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Btn2p参与了弗洛酵母对乙醇的耐受性及生物膜形成过程。

Btn2p is involved in ethanol tolerance and biofilm formation in flor yeast.

作者信息

Espinazo-Romeu Marisa, Cantoral Jesús M, Matallana Emilia, Aranda Agustín

机构信息

Department of Biotechnology, IATA (CSIC), Paterna, Valencia, Spain.

出版信息

FEMS Yeast Res. 2008 Nov;8(7):1127-36. doi: 10.1111/j.1567-1364.2008.00397.x. Epub 2008 Jun 12.

Abstract

Flor yeasts are a particular kind of Saccharomyces cerevisiae strains involved in Sherry wine biological ageing. During this process, yeasts form a film on the wine surface and use ethanol as a carbon source, producing acetaldehyde as a by-product. Acetaldehyde induces BTN2 transcription in laboratory strains. Btn2p is involved in the control of the subcellular localization of different proteins. The BTN2 gene shows a complex expression pattern in wine yeast, increasing its expression by acetaldehyde, but repressing it by ethanol. A flor yeast strain transcribes more BTN2 than a first fermentation yeast during growth, but less under different stress conditions. BTN2 deletion decreases flor yeast resistance to high ethanol concentrations. Surprisingly, this effect is suppressed by the addition of high amounts of amino acids to the growth medium, indicating that the role of Btn2p protein in amino acid transport is important for ethanol resistance. Btn2p deletion increases the fermentative capacity of flor yeast and its overexpression prevents its growth on nonfermentable carbon sources. BTN2 deletion also affects the biofilm formation ability of flor yeast, and it increases its sliding motility, resulting in increased mat formation. This correlates with an increased transcription of the FLO11 gene, a gene essential for biofilm formation.

摘要

弗洛酵母是参与雪利酒生物陈酿的一种特殊的酿酒酵母菌株。在此过程中,酵母在葡萄酒表面形成一层菌膜,并以乙醇作为碳源,产生乙醛作为副产物。乙醛在实验室菌株中诱导BTN2转录。Btn2p参与不同蛋白质亚细胞定位的控制。BTN2基因在葡萄酒酵母中呈现出复杂的表达模式,乙醛可增加其表达,但乙醇会抑制其表达。在生长过程中,弗洛酵母菌株比首次发酵酵母转录更多的BTN2,但在不同应激条件下转录较少。BTN2缺失会降低弗洛酵母对高乙醇浓度的抗性。令人惊讶的是,向生长培养基中添加大量氨基酸可抑制这种效应,这表明Btn2p蛋白在氨基酸转运中的作用对乙醇抗性很重要。Btn2p缺失会增加弗洛酵母的发酵能力,其过表达会阻止其在不可发酵碳源上生长。BTN2缺失还会影响弗洛酵母的生物膜形成能力,并增加其滑动运动性,导致菌毯形成增加。这与生物膜形成所必需的FLO11基因转录增加相关。

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