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新型葡萄酒介导的 FLO11 絮凝表型的商业酿酒酵母菌株,具有改良的 FLO 基因表达。

Novel wine-mediated FLO11 flocculation phenotype of commercial Saccharomyces cerevisiae wine yeast strains with modified FLO gene expression.

机构信息

Department of Biochemistry, University of KwaZulu-Natal, Durban, South Africa.

出版信息

FEMS Microbiol Lett. 2011 Apr;317(2):117-26. doi: 10.1111/j.1574-6968.2011.02219.x. Epub 2011 Feb 8.

Abstract

Depending on the genetic background of Saccharomyces strains, a wide range of phenotypic adhesion identities can be directly attributed to the FLO11-encoded glycoprotein, which includes asexual flocculation, invasive growth and pseudohyphal formation, flor formation and adhesion to biotic and abiotic surfaces. In a previous study, we reported that HSP30-mediated stationary-phase expression of the native chromosomal FLO11 ORF in two nonflocculent commercial Saccharomyces cerevisiae wine yeast strains, BM45 or VIN13 did not generate a flocculent phenotype under either standard laboratory media or synthetic MS300 must fermentation conditions. In the present study, the BM45- and VIN13-derived HSP30p-FLO11 wine yeast transformants were observed to be exclusively and strongly flocculent under authentic red wine-making conditions, thus suggesting that this specific fermentation environment specifically contributes to the development of a flocculent phenotype, which is insensitive to either glucose or mannose. Furthermore, irrespective of the strain involved this phenotype displayed both Ca(2+)-dependent and Ca(2+)-independent flocculation characteristics. A distinct advantage of this unique FLO11-based phenotype was highlighted in its ability to dramatically promote faster lees settling rates. Moreover, wines produced by BM45-F11H and VIN13-F11H transformants were significantly less turbid than those produced by their wild-type parental strains.

摘要

根据酿酒酵母菌株的遗传背景,广泛的表型黏附特性可直接归因于 FLO11 编码的糖蛋白,其包括无性絮凝、侵袭性生长和假菌丝形成、形成花状和对生物及非生物表面的黏附。在之前的研究中,我们报道了 HSP30 介导的非絮凝商业酿酒酵母菌株 BM45 或 VIN13 中天然染色体 FLO11 ORF 的静止期表达,在标准实验室培养基或合成 MS300 型发酵条件下,均不会产生絮凝表型。在本研究中,观察到 BM45 和 VIN13 衍生的 HSP30p-FLO11 型葡萄酒酵母转化体在真实的红葡萄酒酿造条件下均表现出专性且强烈的絮凝特性,这表明该特定发酵环境有助于絮凝表型的发展,其对葡萄糖或甘露糖均不敏感。此外,无论菌株如何,该表型均表现出 Ca(2+)依赖性和 Ca(2+)非依赖性絮凝特性。基于这种独特的 FLO11 表型的一个显著优势是其能够显著促进更快的酒糟沉降速度。此外,BM45-F11H 和 VIN13-F11H 转化株生产的葡萄酒明显比其野生型亲本菌株生产的葡萄酒混浊度低。

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