Department of Genetics, SK-50, University of Washington, Seattle, Washington 98195.
Genetics. 1980 Mar;94(3):581-95. doi: 10.1093/genetics/94.3.581.
Yeast cells subjected to a reversible thermal arrest of meiosis yielded progressively fewer spores per ascus as the arrest was extended. Dissection of two-spored asci by a newly developed method that prevents selection of false asci revealed that the spores were not a random sample of the haploid meiotic products. Most, if not all, pairs of spores contain nonsister products of the reductional division. Electron microscopic examination of the meiotic cells revealed the cytological basis for this bias. All four spindle pole bodies (SPBs) present at the second meiotic division normally gain a structural modification (the outer plaque) upon which the initiation of the prospore wall occurs. In the formation of a two-spored ascus, only one spindle pole body on each meiosis II spindle was so modified. These observations suggest that the morphogenesis of spores is regulated at meiosis II by limiting the number of SPBs gaining the outer plaque. The enhancement of spore yield upon addition of fresh medium suggests that this morphogenetic regulation responds more directly to nutrient deprivation arising during the thermal arrest, rather than to elevated temperature per se.
酵母细胞经可逆的热休克处理后,随着时间的延长,每个子囊内的孢子数量逐渐减少。通过一种新开发的方法对双孢子子囊进行解剖,该方法可防止假子囊的选择,结果表明孢子不是减数分裂单倍体产物的随机样本。如果不是所有的话,那么大多数孢子对都包含减数分裂的非姐妹产物。减数分裂细胞的电子显微镜检查揭示了这种偏向的细胞学基础。在第二次减数分裂中存在的四个纺锤体极体(SPB)通常会获得结构修饰(外斑),从而启动孢子壁的形成。在形成双孢子子囊时,每个减数分裂 II 纺锤体上只有一个纺锤体极体被如此修饰。这些观察结果表明,在减数分裂 II 期间,通过限制获得外斑的 SPB 的数量来调节孢子的形态发生。添加新鲜培养基后可提高孢子产量,这表明这种形态发生的调节对热休克期间出现的营养物质缺乏的反应更为直接,而不是对温度升高的直接反应。