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酵母中质粒分离的系谱分析。

Pedigree analysis of plasmid segregation in yeast.

作者信息

Murray A W, Szostak J W

出版信息

Cell. 1983 Oct;34(3):961-70. doi: 10.1016/0092-8674(83)90553-6.

Abstract

We have used pedigree analysis to investigate the mitotic segregation of circular and linear DNA plasmids in Saccharomyces cerevisae. Circular ARS plasmids, which bear putative chromosomal replication origins, have a high segregation frequency and a strong bias to segregate to the mother cell at mitosis. The segregation bias explains how the fraction of plasmid-bearing cells can be small despite the high average copy number of circular ARS plasmids. Linear ARS plasmids do not show strong segregation bias, nor does the 2 mu ori-containing plasmid YEp 13, when it is present in strains containing intact 2 mu circles. In the absence of endogenous 2 mu circles, YEp 13 behaves like an ARS plasmid, showing a strong maternal segregation bias. The presence of a centromere on circular ARS plasmids eliminates segregation bias. We discuss a model for plasmid segregation, which explains these findings and the possible biological significance of mother-daughter segregation bias.

摘要

我们利用系谱分析研究了酿酒酵母中环状和线性DNA质粒的有丝分裂分离。携带假定染色体复制起点的环状ARS质粒具有较高的分离频率,并且在有丝分裂时强烈倾向于分离到母细胞中。这种分离偏向解释了尽管环状ARS质粒的平均拷贝数较高,但携带质粒的细胞比例为何可能较小。线性ARS质粒没有表现出强烈的分离偏向,当含有完整2μm环的菌株中存在含2μm ori的质粒YEp 13时,它也没有。在没有内源性2μm环的情况下,YEp 13的行为类似于ARS质粒,表现出强烈的母系分离偏向。环状ARS质粒上着丝粒的存在消除了分离偏向。我们讨论了一个质粒分离模型,该模型解释了这些发现以及母-女分离偏向可能的生物学意义。

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