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Comparison of Switching and Biofilm Formation between MTL-Homozygous Strains of Candida albicans and Candida dubliniensis

机译:白色念珠菌和dubliniensis MTL纯合菌株的转换和生物膜形成的比较

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Candida albicans and Candida dubliniensis are highly related species that share the same main developmental programs. In C. albicans, it has been demonstrated that the biofilms formed by strains heterozygous and homozygous at the mating type locus (MTL) differ functionally, but studies rarely identify the MTL configuration. This becomes a particular problem in studies of C. dubliniensis, given that one-third of natural strains are MTL homozygous. For that reason, we have analyzed MTL-homozygous strains of C. dubliniensis for their capacity to switch from white to opaque, the stability of the opaque phenotype, CO2 induction of switching, pheromone induction of adhesion, the effects of minority opaque cells on biofilm thickness and dry weight, and biofilm architecture in comparison with C. albicans. Our results reveal that C. dubliniensis strains switch to opaque at lower average frequencies, exhibit a far lower level of opaque phase stability, are not stimulated to switch by high CO2, exhibit more variability in biofilm architecture, and most notably, form mature biofilms composed predominately of pseudohyphae rather than true hyphae. Therefore, while several traits of MTL-homozygous strains of C. dubliniensis appear to be degenerating or have been lost, others, most notably several related to biofilm formation, have been conserved. Within this context, the possibility is considered that C. dubliniensis is transitioning from a hypha-dominated to a pseudohypha-dominated biofilm and that aspects of C. dubliniensis colonization may provide insights into the selective pressures that are involved.
机译:白色念珠菌和杜比念珠菌是高度相关的物种,它们具有相同的主要发育程序。在白色念珠菌中,已证明在交配型基因座( MTL )上由杂合和纯合菌株形成的生物膜在功能上有所不同,但研究很少能确定 MTL 的构型。鉴于三分之一的自然毒株是 MTL 纯合子,这在杜氏梭菌的研究中成为一个特殊的问题。因此,我们分析了杜宾尼梭菌的 MTL -纯合菌株从白变到不透明的能力,不透明表型的稳定性,CO 2 的诱导。开关,信息素诱导的粘附,少数不透明细胞对生物膜厚度和干重的影响以及与白色念珠菌相比的生物膜结构。我们的结果表明,杜氏梭菌菌株在较低的平均频率下变为不​​透明,显示出较低的不透明相稳定性,不受高CO 2 的刺激,在生物膜结构中显示出更大的可变性,最明显的是,形成成熟的生物膜,主要由假菌丝而不是真菌丝组成。因此,尽管杜宾氏梭菌的 MTL -纯合菌株的几个性状似乎正在退化或已经丧失,但其他,尤其是与生物膜形成有关的其他特征却得以保留。在这种情况下,认为杜比尼梭菌从菌丝为主的生物膜转变为假菌丝为主的生物膜的可能性以及杜比尼梭菌定殖的各个方面可以提供有关所涉及的选择性压力的见解。

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