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Deus ex Candida genetics: overcoming the hurdles for the development of a molecular toolbox in the CTG clade

机译:DEUS EX CANDIDA GEETICS:克服CTG思工中的分子工具箱开发的障碍

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Dominant selectable markers, reporter genes and regulatable systems remain powerful molecular tools for genetic and cell biology studies in fungi. Among Saccharomycotina, it is currently accepted that most species belonging to the genus Candida have adopted a specific codon usage, whereby the CTG codon encodes serine instead of leucine. This group is now widely referred to as the CTG clade. For a long time, this uncommon genetic code has precluded the use of the available Saccharomyces or bacterial markers and reporter systems for genetic studies in Candida species. Over the last 15 years, increasing effort has been made to adapt drug-resistance markers, fluorescent protein variants, luciferase and recombinase genes to favour their expression in species related to the yeast CTG clade. In addition to the growing set of Candida genome sequences, these codon-optimized molecular tools have progressively opened a window for the investigation of the conservation of gene function within Candida species. These technical advances will also facilitate future genetic studies in non-albicans Candida (NAC) species and will help both in elucidating the molecular events underlying pathogenicity and antifungal resistance and in exploring the potential of yeast metabolic engineering.
机译:显性选择标记,记者基因和不稳定的系统仍然是真菌遗传和细胞生物学研究的强大分子工具。在酵母腺炎中,目前接受了属于坎迪达属的大多数物种采用了特定的密码子使用,由此CTG密码子编码丝氨酸而不是亮氨酸。该组现在被广泛称为CTG思工。长期以来,这种罕见的遗传密码禁因使用可用的酿酒酵母或细菌标记物和报告系统在念珠菌物种中的遗传学研究。在过去的15年中,已经提高努力适应耐药标记物,荧光蛋白变体,荧光素酶和重组酶基因,以赞成其在与酵母CTG曲线相关的物种中的表达。除了越来越多的念珠菌基因组序列之外,这些密码子优化的分子工具已经逐渐打开了一个窗口,用于调查念珠菌物种内基因功能的守恒。这些技术进步还将促进非蛋白酶念珠菌(NAC)物种的未来遗传学研究,并有助于阐明致病性和抗真菌抗性的潜在分子事件以及探索酵母代谢工程的潜力。

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