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日本裂殖酵母异宗配合单倍体和营养缺陷型突变体的分离。

Isolation of heterothallic haploid and auxotrophic mutants of Schizosaccharomyces japonicus.

作者信息

Furuya Kanji, Niki Hironori

机构信息

Microbial Genetics Laboratory, Genetic Strains Research Centre, National Institute of Genetics, Yata Mishima, Shizuoka, Japan.

出版信息

Yeast. 2009 Apr;26(4):221-33. doi: 10.1002/yea.1662.

Abstract

The fission yeast Schizosaccharomyces japonicus var. japonicus belong to the genus Schizosaccharomyces, together with Schizosaccharomyces pombe, which has been well studied as a model organism. In contrast, Sz. japonicus is poorly characterized and genetic tools were yet to be developed. We here report the isolation of the heterothallic haploids NIG2017, NIG2025 and NIG2028, which were derivatives of a Sz. japonicus homothallic strain (NIG2008). Based on the genomic sequence of Sz. japonicus, released by the Broad Institute, we found that Sz. japonicus also possesses orthologues of the mating-type genes of Sz. pombe; two mat-M (-) and two mat-P (+) genes. As expected, heterothallic strains were defective in one of the Sz. japonicus mat genes (mat(sj)). We confirmed that NIG2017 and NIG2025 strains only expressed mRNA from the mat(sj)-P genes, while homothallic strains expressed both mat(sj)-M and mat(sj)-P. Although the NIG2028 strain expressed both gene products, mat(sj)-P was found mutated, which may have conferred the heterothallic phenotype of the mutant. Thus, we concluded that these were stable heterothallic strains. We designated NIG2017 and NIG2025 as h(+) and NIG 2028 as h(-), respectively. We also found additional h(-) strains (NIG5872 and NIG5873) that arose from the cross between NIG2017 and NIG2028 derivatives. In addition to that, we have constructed a ura4(sj)-deleted strain and an ade6(sj)-mutated strain. We used these heterothallic strains and the auxotroph strains to perform spore dissection analysis to determine the genetic distances between several loci, and found that the mating type loci and ade6(sj) locus were linked to centromeres.

摘要

裂殖酵母日本裂殖酵母变种属于裂殖酵母属,与粟酒裂殖酵母同属该属,粟酒裂殖酵母作为模式生物已得到充分研究。相比之下,日本裂殖酵母的特征了解较少,且尚未开发出遗传工具。我们在此报告异宗配合单倍体NIG2017、NIG2025和NIG2028的分离,它们是日本裂殖酵母同宗配合菌株(NIG2008)的衍生物。基于布罗德研究所发布的日本裂殖酵母基因组序列,我们发现日本裂殖酵母也拥有粟酒裂殖酵母交配型基因的直系同源物;两个mat-M(-)和两个mat-P(+)基因。正如预期的那样,异宗配合菌株在日本裂殖酵母的一个mat基因(mat(sj))中存在缺陷。我们证实NIG2017和NIG2025菌株仅表达mat(sj)-P基因的mRNA,而同宗配合菌株同时表达mat(sj)-M和mat(sj)-P。尽管NIG2028菌株表达了两种基因产物,但发现mat(sj)-P发生了突变,这可能赋予了突变体异宗配合表型。因此,我们得出结论,这些是稳定的异宗配合菌株。我们分别将NIG2017和NIG2025命名为h(+),将NIG 2028命名为h(-)。我们还发现了由NIG2017和NIG2028衍生物杂交产生的其他h(-)菌株(NIG5872和NIG5873)。除此之外,我们构建了ura4(sj)缺失菌株和ade6(sj)突变菌株。我们使用这些异宗配合菌株和营养缺陷型菌株进行孢子分离分析,以确定几个位点之间的遗传距离,发现交配型位点和ade6(sj)位点与着丝粒相连。

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