Department of Microbiology and Biochemistry, Hochschule Geisenheim University, Von-Lade-Strasse 1, 65366 Geisenheim, Germany.
ARC Centre of Excellence in Synthetic Biology, Macquarie University, Sydney, NSW 2109, Australia.
FEMS Yeast Res. 2023 Jan 4;23. doi: 10.1093/femsyr/foad034.
Lack of gene-function analyses tools limits studying the biology of Hanseniaspora uvarum, one of the most abundant yeasts on grapes and in must. We investigated a rapid PCR-based gene targeting approach for one-step gene replacement in this diploid yeast. To this end, we generated and validated two synthetic antibiotic resistance genes, pFA-hygXL and pFA-clnXL, providing resistance against hygromycin and nourseothricin, respectively, for use with H. uvarum. Addition of short flanking-homology regions of 56-80 bp to these selection markers via PCR was sufficient to promote gene targeting. We report here the deletion of the H. uvarum LEU2 and LYS2 genes with these marker genes via two rounds of consecutive transformations, each resulting in the generation of auxotrophic strains (leu2/leu2; lys2/lys2). The hereby constructed leucine auxotrophic leu2/leu2 strain was subsequently complemented in a targeted manner, thereby further validating this approach. PCR-based gene targeting in H. uvarum was less efficient than in Saccharomyces cerevisiae. However, this approach, combined with the availability of two marker genes, provides essential tools for directed gene manipulations in H. uvarum.
缺乏基因功能分析工具限制了对 Hanseniaspora uvarum 的生物学研究,该酵母是葡萄和葡萄汁中最丰富的酵母之一。我们研究了一种用于该二倍体酵母一步基因替换的基于 PCR 的快速基因靶向方法。为此,我们生成并验证了两个合成抗生素抗性基因 pFA-hygXL 和 pFA-clnXL,分别提供对潮霉素和诺赛霉素的抗性,用于 Hanseniaspora uvarum。通过 PCR 将 56-80 bp 的短侧翼同源区域添加到这些选择标记物中足以促进基因靶向。我们在这里报告了使用这些标记基因通过两轮连续转化来缺失 Hanseniaspora uvarum 的 LEU2 和 LYS2 基因,每次转化都会产生营养缺陷型菌株(leu2/leu2;lys2/lys2)。构建的亮氨酸营养缺陷型 leu2/leu2 菌株随后以靶向方式进行了互补,从而进一步验证了该方法。Hanseniaspora uvarum 中的基于 PCR 的基因靶向效率低于酿酒酵母。然而,这种方法与两种标记基因的可用性相结合,为 Hanseniaspora uvarum 的定向基因操作提供了必要的工具。