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首页> 外文期刊>Nature Communications >Jumonji demethylases moderate precocious flowering at elevated temperature via regulation of FLC in Arabidopsis
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Jumonji demethylases moderate precocious flowering at elevated temperature via regulation of FLC in Arabidopsis

机译:Jumonji脱甲基酶通过调控拟南芥(irabidopsis)中的 FLC 适度地促进早熟开花

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As sessile organisms, plants have evolved multiple mechanisms to respond to environmental changes to improve survival. Arabidopsis plants show accelerated flowering at increased temperatures. Here we show that Jumonji-C domain-containing protein JMJ30 directly binds to the flowering-repressor FLOWERING LOCUS C ( FLC ) locus and removes the repressive histone modification H3 lysine 27 trimethylation (H3K27me3). At elevated temperatures, the JMJ30 RNA and protein are stabilized, and FLC expression is maintained at high levels to prevent extreme precocious flowering. The double mutant of JMJ30 and its homologue JMJ32 , grown at elevated temperatures, exhibits an early-flowering phenotype similar to the flc mutant, which is associated with increased H3K27me3 levels at the FLC locus and decreased FLC expression. Furthermore, ectopic expression of JMJ30 causes an FLC -dependent late-flowering phenotype. Taken together, JMJ30 / JMJ32 -mediated histone demethylation at the FLC locus constitutes a balancing mechanism in flowering control at warm temperatures to prevent premature early flowering.
机译:作为固着生物,植物已经进化出多种机制来应对环境变化以提高生存能力。拟南芥植物在升高的温度下显示出加速的开花。在这里,我们显示含Jumonji-C域的蛋白JMJ30直接结合到开花阻遏物FLOWERING LOCUS C(FLC)基因座,并去除了阻遏的组蛋白修饰H3赖氨酸27三甲基化(H3K27me3)。在升高的温度下,JMJ30 RNA和蛋白质稳定,并且FLC表达保持高水平,以防止极端早熟开花。在升高的温度下生长的JMJ30及其同源物JMJ32的双突变体表现出类似于flc突变体的早期开花表型,这与FLC基因座处的H3K27me3水平升高和FLC表达降低有关。此外,JMJ30的异位表达导致依赖FLC的晚开花表型。综上所述,FLC基因座处的JMJ30 / JMJ32介导的组蛋白去甲基化构成了在温暖温度下控制开花的平衡机制,以防止过早开花。

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