Marinoni Gaëlle, Piskur Jure, Lachance Marc André
Department of Biology, University of Western Ontario, N6A 5B7, London, ON, Canada.
FEMS Yeast Res. 2003 Mar;3(1):85-90. doi: 10.1016/s1567-1356(02)00138-1.
The asci of Metschnikowia species normally contain two ascospores (never more), raising the question of whether these spores are true meiotic products. We investigated this problem by crossing genetically-marked strains of the haploid, heterothallic taxa Metschnikowia hawaiiensis, Metschnikowia continentalis var. continentalis, and M. continentalis var. borealis. Asci were dissected and the segregation patterns for various phenotypes analyzed. In all cases (n = 47) both mating types (h+ and h-) were recovered in pairs of sister spores, casting further uncertainty as to whether normal meiosis takes place. However, the segregation patterns for cycloheximide resistance and several auxotrophic markers were random, suggesting that normal meiosis indeed occurs. To explain the lack of second-division segregation of mating types, we concluded that crossing-over does not occur between the mating-type locus and the centromere, and that meiosis I is tied to spore formation, which explains why the number of spores is limited to two. The latter assumption was also supported by fluorescence microscopy. The second meiotic division takes place inside the spores and is followed by the resorption of two nuclei, one in each spore.
梅奇尼科夫酵母属物种的子囊通常含有两个子囊孢子(从不超过两个),这就引发了一个问题,即这些孢子是否是真正的减数分裂产物。我们通过对单倍体、异宗配合类群夏威夷梅奇尼科夫酵母、大陆梅奇尼科夫酵母大陆变种和大陆梅奇尼科夫酵母北方变种的基因标记菌株进行杂交来研究这个问题。解剖子囊并分析各种表型的分离模式。在所有情况下(n = 47),两种交配型(h +和h -)都在成对的姊妹孢子中出现,这进一步增加了正常减数分裂是否发生的不确定性。然而,对环己酰亚胺抗性和几个营养缺陷型标记的分离模式是随机的,这表明正常减数分裂确实发生。为了解释交配型缺乏第二次分裂分离的现象,我们得出结论,在交配型基因座和着丝粒之间不发生交叉互换,并且减数分裂I与孢子形成相关联,这就解释了为什么孢子数量限制为两个。后一个假设也得到了荧光显微镜的支持。第二次减数分裂在孢子内部进行,随后两个细胞核被吸收,每个孢子中各有一个。