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米根霉去饱和酶基因的上调表达与低温下细胞内原有脂肪酸成分有关。

Up-regulated expression of desaturase genes of Mucor rouxii in response to low temperature associates with pre-existing cellular fatty acid constituents.

机构信息

School of Bioresources and Technology, King Mongkut's University of Technology Thonburi, Bangkhuntien, Bangkok 10150, Thailand.

出版信息

Mol Biol Rep. 2011 Jun;38(5):3455-62. doi: 10.1007/s11033-010-0455-x. Epub 2010 Nov 23.

Abstract

Transcriptional response of desaturase genes to low temperature was investigated in the dimorphic fungus Mucor rouxii. The two morphological forms of M. rouxii, yeast-like and mycelial cells containing different fatty acid profiles were shifted from 30 to 10°C. Both cultures exhibited significantly altered fatty acid composition, whose content in polyunsaturated fatty acids increased as consequence of the temperature shift and was accompanied by a reduction of C18:1Δ(9) about 2 h after the temperature shift. These changes were particularly significant in phosphatidylcholine and phosphatidylethanolamine fractions. Moreover, the fatty acid profiles of monoacylglycerol and diacylglycerol were also modulated in response to the lower temperature of incubation. The changes of membrane lipids of M. rouxii were due to the cold-induced expression of Δ(9)-, Δ(12)- and Δ(6)-desaturase genes. Although the mRNA levels of the three desaturases were transiently induced by lowering the temperature, the pre-existing composition of fatty acid profiles of mycelial and yeast-like forms of M. rouxii may have lead to different expression profiles of desaturase genes that modified their membrane physical state under cold shock. While expression of Δ(12)-desaturase gene contributed mainly to cold acclimation of mycelia, Δ(9)-desaturase expression was the main transcript identified in the yeast-like culture after temperature shift.

摘要

我们研究了低温对双相真菌毛霉中去饱和酶基因的转录反应。毛霉的两种形态,酵母样和含有不同脂肪酸谱的菌丝细胞,从 30°C 转移到 10°C。两种培养物的脂肪酸组成都发生了显著改变,多不饱和脂肪酸的含量随着温度的变化而增加,并且在温度变化后大约 2 小时,C18:1Δ(9)减少。这些变化在磷脂酰胆碱和磷脂酰乙醇胺中尤为显著。此外,单酰基甘油和二酰基甘油的脂肪酸谱也对较低的培养温度做出了响应而发生了变化。毛霉的膜脂的变化是由于冷诱导了 Δ(9)-、Δ(12)-和 Δ(6)-去饱和酶基因的表达。虽然降低温度会短暂诱导三种去饱和酶的 mRNA 水平,但菌丝和酵母样形式的毛霉中脂肪酸谱的预先存在的组成可能导致去饱和酶基因的不同表达谱,从而在冷冲击下改变它们的膜物理状态。虽然 Δ(12)-去饱和酶基因的表达主要有助于菌丝的冷适应,但在温度变化后,酵母样培养物中主要识别到 Δ(9)-去饱和酶的表达。

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