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Dynamic Landscapes of Four Histone Modifications during Deetiolation in Arabidopsis

机译:拟南芥除化过程中四种组蛋白修饰的动态景观

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Although landscapes of several histone marks are now available for Arabidopsis thaliana and Oryza sativa, such profiles remain static and do not provide information about dynamic changes of plant epigenomes in response to developmental or environmental cues. Here, we analyzed the effects of light on four histone modifications (acetylation and trimethylation of lysines 9 and 27 on histone H3: H3K9ac, H3K9me3, H3K27ac, and H3K27me3, respectively). Our genome-wide profiling of H3K9ac and H3K27ac revealed that these modifications are nontransposable element gene-specific. By contrast, we found that H3K9me3 and H3K27me3 target nontransposable element genes, but also intergenic regions and transposable elements. Specific light conditions affected the number of modified regions as well as the overall correlation strength between the presence of specific modifications and transcription. Furthermore, we observed that acetylation marks not only ELONGATED HYPOCOTYL5 and HY5-HOMOLOG upon deetiolation, but also their downstream targets. We found that the activation of photosynthetic genes correlates with dynamic acetylation changes in response to light, while H3K27ac and H3K27me3 potentially contribute to light regulation of the gibberellin metabolism. Thus, this work provides a dynamic portrait of the variations in histone modifications in response to the plant's changing light environment and strengthens the concept that histone modifications represent an additional layer of control for light-regulated genes involved in photomorphogenesis.
机译:尽管现在可以为拟南芥和水稻提供几个组蛋白标记的景观,但是这些轮廓保持静态,并且不提供有关植物表观基因组响应于发育或环境线索而动态变化的信息。在这里,我们分析了光对四个组蛋白修饰的影响(组蛋白H3上的赖氨酸9和27的乙酰化和三甲基化:分别为H3K9ac,H3K9me3,H3K27ac和H3K27me3)。我们的H3K9ac和H3K27ac基因组范围内的分析表明,这些修饰是不可转座的基因特有的。相比之下,我们发现H3K9me3和H3K27me3靶向非转座因子基因,也靶向基因间区域和转座因子。特定的光照条件会影响修饰区域的数量以及特定修饰与转录之间的总体相关强度。此外,我们观察到,乙酰化不仅标记了去化后的长链HYPOCOTYL5和HY5-HOMOLOG,还标记了它们的下游靶标。我们发现光合作用基因的激活与响应光的动态乙酰化变化相关,而H3K27ac和H3K27me3可能有助于赤霉素代谢的光调节。因此,这项工作提供了动态的画像,以响应植物不断变化的光照环境,对组蛋白修饰的变化进行描述,并强化了这样的概念,即组蛋白修饰代表了参与光形态发生的光调节基因的另一层控制。

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