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Overexpression of RAD51 Enables PCR-Based Gene Targeting in Lager Yeast

机译:RAD51的过表达使啤酒中基于PCR的基因靶向

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Lager beer fermentations rely on specific polyploid hybrids between Saccharomyces cerevisiae and Saccharomyces eubayanus falling into the two groups of S. carlsbergensis/Saaz -type and S. pastorianus/Frohberg -type. These strains provide a terroir to lager beer as they have long traditional associations and local selection histories with specific breweries. Lager yeasts share, based on their common origin, several phenotypes. One of them is low transformability, hampering the gene function analyses required for proof-of-concept strain improvements. PCR-based gene targeting is a standard tool for manipulating S. cerevisiae and other ascomycetes. However, low transformability paired with the low efficiency of homologous recombination practically disable targeted gene function analyses in lager yeast strains. For genetic manipulations in lager yeasts, we employed a yeast transformation protocol based on lithium-acetate/PEG incubation combined with electroporation. We first introduced freely replicating CEN/ARS plasmids carrying ScRAD51 driven by a strong heterologous promoter into lager yeast. RAD51 overexpression in the Weihenstephan 34/70 lager yeast was necessary and sufficient in our hands for gene targeting using short-flanking homology regions of 50 bp added to a selection marker by PCR. We successfully targeted two independent loci, ScADE2/YOR128C and ScHSP104/YLL026W , and confirmed correct integration by diagnostic PCR. With these modifications, genetic alterations of lager yeasts can be achieved efficiently and the RAD51 -containing episomal plasmid can be removed after successful strain construction.
机译:大型啤酒发酵依赖于酿酒酵母和欧亚酿酒酵母(Saccharomyces eubayanus)之间的特定多倍体杂种,所述杂种分为S.carlsbergensis / Saaz-型和S. Pastorianus / Frohberg-型。这些菌株为长期啤酒提供了风土人情,因为它们具有悠久的传统关联以及具有特定啤酒厂的本地选择历史。贮藏啤酒根据其共同起源共有几种表型。其中之一是低转化性,妨碍了概念验证菌株改良所需的基因功能分析。基于PCR的基因靶向是操纵酿酒酵母和其他子囊菌的标准工具。然而,低转化性与低效率的同源重组相结合实际上使大型酵母菌株中的靶向基因功能分析失效。对于更大的酵母中的基因操作,我们采用了基于乙酸锂/ PEG孵育与电穿孔相结合的酵母转化方案。我们首先将携带由强异源启动子驱动的ScRAD51的可自由复制的CEN / ARS质粒引入更大的酵母中。使用PCR将50 bp的短侧翼同源区域添加到选择标记中,Weihenstephan 34/70较大型酵母中RAD51的过量表达对于我们的基因靶向是必要和充分的。我们成功地靶向了两个独立的基因座ScADE2 / YOR128C和ScHSP104 / YLL026W,并通过诊断PCR确认了正确的整合。通过这些修饰,可以成功地实现较大酵母的遗传改变,并且可以在成功构建菌株后去除含RAD51的附加型质粒。

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