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Meiotic Recombination on Artificial Chromosomes in Yeast

机译:酵母中人工染色体的减数分裂重组。

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摘要

We have examined the meiotic recombination characteristics of artificial chromosomes in Saccharomyces cerevisiae. Our experiments were carried out using minichromosome derivatives of yeast chromosome III and yeast artificial chromosomes composed primarily of bacteriophage λ DNA. Tetrad analysis revealed that the artificial chromosomes exhibit very low levels of meiotic recombination. However, when a 12.5-kbp fragment from yeast chromosome VIII was inserted into the right arm of the artificial chromosome, recombination within that arm mimicked the recombination characteristics of the fragment in its natural context including the ability of crossovers to ensure meiotic disjunction. Both crossing over and gene conversion (within the ARG4 gene contained within the fragment) were measured in the experiments. Similarly, a 55-kbp region from chromosome III carried on a minichromosome showed crossover behavior indistinguishable from that seen when it is carried on chromosome III. We discuss the notion that, in yeast, meiotic recombination behavior is determined locally by small chromosomal regions that function free of the influence of the chromosome as a whole.
机译:我们已经检查了酿酒酵母中人工染色体的减数分裂重组特征。我们的实验是使用酵母染色体III的微型染色体衍生物和主要由噬菌体λDNA组成的酵母人工染色体进行的。 Tetrad分析显示,人工染色体的减数分裂重组水平非常低。但是,当将来自第VIII号酵母染色体的12.5-kbp片段插入到人工染色体的右臂中时,该臂内的重组模仿了该片段在其自然环境中的重组特征,包括能够确保减数分裂分离的交叉能力。在实验中测量了交叉和基因转化(在片段内包含的ARG4基因内)。类似地,微小染色体上的染色体III的55-kbp区域显示出的交叉行为与染色体III上的交叉行为没有区别。我们讨论的概念是,在酵母中,减数分裂重组行为由不受染色体整体影响的小染色体区域局部决定。

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