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The Arabidopsis H3K27me3 demethylase JUMONJI 13 is a temperature and photoperiod dependent flowering repressor

机译:拟南芥H3K27me3脱甲基酶JUMONJI 13是温度和光周期依赖的开花阻遏物

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In plants, flowering time is controlled by environmental signals such as day-length and temperature, which regulate the floral pathway integrators, including FLOWERING LOCUS T (FT), by genetic and epigenetic mechanisms. Here, we identify an H3K27me3 demethylase, JUMONJI 13 (JMJ13), which regulates flowering time in Arabidopsis. Structural characterization of the JMJ13 catalytic domain in complex with its substrate peptide reveals that H3K27me3 is specifically recognized through hydrogen bonding and hydrophobic interactions. Under short-day conditions, the jmj13 mutant flowers early and has increased FT expression at high temperatures, but not at low temperatures. In contrast, jmj13 flowers early in long-day conditions regardless of temperature. Long-day condition and higher temperature induce the expression of JMJ13 and increase accumulation of JMJ13. Together, our data suggest that the H3K27me3 demethylase JMJ13 acts as a temperature- and photoperiod-dependent flowering repressor.
机译:在植物中,开花时间受环境信号(如日长和温度)控制,环境信号通过遗传和表观遗传机制调节花卉途径的整合者,包括FLOWERING LOCUS T(FT)。在这里,我们确定了一种H3K27me3脱甲基酶JUMONJI 13(JMJ13),它调节拟南芥中的开花时间。 JMJ13催化结构域与其底物肽复合的结构表征表明,H3K27me3通过氢键和疏水相互作用被特异性识别。在短日条件下,jmj13突变体开花较早,并且在高温下(但不是在低温下)FT表达增加。相反,无论温度如何,jmj13都会在白天长时间开花。长期处于高温和高温下会诱导JMJ13的表达并增加JMJ13的积累。在一起,我们的数据表明H3K27me3脱甲基酶JMJ13充当温度和光周期依赖的开花阻遏物。

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