Briza Peter, Bogengruber Edith, Thür Albert, Rützler Michael, Münsterkötter Martin, Dawes Ian W, Breitenbach Michael
Institut für Genetik und Allgemeine Biologie, Universität Salzburg, Hellbrunnerstrasse 34, A-5020 Salzburg, Austria.
Yeast. 2002 Mar 30;19(5):403-22. doi: 10.1002/yea.843.
A new high throughput mutant screening procedure for the detection of sporulation mutants was developed and used to analyse a set of 624 non-lethal homozygous deletion mutants created in the European joint research program EUROFAN. The screening procedure involved determination of LL- and DL-dityrosine, sporulation-specific compounds, which were shown to be robust markers of the extent and arrest stage of sporulation mutants. Secondary screens consisted of light microscopy to detect mature and immature spores and DAPI staining to monitor the progress of meiotic nuclear divisions. We discovered new phenotypic classes of mutants defective in spore wall synthesis that were not discovered by previous screens for sporulation mutants. The genes corresponding to the sporulation mutants fell in several functional classes, some of which were previously unknown to be involved in spore formation. Peroxisomes seem to play a role in spore wall synthesis. Mitochondria play a role in sporulation that is not simply restricted to supply of ATP from respiratory metabolism. The deletion mutants included in the set were functionally unknown at the start of EUROFAN; however, within the last few years the importance to sporulation of some of them was also reported by other authors. Taken together, about 8% of all single gene deletion mutants of non-essential genes of Saccharomyces cerevisiae seem to display a clear and reproducible sporulation phenotype.
我们开发了一种用于检测芽孢形成突变体的新型高通量突变体筛选程序,并将其用于分析在欧洲联合研究项目EUROFAN中创建的一组624个非致死性纯合缺失突变体。该筛选程序包括测定LL-二酪氨酸和DL-二酪氨酸,这两种芽孢形成特异性化合物被证明是芽孢形成突变体的程度和停滞阶段的可靠标志物。二次筛选包括用光学显微镜检测成熟和未成熟孢子,以及用DAPI染色监测减数分裂核分裂的进程。我们发现了在孢子壁合成方面有缺陷的新的突变体表型类别,这些类别在以前的芽孢形成突变体筛选中并未被发现。与芽孢形成突变体相对应的基因分属于几个功能类别,其中一些类别以前并不知晓与孢子形成有关。过氧化物酶体似乎在孢子壁合成中发挥作用。线粒体在芽孢形成中发挥的作用并不简单地局限于通过呼吸代谢提供ATP。在EUROFAN开始时,该集合中包含的缺失突变体在功能上是未知的;然而,在过去几年里,其他作者也报道了其中一些突变体对芽孢形成的重要性。综上所述,酿酒酵母非必需基因的所有单基因缺失突变体中,约8%似乎表现出清晰且可重复的芽孢形成表型。