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A Role for CHH Methylation in the Parent-of-Origin Effect on Altered Circadian Rhythms and Biomass Heterosis in Arabidopsis Intraspecific Hybrids

机译:CHH甲基化在原代对拟南芥种内杂种的昼夜节律变化和生物量杂种优势的影响中的作用。

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Hybrid plants and animals often show increased levels of growth and fitness, a phenomenon known as hybrid vigor or heterosis. Circadian rhythms optimize physiology and metabolism in plants and animals. In plant hybrids and polyploids, expression changes of the genes within the circadian regulatory network, such as CIRCADIAN CLOCK ASSOCIATED1 (CCA1), lead to heterosis. However, the relationship between allelic CCA1 expression and heterosis has remained elusive. Here, we show a parent-of-origin effect on altered circadian rhythms and heterosis in Arabidopsis thaliana F1 hybrids. This parent-of-origin effect on biomass heterosis correlates with altered CCA1 expression amplitudes, which are associated with methylation levels of CHH (where H = A, T, or C) sites in the promoter region. The direction of rhythmic expression and hybrid vigor is reversed in reciprocal F1 crosses involving mutants that are defective in the RNA-directed DNA methylation pathway (argonaute4 and nuclear RNA polymerase D1a) but not in the maintenance methylation pathway (methyltransferase1 and decrease in DNA methylation1). This parent-of-origin effect on circadian regulation and heterosis is established during early embryogenesis and maintained throughout growth and development.
机译:杂种植物和动物通常表现出增长的水平和适应性,这种现象称为杂种活力或杂种优势。昼夜节律可优化植物和动物的生理和新陈代谢。在植物杂种和多倍体中,昼夜调节网络中的基因表达变化(例如CIRCADIAN CLOCK ASSOCIATED1(CCA1))会导致杂种优势。但是,等位基因CCA1表达与杂种优势之间的关系仍然难以捉摸。在这里,我们显示了拟南芥F1杂种中昼夜节律变化和杂种优势的原产地效应。这种对生物量杂种优势的原产地效应与CCA1表达幅度的变化有关,CCA1表达幅度的变化与启动子区域CHH(其中H = A,T或C)位点的甲基化水平有关。在反向F1杂交中,节律性表达和杂种活力的方向相反,这些突变涉及在RNA指导的DNA甲基化途径(argonaute4和核RNA聚合酶D1a)中有缺陷但在维持甲基化途径中没有缺陷(甲基转移酶1和DNA甲基化减少1)的突变体。 。这种对昼夜节律调节和杂种优势的母源效应是在早期胚胎发生期间建立的,并在整个生长和发育过程中保持不变。

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