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首页> 外文期刊>Journal of Microbiological Methods >Development of a transformation system for gene knock-out in the flavinogenic yeast Pichia guilliermondii
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Development of a transformation system for gene knock-out in the flavinogenic yeast Pichia guilliermondii

机译:开发黄素生成酵母毕赤酵母中的基因敲除转化系统

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Pichia guilliermondii is a representative of a yeast species, all of which over-synthesize riboflavin in response to iron deprivation. Molecular genetic studies in this yeast species have been hampered by a lack of strain-specific tools for gene manipulation. Stable P. guilliermondii ura3 mutants were selected on the basis of 5'-fluoroorotic acid resistance. Plasmid carrying Saccharomyces cerevisiae URA3 gene transformed the mutant strains to prototrophy with a low efficiency. Substitution of a single leucine codon CUG by another leucine codon CUC in the URA3 gene increased the efficiency of transformation 100 fold. Deletion cassettes for the RIB1 and RIB7 genes, coding for GTP cyclohydrolase and riboflavin synthase, respectively, were constructed using the modified URA3 gene and subsequently introduced into a P. guilliermondii ura3 strain. Site-specific integrants were identified by selection for the Rib(-) Ura(+) phenotype and confirmed by PCR analysis. Transformation of the P. guilliermondii ura3 strain was performed using electroporation, spheroplasting or lithium acetate treatment. Only the lithium acetate transformation procedure provided selection of uracil prototrophic, riboflavin deficient recombinant strains. Depending on the type of cassette, efficiency of site-specific integration was 0.1% and 3-12% in the case of the RIB1 and RIB7 genes, respectively. We suggest that the presence of the ARS element adjacent to the 3' end of the RIB1 gene significantly reduced the frequency of homologous recombination. Efficient gene deletion in P. guilliermondii can be achieved using the modified URA3 gene of S. cerevisiae flanked by 0.8-0.9 kb sequences homologous to the target gene.
机译:瓜氏毕赤酵母(Pichia guilliermondii)是一种酵母菌种的代表,所有这些菌种均会因缺铁而过度合成核黄素。缺乏用于基因操作的菌株特异性工具阻碍了该酵母物种的分子遗传学研究。基于对5'-氟乳清酸的抗性选择稳定的瓜氏疟原虫ura3突变体。携带啤酒酵母URA3基因的质粒将突变菌株低效率转化为原养型。 URA3基因中的一个亮氨酸密码子CUC替换了一个亮氨酸密码子CUG,将转化效率提高了100倍。使用修饰的URA3基因构建分别编码GTP环水解酶和核黄素合酶的RIB1和RIB7基因的缺失盒,然后将其引入到古氏疟原虫ura3菌株中。通过选择Rib(-)Ura(+)表型来鉴定位点特异性整合子,并通过PCR分析进行确认。使用电穿孔,原生质球成型或醋酸锂处理进行古吉尔蒙德氏酵母ura3菌株的转化。仅乙酸锂转化方法提供了尿嘧啶原养型,核黄素缺陷型重组菌株的选择。根据盒带的类型,RIB1和RIB7基因的位点特异性整合效率分别为0.1%和3-12%。我们建议邻近RIB1基因3'端的ARS元素的存在大大降低了同源重组的频率。使用与目标基因同源的0.8-0.9 kb序列侧翼的酿酒酵母修饰的URA3基因,可以在guilliermondii菌中实现有效的基因删除。

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