailand.

出版信息

Appl Microbiol Biotechnol. 2008 Sep;80(3):499-506. doi: 10.1007/s00253-008-1569-0. Epub 2008 Jul 5.

Abstract

Molecular and biochemical studies investigating the biosynthesis of gamma-linolenic acid (GLA), a nutritionally important polyunsaturated fatty acid, were implemented in Mucor rouxii by supplementation with exogenous fatty acids. Compared to the fatty acid-free cultures, addition of C18:2Delta(9,12) to the cultures showed up to threefold decrease in the GLA content from the beginning of the culture, whereas a significantly increased GLA amount (P <or= 0.05) was found after 9 h of growth in the logarithmic cultures fed with stearic acid or oleic acid. Time-course studies of gene expression showed concomitant changes in the messenger RNA (mRNA) levels of the M. rouxii Delta(6)-, Delta(9)-, and Delta(12)-desaturases upon exposure to fatty acids, and these responses were rapid and transient. However, the expression profiles were different depending on the type of exogenous fatty acids supplementing the cultures. Up-regulation of the three desaturase transcripts was detected after addition of C18:0, whereas supplementation of unsaturated fatty acids led to a decrease in mRNA levels. This study showed that the three desaturase genes involved in fatty acid desaturation in M. rouxii are co-regulated in response to exogenous fatty acids.

摘要

通过添加外源脂肪酸,在鲁氏毛霉中开展了关于γ-亚麻酸(GLA,一种具有重要营养意义的多不饱和脂肪酸)生物合成的分子和生化研究。与无脂肪酸培养物相比,向培养物中添加C18:2Δ(9,12)后,从培养开始GLA含量最多降低了三倍,而在对数生长期用硬脂酸或油酸喂养9小时后,发现GLA量显著增加(P≤0.05)。基因表达的时间进程研究表明,在暴露于脂肪酸后,鲁氏毛霉Δ(6)-、Δ(9)-和Δ(12)-去饱和酶的信使核糖核酸(mRNA)水平伴随发生变化,并且这些反应迅速且短暂。然而,根据补充到培养物中的外源脂肪酸类型,表达谱有所不同。添加C18:0后检测到三种去饱和酶转录本上调,而补充不饱和脂肪酸导致mRNA水平降低。这项研究表明,鲁氏毛霉中参与脂肪酸去饱和的三种去饱和酶基因对外源脂肪酸的反应是共同调节的。

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