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Development of a Transformation Method for Metschnikowia borealis and other CUG-Serine Yeasts

机译:北方梅毒和其他CUG-丝氨酸酵母转化方法的开发

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摘要

Yeasts belonging to the Metschnikowia genus are particularly interesting for the unusual formation of only two needle-shaped ascospores during their mating cycle. Presently, the meiotic process that can lead to only two spores from a diploid zygote is poorly understood. The expression of fluorescent nuclear proteins should allow the meiotic process to be visualized in vivo; however, no large-spored species of Metschnikowia has ever been transformed. Accordingly, we aimed to develop a transformation method for Metschnikowia borealis, a particularly large-spored species of Metschnikowia, with the goal of enabling the genetic manipulations required to study biological processes in detail. Genetic analyses confirmed that M. borealis, and many other Metschnikowia species, are CUG-Ser yeasts. Codon-optimized selectable markers lacking CUG codons were used to successfully transform M. borealis by electroporation and lithium acetate, and transformants appeared to be the result of random integration. Mating experiments confirmed that transformed-strains were capable of generating large asci and undergoing recombination. Finally, random integration was used to transform an additional 21 yeast strains, and all attempts successfully generated transformants. The results provide a simple method to transform many yeasts from an array of different clades and can be used to study or develop many species for various applications.
机译:属于Metschnikowia属的酵母特别令人感兴趣,因为它们在交配周期中仅形成两个针状子囊孢子。目前,人们对二倍体合子只能产生两个孢子的减数分裂过程了解甚少。荧光核蛋白的表达应使减数分裂过程在体内可见。然而,从未发生过大孢子的Metschnikowia。因此,我们的目的是开发一种针对北方梅花(Metschnikowia)的转化方法,该种是一种大孢子的梅茨草(Metschnikowia)物种,旨在实现详细研究生物学过程所需的基因操作。遗传分析证实,北极分枝杆菌和许多其他Metschnikowia属CUG-Ser酵母。缺少CUG密码子的密码子优化选择标记用于成功地通过电穿孔和乙酸锂转化北极分枝杆菌,转化子似乎是随机整合的结果。交配实验证实,转化的菌株能够产生大的asci并进行重组。最后,使用随机整合来转化另外21个酵母菌株,所有尝试均成功产生了转化子。结果提供了一种从一系列不同进化枝中转化许多酵母的简单方法,可用于研究或开发许多用于各种应用的物种。

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