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Relationship between epigenetic marks and the behavior of 45S rDNA sites in chromosomes and interphase nuclei of Lolium-Festuca complex

机译:表观遗传标记与45S rDNA位点的关系与染色体中45s rdNA位点的关系

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摘要

The grasses of the Lolium-Festuca complex show a prominent role in world agricultural scenario. Several studies have demonstrated that the plasticity of 45S rDNA sites has been recently associated with the possible fragility of the loci. Often, these fragile sites were observed as extended sites and gaps in metaphases. This organization can be evaluated in relation to their transcriptional activity/accessibility through epigenetic changes. Thus, this study aimed to investigate the relationship of the 5-methylcytosine and histone H3 lysine-9 dimethylation in different conformations of 45S rDNA sites in interphase nuclei and in metaphase chromosomes of L. perenne, L. multiflorum and F. arundinacea. The FISH technique using 45S rDNA probes was performed sequentially after the immunolocalization. The sites showed predominantly the following characteristics in the interphase nuclei: intra- and perinucleolar position, decondensed or partially condensed and hypomethylated and hyper/hypomethylated status. Extranucleolar sites were mainly hypermethylated for both epigenetic marks. The 45S rDNA sites with gaps identified in metaphases were always hypomethylated, which justifies it decondensed and transcriptional state. The frequency of sites with hypermethylated gaps was very low. The structural differences observed in these sites are directly related to the assessed epigenetic marks, justifying the different conformations throughout the cell cycle.
机译:Lolium-Festuca复杂的草在世界农业场景中表现出突出的作用。几项研究表明,45s RDNA位点的可塑性最近与基因座的可能脆弱相关。通常,将这些脆弱的位点观察为延长位点和中源地的间隙。可以通过表观遗传变化与其转录活动/可访问性相关评估该组织。因此,本研究旨在研究5-甲基胞嘧啶和组蛋白H3赖氨酸-9在不同核的不同构象中的关系和L. perenne,L. multiflorum和F.Arundinacea的中期染色体中的不同构象的关系。使用45s rdNA探针的鱼技术在免疫循环化之后顺序进行。该遗址主要显示出间核的以下特征:和临核核苷酸的位置,脱稠或部分缩合和脱甲基化和超/甲基化状态。外核素位点主要用于表观遗传标记的高甲基化。具有中间质中鉴定的间隙的45s rdNA位点总是如脱甲基化,这使其证明了稀释剂和转录状态。具有高甲基化间隙的位点的频率非常低。这些位点观察到的结构差异与评估的表观遗传标记直接相关,证明整个细胞周期的不同构象。

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