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首页> 外文期刊>FEMS Yeast Research >Development of a Candida glabrata dominant nutritional transformation marker utilizing the Aspergillus nidulans acetamidase gene (amdS)
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Development of a Candida glabrata dominant nutritional transformation marker utilizing the Aspergillus nidulans acetamidase gene (amdS)

机译:利用构巢曲霉乙酰酰胺酶基因(amdS)开发光滑念珠菌的主要营养转化标记

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The gene encoding Aspergillus nidulans acetamidase (amdS) was placed under control of Candida albicans ACT1 promoter and terminator sequences and then cloned into a plasmid containing C. glabrata ARS10, CEN8 or ARS10+CEN8 sequences. All plasmids transformed C. glabrata wild-type cells to acetamide+, with the ARS-only containing plasmid transforming cells at the highest frequencies (>1.0 x 10(4) transformants mu g(-1)). Plasmids were rapidly lost under non-selective conditions with the frequency dependent on chromosomal element, thus recycling the acetamide-phenotype. The amdS plasmid was used to transform a set of clinical isolates resistant to a variety of antifungal drugs. All strains were successfully transformed to the acetamide+ phenotype at high frequency, confirming that this plasmid construct could be used as a simple dominant marker on virtually any strain. Gap repair experiments demonstrated that just as in Saccharomyces cerevisiae, gap repair functions efficiently in C. glabrata, suggesting that C. glabrata has numerous similarities to S. cerevisiae with regard to ease of molecular manipulation. The amdS system is inexpensive and efficient, and combined with existing C. glabrata plasmid elements, confers a high transformation frequency for C. glabrata with a phenotype that can be easily recycled.
机译:将编码构巢曲霉乙酰酰胺酶(amdS)的基因置于白色念珠菌ACT1启动子和终止子序列的控制下,然后克隆到含有光滑念珠菌ARS10,CEN8或ARS10 + CEN8序列的质粒中。所有质粒均以最高频率(> 1.0 x 10(4)转化子μg(-1))将无毛衣藻野生型细胞转化为乙酰胺+,仅含ARS的质粒转化细胞。质粒在非选择性条件下迅速丢失,其频率取决于染色体元件,因此循环了乙酰胺表型。 amdS质粒用于转化一组对多种抗真菌药物具有抗性的临床分离株。所有菌株均已成功地高频转化为乙酰胺+表型,证实该质粒构建体可以用作几乎任何菌株上的简单显性标记。间隙修复实验表明,就像酿酒酵母中一样,间隙修复在光滑小球藻中有效地起作用,这表明光滑小球藻在分子操作容易性方面与酿酒酵母具有许多相似性。 amdS系统价格便宜且高效,并且与现有的光滑念珠菌质粒元件结合在一起,可为光滑念珠菌提供高转化频率,其表型易于回收。

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