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Novel genes required for segregation are identified meiotic chromosome by a high-throughput knockout screen in fission yeast

机译:分离所需的新基因通过裂变酵母中的高通量敲除筛选鉴定出减数分裂染色体

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摘要

Two rounds of chromosome segregation after only a single round of DNA replication enable the production of haploid gametes from diploid precursors during meiosis. To identify genes involved in meiotic chromosome segregation, we developed an efficient strategy to knock out genes in the fission yeast on a large scale. We used this technique to delete 180 functionally uncharacterized genes whose expression is upregulated during meiosis. Deletion of two genes, sgo1 and mde2, caused massive chromosome missegregation. sgo1 is required for retention of centromeric sister-chromatid cohesion after anaphase 1 [1-3]. We show here that mde2 is required for formation of the double-strand breaks necessary for meiotic recombination.
机译:仅进行一轮DNA复制后,两轮染色体分离就能在减数分裂过程中从二倍体前体产生单倍体配子。为了鉴定参与减数分裂染色体分离的基因,我们开发了一种有效的策略,可以在大规模裂变酵母中敲除基因。我们使用该技术删除了180个在减数分裂过程中表达上调的功能未知的基因。 sgo1和mde2这两个基因的缺失导致大量染色体错聚。 sgo1是后期1 [1-3]后保留着着丝粒姊妹染色单体凝聚力所必需的。我们在这里表明,mde2是减数分裂重组所必需的双链断裂形成所必需的。

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