首页> 美国卫生研究院文献>DNA Research: An International Journal for Rapid Publication of Reports on Genes and Genomes >Genome sequence of the non-conventional wine yeast Hanseniaspora guilliermondii UTAD222 unveils relevant traits of this species and of the Hanseniaspora genus in the context of wine fermentation
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Genome sequence of the non-conventional wine yeast Hanseniaspora guilliermondii UTAD222 unveils relevant traits of this species and of the Hanseniaspora genus in the context of wine fermentation

机译:非常规葡萄酒酵母汉尼丝孢霉guilliermondii UTAD222的基因组序列揭示了该物种和汉尼丝孢霉属在葡萄酒发酵中的相关性状

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摘要

Hanseanispora species, including H. guilliermondii, are long known to be abundant in wine grape-musts and to play a critical role in vinification by modulating, among other aspects, the wine sensory profile. Despite this, the genetics and physiology of Hanseniaspora species remains poorly understood. The first genomic sequence of a H. guilliermondii strain (UTAD222) and the discussion of its potential significance are presented in this work. Metabolic reconstruction revealed that H. guilliermondii is not equipped with a functional gluconeogenesis or glyoxylate cycle, nor does it harbours key enzymes for glycerol or galactose catabolism or for biosynthesis of biotin and thiamine. Also, no fructose-specific transporter could also be predicted from the analysis of H. guilliermondii genome leaving open the mechanisms underlying the fructophilic character of this yeast. Comparative analysis involving H. guilliermondii, H. uvarum, H. opuntiae and S. cerevisiae revealed 14 H. guilliermondii-specific genes (including five viral proteins and one β-glucosidase). Furthermore, 870 proteins were only found within the Hanseniaspora proteomes including several β-glucosidases and decarboxylases required for catabolism of biogenic amines. The release of H. guilliermondii genomic sequence and the comparative genomics/proteomics analyses performed, is expected to accelerate research focused on Hanseniaspora species and to broaden their application in the wine industry and in other bio-industries in which they could be explored as cell factories.
机译:Hanseanispora物种,包括H. guilliermondii,长期以来在葡萄酒中的葡萄abundant中含量丰富,并且通过调节(尤其是)葡萄酒的感官特征在酿酒中起关键作用。尽管如此,汉斯尼氏菌种的遗传学和生理学仍然知之甚少。这项工作介绍了居拉氏嗜血杆菌菌株的第一个基因组序列(UTAD222)及其潜在意义的讨论。代谢重建显示,居拉氏菌不具备功能性糖异生或乙醛酸循环,也不具有甘油或半乳糖分解代谢或生物素和硫胺素生物合成的关键酶。而且,从果糖嗜糖菌基因组的分析中也不能预测果糖特异性转运蛋白,从而使该酵母的果糖特性的潜在机制打开。涉及guilliermondii菌,u.umvarum,H.opuntiae和S.cerevisiae的比较分析揭示了14 guilliermondii特异基因(包括5种病毒蛋白和1种β-葡萄糖苷酶)。此外,仅在Hanseniaspora蛋白质组中发现870种蛋白质,其中包括生物胺分解代谢所需的几种β-葡萄糖苷酶和脱羧酶。 Guilliermondii基因组序列的发布和进行的比较基因组学/蛋白质组学分析,有望加速针对汉斯尼氏菌属物种的研究,并扩大其在葡萄酒行业和其他可作为细胞工厂探索的生物行业中的应用。

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