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拟南芥 PTD 对于 I 型交叉的形成是必需的,并影响两个不同染色体区域的重组频率。

Arabidopsis PTD is required for type I crossover formation and affects recombination frequency in two different chromosomal regions.

机构信息

Institute of Plant Biology, Institute of Genetics, School of Life Sciences, Fudan University, Shanghai 200433, China; Department of Biology and the Huck Institutes of the Life Sciences, Pennsylvania State University, University Park, PA 16802, USA.

Department of Biology and the Huck Institutes of the Life Sciences, Pennsylvania State University, University Park, PA 16802, USA.

出版信息

J Genet Genomics. 2014 Mar 20;41(3):165-75. doi: 10.1016/j.jgg.2014.02.001. Epub 2014 Feb 22.

Abstract

In eukaryotes, crossovers together with sister chromatid cohesion maintain physical association between homologous chromosomes, ensuring accurate chromosome segregation during meiosis I and resulting in exchange of genetic information between homologues. The Arabidopsis PTD (Parting Dancers) gene affects the level of meiotic crossover formation, but its functional relationships with other core meiotic genes, such as AtSPO11-1, AtRAD51, and AtMSH4, are unclear; whether PTD has other functions in meiosis is also unknown. To further analyze PTD function and to test for epistatic relationships, we compared the meiotic chromosome behaviors of Atspo11-1 ptd and Atrad51 ptd double mutants with the relevant single mutants. The results suggest that PTD functions downstream of AtSPO11-1 and AtRAD51 in the meiotic recombination pathway. Furthermore, we found that meiotic defects in rck ptd and Atmsh4 ptd double mutants showed similar meiotic phenotypes to those of the relevant single mutants, providing genetic evidences for roles of PTD and RCK in the type I crossovers pathway. Moreover, we employed a pollen tetrad-based fluorescence method and found that the meiotic crossover frequencies in two genetic intervals were significantly reduced from 6.63% and 22.26% in wild-type to 1.14% and 6.36%, respectively, in the ptd-2 mutant. These results revealed new aspects of PTD function in meiotic crossover formation.

摘要

在真核生物中,交叉与姐妹染色单体黏合共同维持同源染色体之间的物理联系,确保减数分裂 I 期间染色体的准确分离,并导致同源体之间遗传信息的交换。拟南芥 PTD(分离舞者)基因影响减数分裂交叉形成的水平,但它与其他核心减数分裂基因(如 AtSPO11-1、AtRAD51 和 AtMSH4)的功能关系尚不清楚;PTD 在减数分裂中是否具有其他功能也未知。为了进一步分析 PTD 的功能并测试上位性关系,我们比较了 Atspo11-1 ptd 和 Atrad51 ptd 双突变体与相关单突变体的减数分裂染色体行为。结果表明,PTD 在减数分裂重组途径中位于 AtSPO11-1 和 AtRAD51 之后。此外,我们发现 rck ptd 和 Atmsh4 ptd 双突变体的减数分裂缺陷表现出与相关单突变体相似的减数分裂表型,为 PTD 和 RCK 在 I 型交叉途径中的作用提供了遗传证据。此外,我们采用花粉四分体荧光法,发现两个遗传区间的减数交叉频率分别从野生型的 6.63%和 22.26%显著降低到 ptd-2 突变体的 1.14%和 6.36%。这些结果揭示了 PTD 在减数分裂交叉形成中的新功能方面。

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