EA2106, Biomolécules et Biotechnologies Végétales, Faculté de Pharmacie, Université François-Rabelais de Tours, Tours, France.
Curr Genet. 2013 Aug;59(3):73-90. doi: 10.1007/s00294-013-0391-0. Epub 2013 Apr 25.
Candida guilliermondii (teleomorph Meyerozyma guilliermondii) is an ascomycetous species belonging to the Saccharomycotina CTG clade which has been studied over the last 40 years due to its biotechnological interest, biological control potential and clinical importance. Such a wide range of applications in various areas of fundamental and applied scientific research has progressively made C. guilliermondii an attractive model for exploring the potential of yeast metabolic engineering as well as for elucidating new molecular events supporting pathogenicity and antifungal resistance. All these research fields now take advantage of the establishment of a useful molecular toolbox specifically dedicated to C. guilliermondii genetics including the construction of recipient strains, the development of selectable markers and reporter genes and optimization of transformation protocols. This area of study is further supported by the availability of the complete genome sequence of the reference strain ATCC 6260 and the creation of numerous databases dedicated to gene ontology annotation (metabolic pathways, virulence, and morphogenesis). These genetic tools and genomic resources represent essential prerequisites for further successful development of C. guilliermondii research in medical mycology and in biological control by facilitating the identification of the multiple factors that contribute to its pathogenic potential. These genetic and genomic advances should also expedite future practical uses of C. guilliermondii strains of biotechnological interest by opening a window into a better understanding of the biosynthetic pathways of valuable metabolites.
假丝酵母(Meyerozyma guilliermondii)是子囊菌门酵母科 CTG 分支的一种有性型真菌,由于其具有生物技术应用潜力、生物防治潜力和临床重要性,在过去的 40 年中一直受到研究关注。由于在基础和应用科学研究的各个领域的广泛应用,假丝酵母已成为探索酵母代谢工程潜力以及阐明支持致病性和抗真菌耐药性的新分子事件的有吸引力的模型。所有这些研究领域现在都得益于建立了一个专门针对假丝酵母遗传学的有用分子工具包,包括受体菌株的构建、选择性标记物和报告基因的开发以及转化方案的优化。该研究领域还得到了参考菌株 ATCC 6260 完整基因组序列的可用性以及专门针对基因本体注释(代谢途径、毒力和形态发生)的众多数据库的支持。这些遗传工具和基因组资源是假丝酵母医学真菌学和生物防治研究进一步成功发展的必要前提,有助于鉴定其致病性潜力的多种因素。这些遗传和基因组方面的进展还应该通过深入了解有价值代谢物的生物合成途径,加速未来对具有生物技术应用潜力的假丝酵母菌株的实际应用。