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Integrative transformation of Candida albicans, using a cloned Candida ADE2 gene.

机译:使用克隆的假丝酵母ADE2基因对白色念珠菌进行整合转化。

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摘要

Candida albicans is a diploid dimorphic yeast with no known sexual cycle. The development of a DNA transformation system would greatly improve the prospects for genetic analyses of this yeast. Plasmids were isolated from a Candida Sau3A partial library which complements the ade2-1 and ade2-5 mutations in Saccharomyces cerevisiae. These plasmids contain a common region, part of which, when subcloned, produces ade2 complementation. Among the small number of auxotrophs previously isolated in C. albicans, red adenine-requiring mutants had been identified by several groups. In two of these strains, the cloned Candida DNA transformed the mutants to ADE+ at frequencies of 0.5 to 5 transformants per micrograms of DNA. In about 50% of the transformants, plasmid DNA sequences became stably integrated into the host genome and, in the several cases analyzed by Southern hybridization, the DNA was integrated at the site of the ADE2 gene in one of the chromosomal homologs.
机译:白色念珠菌是一种二倍体二态酵母,没有已知的性周期。 DNA转化系统的发展将大大改善对该酵母进行遗传分析的前景。从念珠菌Sau3A部分文库中分离质粒,该文库与酿酒酵母中的ade2-1和ade2-5突变互补。这些质粒包含一个公共区域,部分亚克隆后可产生ade2互补序列。在先前在白色念珠菌中分离出的少数营养缺陷型中,几个小组已鉴定出需要红色腺嘌呤的突变体。在其中两个菌株中,克隆的念珠菌DNA以每微克DNA 0.5至5个转化子的频率将突变体转化为ADE +。在约50%的转化子中,质粒DNA序列稳定地整合到宿主基因组中,在通过Southern杂交分析的几种情况下,DNA整合在ADE2基因位点的一种染色体同源物中。

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