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首页> 外文期刊>Micron: The international research and review journal for microscopy >Ultrastructural architecture of colonies of different morphologies produced by phenotypic switching of a clinical strain of Candida tropicalis and biofilm formation by variant phenotypes
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Ultrastructural architecture of colonies of different morphologies produced by phenotypic switching of a clinical strain of Candida tropicalis and biofilm formation by variant phenotypes

机译:由热带念珠菌临床菌株的表型转换产生的不同形态菌落的超微结构,以及不同表型的生物膜形成

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摘要

Candida tropicalis has been identified as one of the most prevalent pathogenic yeast species of the Candida-non-albicans (CNA) group. Study of switching in C tropicalis has not been the subject of extensive research. Therefore, we investigated switching event and characterized the ultrastructural architecture of different phenotypes and biofilm produced in a C tropicalis clinical strain. Cells switched heritably, reversibly, and at a high frequency between four phenotypes readily distinguishable by the shape of colonies formed on agar at 25℃. SEM analysis was used to verify the architecture of whole Candida colonies at ultrastructural level. The smooth phenotype (parental phenotype) colony showed a hemispherical shape character, while the semi-smooth was characterized by the presence of shallow marginal depressions. The ring and rough phenotypes exhibited more complex architecture and were characterized by the presence of deep central and peripheral depressions areas. The biofilm-forming ability varied among the switch phenotypes. After 12 h incubation, the smooth phenotype formed less biofilm compared to the other phenotypes (P < 0.05). The electron microscopy analysis revealed that filamentation (pseudohyphae) was associated with ring and rough colonies. The ultrastructural analysis allowed the observation of the arrangement of individual cells within the colonies. At the deep central and peripheral depressions areas of the ring and rough colonies extracellular material was seen in different arrangements. The data presented here open new avenues to study a possible role for extracellular material in the formation and maintenance of the architecture of switch phenotypes in C. tropicalis. It is therefore essential that more strains be investigated to determine the biological significance of extracellular material in C. tropicalis phenotypic switching phenomenon.
机译:热带念珠菌已被确认为非念珠菌(CNA)组中最普遍的致病性酵母菌种之一。在热带热带地区转换的研究尚未成为广泛研究的主题。因此,我们调查了转换事件,并表征了热带热带C型临床菌株中产生的不同表型和生物膜的超微结构。在25℃下,琼脂上形成的菌落形状可以轻易地区分出四种表型之间的遗传,可逆和高频率切换。 SEM分析用于在超微结构水平上验证整个念珠菌菌落的结构。平滑表型(父母表型)菌落显示出半球形形状特征,而半平滑表型的特征是存在浅边缘凹陷。环状和粗糙表型表现出更复杂的结构,并以深的中央和周边凹陷区域为特征。生物膜形成能力在开关表型之间变化。孵育12小时后,与其他表型相比,光滑表型形成的生物膜更少(P <0.05)。电镜分析表明,丝状(假菌丝)与环状和粗糙菌落有关。超微结构分析允许观察菌落内单个细胞的排列。在环形和粗糙集落的深部中央和外围凹陷区域,以不同的排列方式看到了细胞外物质。此处提供的数据开辟了新的途径,以研究细胞外物质在热带假丝酵母的开关表型结构的形成和维持中的可能作用。因此,有必要研究更多菌株以确定热带假单胞菌表型转换现象中细胞外物质的生物学意义。

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