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Accurate Chromosome Segregation at First Meiotic Division Requires AGO4 a Protein Involved in RNA-Dependent DNA Methylation in Arabidopsis thaliana

机译:在第一个减数分裂科进行准确的染色体分离需要AGO4一种涉及拟南芥中RNA依赖性DNA甲基化的蛋白质。

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摘要

The RNA-directed DNA methylation (RdDM) pathway is important for the transcriptional repression of transposable elements and for heterochromatin formation. Small RNAs are key players in this process by regulating both DNA and histone methylation. Taking into account that methylation underlies gene silencing and that there are genes with meiosis-specific expression profiles, we have wondered whether genes involved in RdDM could play a role during this specialized cell division. To address this issue, we have characterized meiosis progression in pollen mother cells from Arabidopsis thaliana mutant plants defective for several proteins related to RdDM. The most relevant results were obtained for ago4-1. In this mutant, meiocytes display a slight reduction in chiasma frequency, alterations in chromatin conformation around centromeric regions, lagging chromosomes at anaphase I, and defects in spindle organization. These abnormalities lead to the formation of polyads instead of tetrads at the end of meiosis, and might be responsible for the fertility defects observed in this mutant. Findings reported here highlight an involvement of AGO4 during meiosis by ensuring accurate chromosome segregation at anaphase I.
机译:RNA指导的DNA甲基化(RdDM)途径对于转座因子的转录抑制和异染色质形成很重要。通过调节DNA和组蛋白甲基化,小RNA是这一过程的关键参与者。考虑到甲基化是基因沉默的基础,并且存在具有减数分裂特异性表达谱的基因,我们想知道参与RdDM的基因是否可以在这种专门的细胞分裂过程中发挥作用。为了解决这个问题,我们已经表征了拟南芥突变体植物的花粉母细胞的减数分裂进程,该植物对与RdDM相关的几种蛋白质有缺陷。最相关的结果是在ago4-1上获得的。在此突变体中,减数分裂细胞显示出细小裂变的频率略有降低,着丝粒区域周围染色质构象的改变,后期I染色体的滞后以及纺锤体组织的缺陷。这些异常导致减数分裂结束时形成双元体而不是四分体,并且可能是该突变体中观察到的育性缺陷的原因。此处报道的发现通过确保I期后期的准确染色体分离突出了AGO4在减数分裂过程中的参与。

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