四分体
生物
酿酒酵母
减数分裂
孢子
酵母
遗传学
人口
单元格排序
倍性
计算生物学
微生物学
基因
流式细胞术
人口学
社会学
作者
Amy Sirr,Martin S Timour,Gareth A Cromie,Michelle Tang,Aimée M. Dudley
出处
期刊:Yeast
[Wiley]
日期:2022-06-15
卷期号:39 (6-7): 354-362
摘要
Meiotic mapping, a linkage-based method for analyzing the recombinant progeny of a cross, has long been a cornerstone of genetic research. The yeast Saccharomyces cerevisiae is a powerful system because it is possible to isolate and cultivate the four products (spores) of a single meiotic event. However, the throughput of this process has historically been limited by the process of identifying tetrads in a heterogeneous population of vegetative cells, tetrads, and dyads followed by manual separation (dissection) of the spores contained in a tetrad. To date, methods that facilitate high throughput characterization and isolation of meiotic progeny have relied on genetic engineering. Here, we characterize the ability of the fluorescent dye DiBAC4 (5) to stain yeast tetrads and dyads as well as to adhere to spores following bulk tetrad disruption. Applications include quantitative assays of sporulation rates and efficiency by flow cytometry as well as enrichment of intact tetrads, dyads, or disrupted spores by fluorescence-activated cell sorting in strains that have not been genetically modified.
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