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白色念珠菌自发突变体中的多种染色体和表型变化。

Multiple chromosomal and phenotypic changes in spontaneous mutants of Candida albicans.

作者信息

Rustchenko-Bulgac E P, Howard D H

机构信息

Department of Biochemistry, University of Rochester, School of Medicine and Dentistry, New York 14642.

出版信息

J Gen Microbiol. 1993 Jun;139 Pt 6:1195-207. doi: 10.1099/00221287-139-6-1195.

Abstract

Previous studies have revealed the occurrence of multiple chromosomal alterations among spontaneous colony form mutants and clinical isolates of Candida albicans. In this report we show that such karyotype alterations are also seen in spontaneous and induced non-germinative mutants of the fungus. To determine if phenotypic changes other than colony form and microscopic morphology accompanied the rearrangements of the electrophoretic karyotype, we studied the following characteristics of the non-germinative and some of the colony form mutants: formation of pseudohyphae, chlamydospore production, germ tube formation, colony morphology, auxotrophy, growth at various temperatures, and colony morphology and pigment formation on selected media (bismuth sulphite and Phloxine B). We established that phenotypic and karyotypic variability among spontaneous, non-germinative mutants was no different than such variability among spontaneous colony form mutants. Thus, non-germination may represent another phenotypic consequence of genomic instability in C. albicans. The variability in different phenotypic attributes that occurred amongst the mutants was not associated with any given karyotype. Moreover, neither the low nor the high phenotypic variabilities observed were explained by the relatively high number of alterations in a limited number of chromosomes.

摘要

先前的研究已经揭示了白色念珠菌的自发菌落形态突变体和临床分离株中存在多种染色体改变。在本报告中,我们表明在该真菌的自发和诱导非萌发突变体中也可见这种核型改变。为了确定除菌落形态和微观形态外的其他表型变化是否伴随着电泳核型的重排,我们研究了非萌发突变体和一些菌落形态突变体的以下特征:假菌丝形成、厚垣孢子产生、芽管形成、菌落形态、营养缺陷型、在不同温度下的生长以及在选定培养基(亚硫酸铋和玫瑰红B)上的菌落形态和色素形成。我们确定自发非萌发突变体中的表型和核型变异性与自发菌落形态突变体中的这种变异性没有差异。因此,非萌发可能代表白色念珠菌基因组不稳定的另一种表型后果。突变体中不同表型属性的变异性与任何特定核型均无关联。此外,观察到的低表型变异性和高表型变异性均不能用有限数量染色体中相对较多的改变来解释。

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