首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >EXCHANGES ARE NOT EQUALLY ABLE TO ENHANCE MEIOTIC CHROMOSOME SEGREGATION IN YEAST
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EXCHANGES ARE NOT EQUALLY ABLE TO ENHANCE MEIOTIC CHROMOSOME SEGREGATION IN YEAST

机译:交换不能平等地促进酵母中染色体的分离

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Homologous chromosomes pair, and then migrate to opposite poles of the spindle at meiosis I. In most eukaryotic organisms, reciprocal recombinations (crossovers) between the homologs are critical to the success of this process. Individuals with defects in meiotic recombination typically produce high levels of aneuploid gametes and exhibit low fertility or are sterile. The experiments described here were designed to test whether different crossovers are equally able to contribute to the fidelity of meiotic chromosome segregation in yeast. These experiments were performed with model chromosomes with which it was possible to control and measure the distributions of meiotic crossovers in wild-type cells. Physical and genetic approaches were used to map crossover positions on model chromosomes and to correlate crossover position with meiotic segregation behavior. The results show that crossovers at different chromosomal positions have different abilities to enhance the fidelity of meiotic segregation. [References: 28]
机译:同源染色体配对,然后在减数分裂I处迁移到纺锤体的相反两极。在大多数真核生物中,同源物之间的相互重组(交叉)对这一过程的成功至关重要。减数分裂重组缺陷的个体通常会产生高水平的非整倍体配子,并显示出低生育力或不育。此处描述的实验旨在测试不同的交叉交换是否同样能够有助于酵母中减数分裂染色体分离的保真度。这些实验是用模型染色体进行的,利用该模型染色体可以控制和测量野生型细胞中减数分裂交换的分布。物理和遗传方法被用来映射模型染色体上的交叉位置,并使交叉位置与减数分裂的分离行为相关。结果表明,在不同染色体位置的交叉具有增强减数分裂分离保真度的不同能力。 [参考:28]

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