Nosek Jozef, Holesova Zuzana, Kosa Peter, Gacser Attila, Tomaska Lubomir
Department of Biochemistry, Faculty of Natural Sciences, Comenius University, Mlynska dolina CH-1, 842 15, Bratislava, Slovak Republic.
Curr Genet. 2009 Oct;55(5):497-509. doi: 10.1007/s00294-009-0268-4. Epub 2009 Aug 7.
The yeast Candida parapsilosis is an opportunistic human pathogen frequently associated with nosocomial infections in neonates and patients with diminished immunity. A growing number of studies powered by recent advances in molecular genetics and genomics provide a background for uncovering the molecular basis of its virulence that suggests promising avenues for therapeutic intervention against this pathogen. Importantly, these studies also revealed several unique genetic and physiological features absent in model organisms, such as baker's and fission yeasts. Hence, besides the clinical impact, C. parapsilosis represents an interesting non-conventional model suitable for investigations of several fundamental biological phenomena in cellular physiology, morphogenesis, and genome maintenance. In this study, we provide a concise review on C. parapsilosis biology and highlight its interesting biological features. In addition, we summarize approaches for genetic manipulation, which have enhanced research on this species by overcoming limitations of conventional genetic analysis caused primarily by an apparent absence of a sexual cycle and the diploid state of its genome.
近平滑念珠菌是一种机会性人类病原体,常与新生儿和免疫力低下患者的医院感染相关。随着分子遗传学和基因组学的最新进展,越来越多的研究为揭示其毒力的分子基础提供了背景,这为针对该病原体的治疗干预指明了有前景的途径。重要的是,这些研究还揭示了模式生物(如酿酒酵母和裂殖酵母)所没有的几个独特的遗传和生理特征。因此,除了临床影响外,近平滑念珠菌还是一个有趣的非传统模型,适用于研究细胞生理学、形态发生和基因组维持中的几种基本生物学现象。在本研究中,我们对近平滑念珠菌生物学进行了简要综述,并突出了其有趣的生物学特征。此外,我们总结了基因操作方法,这些方法克服了主要由明显缺乏有性周期及其基因组的二倍体状态导致的传统遗传分析的局限性,从而加强了对该物种的研究。