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Where to cross? New insights into the location of meiotic crossovers

机译:在哪里过境?有关减数分裂交叉的位置的新见解

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During meiosis, the repair of induced DNA double-strand breaks (DSBs) produces crossovers (COs). COs are essential for the proper segregation of homologous chromosomes at the first meiotic division. In addition, COs generate new combinations of genetic markers in the progeny. CO localization is tightly controlled, giving rise to patterns that are specific to each species. The underlying mechanisms governing CO location, however, are poorly understood. Recent studies highlight the complexity of the multiple interconnected factors involved in shaping the CO landscape and demonstrate that the mechanisms that control CO distribution can vary from species to species. Here, we provide an overview of the recent findings related to CO distribution and discuss their impact on our understanding of the control of meiotic recombination.
机译:在减数分裂过程中,诱导的DNA双链断裂(DSB)的修复会产生交叉(COs)。 CO对于在第一减数分裂分裂中正确分离同源染色体是必不可少的。另外,CO在后代中产生遗传标记的新组合。一氧化碳的本地化受到严格控制,从而产生了针对每个物种的特定模式。然而,对于控制CO位置的基本机制了解甚少。最近的研究强调了塑造CO格局所涉及的多个相互关联的因素的复杂性,并证明了控制CO分布的机制可能因物种而异。在这里,我们提供有关CO分布的最新发现的概述,并讨论它们对我们对减数分裂重组控制的理解的影响。

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