Kodama Takuya, Hisatomi Taisuke, Uchida Kotaro, Yamaki Toshinori, Tsuboi Michio
Department of Biotechnology, Faculty of Life Sciences and Biotechnology, Fukuyama University, Gakuen-cho, Fukuyama, Hiroshima 729-0292, Japan.
FEMS Yeast Res. 2003 Oct;4(1):51-7. doi: 10.1016/S1567-1356(03)00152-1.
A DNA fragment homologous to the homothallism (HO) gene of Saccharomyces cerevisiae was isolated from Saccharomyces paradoxus and was found to contain an open reading frame that was 90.9% identical to the coding sequence of the S. cerevisiae HO gene. The putative HO gene was shown to induce diploidization in a heterothallic haploid strain from S. cerevisiae. Phylogenetic analysis revealed that the coding and 5'-upstream regulatory regions from five Saccharomyces sensu stricto HO genes have coevolved, and that S. paradoxus is phylogenetically closer to S. cerevisiae than to S. bayanus. Finally, heterothallic haploid strains were isolated from the original homothallic type strain of S. paradoxus by disrupting the S. paradoxus HO gene with the S. cerevisiae URA3 gene.
从奇异酵母中分离出一段与酿酒酵母同宗配合(HO)基因同源的DNA片段,发现其含有一个开放阅读框,该开放阅读框与酿酒酵母HO基因的编码序列有90.9%的同一性。推定的HO基因可在酿酒酵母的异宗配合单倍体菌株中诱导二倍体化。系统发育分析表明,来自五个狭义酿酒酵母HO基因的编码区和5'上游调控区共同进化,并且奇异酵母在系统发育上与酿酒酵母的亲缘关系比与贝酵母更近。最后,通过用酿酒酵母URA3基因破坏奇异酵母HO基因,从奇异酵母的原始同宗配合型菌株中分离出异宗配合单倍体菌株。