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首页> 外文期刊>Nature Communications >Repressive chromatin modification underpins the long-term expression trend of a perennial flowering gene in nature
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Repressive chromatin modification underpins the long-term expression trend of a perennial flowering gene in nature

机译:压抑染色质修饰是自然界常年开花基因的长期表达趋势

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Natural environments require organisms to possess robust mechanisms allowing responses to seasonal trends. In Arabidopsis halleri, the flowering regulator AhgFLC shows upregulation and downregulation phases along with long-term past temperature, but the underlying machinery remains elusive. Here, we investigate the seasonal dynamics of histone modifications, H3K27me3 and H3K4me3, at AhgFLC in a natural population. Our advanced modelling and transplant experiments reveal that H3K27me3-mediated chromatin regulation at AhgFLC provides two essential properties. One is the ability to respond to the long-term temperature trends via bidirectional interactions between H3K27me3 and H3K4me3; the other is the ratchet-like character of the AhgFLC system, i.e. reversible in the entire perennial life cycle but irreversible during the upregulation phase. Furthermore, we show that the long-term temperature trends are locally indexed at AhgFLC in the form of histone modifications. Our study provides a more comprehensive understanding of H3K27me3 function at AhgFLC in a complex natural environment.
机译:自然环境需要有机体拥有允许对季节性趋势的反应的强大机制。在Arabidopsis Holleri中,开花调节器AHGFLC显示上调和下调阶段以及长期过去的温度,但底层机械仍然难以捉摸。在这里,我们研究了在天然群体中的AHGFLC的组蛋白修饰,H3K27ME3和H3K4ME3的季节性动态。我们的高级建模和移植实验表明,AHGFLC的H3K27ME3介导的染色质调节提供了两个必要的性能。一个是通过H3K27ME3和H3K4ME3之间的双向相互作用来响应长期温度趋势的能力;另一个是AHGFLC系统的棘轮状特征,即在整个多年生寿命周期中可逆,但在上调阶段不可逆转。此外,我们表明长期温度趋势在AHGFLC以组蛋白修饰的形式局部分析。我们的研究在复杂的自然环境中提供了对AHGFLC的H3K27ME3功能更全面的了解。

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