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Changes in the DNA methylation pattern of the host male gametophyte ofviroid-infected cucumber plants

机译:寄主配子体DNA甲基化模式的变化。病毒感染的黄瓜植物

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摘要

Eukaryotic organisms exposed to adverse conditions are required to show a certain degree of transcriptional plasticity in order to cope successfully with stress. Epigenetic regulation of the genome is a key regulatory mechanism allowing dynamic changes of the transcriptional status of the plant in response to stress. The Hop stunt viroid (HSVd) induces the demethylation of ribosomal RNA (rRNA) in cucumber (Cucumis sativus) leaves, leading to increasing transcription rates of rRNA. In addition to the clear alterations observed in vegetative tissues, HSVd infection is also associated with drastic changes in gametophyte development. To examine the basis of viroid-induced alterations in reproductive tissues, we analysed the cellular and molecular consequences of HSVd infection in the male gametophyte of cucumber plants. Our results indicate that in the pollen grain, accumulation of HSVd RNA induces a decondensation of the generative nucleus that correlates with a dynamic demethylation of repetitive regions in the cucumber genome that include rRNA genes and transposable elements (TEs). We therefore propose that HSVd infection impairs the epigenetic control of rRNA genes and TEs in gametic cells of cucumber, a phenomenon thus far unknown to occur in this reproductive tissue as a consequence of pathogen infection.
机译:暴露于不利条件下的真核生物必须表现出一定程度的转录可塑性,才能成功应对压力。基因组的表观遗传调控是一种关键的调控机制,可以使植物的转录状态响应胁迫而动态变化。蛇麻草特技类病毒(HSVd)诱导黄瓜(Cucumis sativus)叶片中核糖体RNA(rRNA)的去甲基化,从而导致rRNA的转录速率增加。除了在营养组织中观察到的明显变化外,HSVd感染还与配子体发育的急剧变化有关。为了检查类病毒引起的生殖组织改变的基础,我们分析了黄瓜植株雄配子体中HSVd感染的细胞和分子后果。我们的结果表明,在花粉粒中,HSVd RNA的积累会诱导生成核的解聚,这与黄瓜基因组中包括rRNA基因和转座因子(TEs)的重复区域的动态脱甲基有关。因此,我们提出HSVd感染损害黄瓜配子细胞中rRNA基因和TEs的表观遗传控制,由于病原体感染,目前尚未在这种生殖组织中发生这种现象。

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