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首页> 外文期刊>The Plant Cell >The Central Element Protein ZEP1 of the Synaptonemal Complex Regulates the Number of Crossovers during Meiosis in Rice.
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The Central Element Protein ZEP1 of the Synaptonemal Complex Regulates the Number of Crossovers during Meiosis in Rice.

机译:突触复合物的中央元素蛋白ZEP1调节水稻减数分裂过程中的交叉数。

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摘要

ZEP1, a transverse filament (TF) protein, is the rice (Oryza sativa) homolog of Arabidopsis thaliana ZYP1. In the Tos17-insertional zep1 mutants, homologous chromosomes align along the entire length of the chromosome, but the synaptonemal complex is not assembled in early prophase I. Crossovers are well formed, and 12 bivalents could be detected from diakinesis to metaphase I, which leads to equal chromosomal segregation in anaphase I. Moreover, the number of crossovers has a tendency to be increased compared with that in the wild type. These phenomena are different from the TF mutants identified so far in other organisms. Chiasma terminalization of the bivalent, which occurs frequently in the wild type, seldom occurred in zep1. Transmission electron micrographs and immunodetection using an antibody against ZEP1 showed that ZEP1 is the central element of the synaptonemal complex. Although PAIR2 and MER3 were loaded normally in zep1, their dissociation was delayed severely compared with the wild type. In addition, ZEP1 is reloaded onto chromosomes in early microspores as the chromosome decondense, suggesting that ZEP1 might have other biological functions during this process.
机译:ZEP1是一种横丝(TF)蛋白,是拟南芥ZYP1的水稻同源物。在Tos17插入的zep1突变体中,同源染色体沿染色体的整个长度排列,但突触复合体在早期前期I中并未组装。交叉形成得很好,并且可以检测到从重发运动到中期I的12个二价。与后期I中的染色体分离相同。此外,与野生型相比,交叉数有增加的趋势。这些现象与迄今为止在其他生物中鉴定出的TF突变体不同。在野生型中经常发生的二价基团终止,在zep1中很少发生。透射电子显微照片和使用针对ZEP1的抗体的免疫检测结果表明ZEP1是突触复合物的中心元素。尽管PAIR2和MER3正常装载在zep1中,但与野生型相比,它们的解离被严重延迟。此外,ZEP1随着染色体的解聚而重新加载到早期小孢子的染色体上,这表明ZEP1在此过程中可能还具有其他生物学功能。

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