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Identification of genes and proteins induced during the lag and early exponential phase of lager brewing yeasts

机译:鉴定啤酒酿造酵母的滞后期和早期指数阶段诱导的基因和蛋白质

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Aims: The aim of the present study is to identify genes and proteins whose expression is induced in lager brewing yeast during the lag phase and early exponential growth.Methods and Results: Two-dimensional gel electrophoresis was used to identify proteins induced during the lag and early exponential phase of lager brewing yeast in minimal medium. The identified, early-induced proteins were Ade17p, Eno2p, Ilv5gp, Sam1p, Rps21p and Ssa2p. For most of these proteins, the patterns of induction differed from those of the corresponding genes. However, the genes had similar early expression patterns in minimal medium as observed during lager brewing conditions. The expression of previously identified early-induced genes in Saccharomyces cerevisiae grown in minimal medium, ADO1, ALD6, ASC1, ERG4, GPP1, RPL25, SSB1 and YKL056C, was also early induced in lager yeast under brewing conditions.Conclusions: The results indicate that the above-mentioned genes in general are induced during the lag phase and early exponential growth in Saccharomyces yeasts. The processes in which these genes take part are likely to play an important role during growth initiation.Significance and Impact of the Study: Increased knowledge regarding the early growth phase of lager brewing yeast was obtained. Further, the universality of the identified expression patterns suggests new methodologies for optimization and control of growth initiation during brewing fermentations.
机译:目的:本研究的目的是鉴定在啤酒酿造酵母中处于迟滞期和早期指数生长期间诱导表达的基因和蛋白质。方法与结果:二维凝胶电泳用于鉴定在迟滞期和诱导过程中诱导的蛋白质。在基本培养基中,较大的酿造酵母的早期指数期。鉴定出的,早期诱导的蛋白是Ade17p,Eno2p,Ilv5gp,Sam1p,Rps21p和Ssa2p。对于大多数这些蛋白质,诱导模式与相应基因的诱导模式不同。然而,与在较大的酿造条件下观察到的情况相比,这些基因在最小培养基中具有相似的早期表达模式。结论:结果表明,在发酵条件下,早期发酵的啤酒酵母也可以早期诱导在早期酿酒酵母中的表达.ADO1,ALD6,ASC1,ERG4,GPP1,RPL25,SSB1和YKL056C在基本培养基中生长。上述基因一般是在酵母菌的迟滞期和早期指数生长过程中诱导的。这些基因参与的过程可能在生长启动过程中起重要作用。研究的意义和影响:获得了关于更大啤酒酿造酵母早期生长阶段的知识。此外,所鉴定的表达模式的普遍性提示了在酿造发酵过程中优化和控制生长起始的新方法。

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