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白色念珠菌原生质体融合杂种中对紫外线诱导的细胞失活和基因分离的敏感性差异

Variations for susceptibilities to ultraviolet induced cellular inactivation and gene segregation among protoplast fusion hybrids of Candida albicans.

作者信息

Sarachek A, Henderson L A

机构信息

Department of Biological Sciences, Wichita State University, Kansas 67208.

出版信息

Cytobios. 1988;55(222-223):171-84.

PMID:3075166
Abstract

Hybrids of the naturally diploid, asexual and opportunistically pathogenic yeast, Candida albicans, can be obtained artificially by protoplast fusion. Evidence is presented that gene conversion and reciprocal recombination contribute to ultraviolet (UV)-induced segregations of heterozygous markers from both diploid and hybrid strains, and that hybrids also segregate through induced chromosome loss. Heterozygous diploid strains independently derived from the same wild-type diploid stock were alike in post-UV survival and segregational responses, and the organization of a four gene linkage group identified in diploids from the segregant products of reciprocal recombinations was transmitted intact to all hybrids from fusions between diploids of isogenic or nonisogenic backgrounds. However, hybrids arising independently from a given fusion cross differed significantly from each other in post-UV survival, absolute ability to segregate some parental markers, frequency of gene segregation, and proclivities for each of the three mechanisms of gene segregation. The bearings of the genetic backgrounds of parental strains and of growth temperatures during hybrid formation on each of these variables are described. The findings emphasize that awareness of the intrinsic heterogeneities of fusion hybrids is essential for reliable application of the protoplast fusion procedure to genetic analysis of C. albicans.

摘要

天然二倍体、无性且具有机会致病性的白色念珠菌酵母的杂种,可通过原生质体融合人工获得。有证据表明,基因转换和相互重组有助于从二倍体和杂种菌株中紫外线(UV)诱导的杂合标记分离,并且杂种也通过诱导染色体丢失进行分离。从同一野生型二倍体菌株独立衍生的杂合二倍体菌株在紫外线照射后的存活率和分离反应方面相似,并且在相互重组的分离产物中在二倍体中鉴定出的一个四基因连锁群的组织完整地传递给了来自同基因或非同基因背景二倍体融合产生的所有杂种。然而,从给定融合杂交中独立产生的杂种在紫外线照射后的存活率、分离某些亲本标记的绝对能力、基因分离频率以及三种基因分离机制中的每一种的倾向方面彼此差异显著。描述了亲本菌株的遗传背景以及杂种形成过程中的生长温度对这些变量的影响。这些发现强调,认识到融合杂种的内在异质性对于将原生质体融合程序可靠地应用于白色念珠菌的遗传分析至关重要。

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