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白色念珠菌中同源重组突变体之间的遗传相互作用。

Genetic interactions among homologous recombination mutants in Candida albicans.

作者信息

Bellido Alberto, Andaluz Encarnación, Gómez-Raja Jonathan, Álvarez-Barrientos Alberto, Larriba Germán

机构信息

Departamento de Ciencias Biomédicas, Área de Microbiología, Facultad de Ciencias, Universidad de Extremadura, 06071 Badajoz, Spain.

Servicio de Técnicas Aplicadas a la Biociencia, Universidad de Extremadura, 06071 Badajoz, Spain.

出版信息

Fungal Genet Biol. 2015 Jan;74:10-20. doi: 10.1016/j.fgb.2014.10.016. Epub 2014 Nov 1.

Abstract

rad52-ΔΔ and, to a lesser extent, rad51-ΔΔ deletants of Candidaalbicans displayed slow growth and aberrant filamentous morphology whereas rad59-ΔΔ mutants, both by growth rate and morphology resembled wild type. In this study, we have constructed pair-wise double deletants to analyze genetic interactions among these homologous recombination (HR) proteins that affect growth and morphology traits. When grown in liquid YPD medium, double mutant rad51-ΔΔ rad59-ΔΔ exhibited growth rates, cell and colony morphologies, and plating efficiencies that were not significantly different from those observed for rad51-ΔΔ. The same was true for rad52-ΔΔ rad59-ΔΔ compared to rad52-ΔΔ. Slow growth and decreased plating efficiency were caused, at least in part, by a decreased viability, as deduced from FUN1 staining. Flow cytometry and microscopic studies of filamentous mutant populations revealed major changes in cell ploidy, size and morphology, whereas DAPI staining identified complex nuclear rearrangements in yeast and filamentous cells. These phenotypes were not observed in the rad59-ΔΔ mutant populations. Our results show that abolishing Rad51 functions induces the appearance of a subpopulation of aberrant yeast and filamentous forms with increased cell size and ploidy. The size of this complex subpopulation was exacerbated in rad52-ΔΔ mutants. The combination of filamentous cell morphology and viability phenotypes was reflected on the colony morphology of the respective mutants. We conclude that the rad52 mutation is epistatic to rad51 for all the morphological traits analyzed. We discuss these results in the light of the several functions of these recombination genes.

摘要

白色念珠菌的rad52 - ΔΔ突变体,以及程度稍轻的rad51 - ΔΔ缺失突变体,生长缓慢且丝状形态异常,而rad59 - ΔΔ突变体在生长速率和形态上均与野生型相似。在本研究中,我们构建了成对的双缺失突变体,以分析这些影响生长和形态特征的同源重组(HR)蛋白之间的遗传相互作用。当在液体YPD培养基中生长时,双突变体rad51 - ΔΔ rad59 - ΔΔ的生长速率、细胞和菌落形态以及平板接种效率与rad51 - ΔΔ观察到的结果无显著差异。与rad52 - ΔΔ相比,rad52 - ΔΔ rad59 - ΔΔ也是如此。从FUN1染色推断,生长缓慢和平板接种效率降低至少部分是由活力下降引起的。丝状突变群体的流式细胞术和显微镜研究揭示了细胞倍性、大小和形态的主要变化,而DAPI染色则确定了酵母和丝状细胞中复杂的核重排。这些表型在rad59 - ΔΔ突变群体中未观察到。我们的结果表明,消除Rad51功能会诱导出现异常酵母和丝状形式的亚群,其细胞大小和倍性增加。在rad52 - ΔΔ突变体中,这个复杂亚群的大小会加剧。丝状细胞形态和活力表型的组合反映在各自突变体的菌落形态上。我们得出结论,对于所有分析的形态特征,rad52突变相对于rad51是上位性的。我们根据这些重组基因的多种功能来讨论这些结果。

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