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冷暴露时间通过 H3K27me3 积累定义了一个常年 FLC 同源物的再激活速率。

Duration of cold exposure defines the rate of reactivation of a perennial FLC orthologue via H3K27me3 accumulation.

机构信息

Center for Ecological Research, Kyoto University, 2-509-3 Hirano, Otsu, 520-2113, Japan.

Faculty of Data Science, Shiga University, 1-1-1 Bamba, Hikone, Shiga, 522-8522, Japan.

出版信息

Sci Rep. 2020 Sep 29;10(1):16056. doi: 10.1038/s41598-020-72566-7.

Abstract

Vernalisation is the process in which long-term cold exposure makes plants competent to flower. In vernalisation of Arabidopsis thaliana, a floral repressor, AtFLC, undergoes epigenetic silencing. Although the silencing of AtFLC is maintained under warm conditions after a sufficient duration of cold, FLC orthologues are reactivated under the same conditions in perennial plants, such as A. halleri. In contrast to the abundant knowledge on cold requirements in AtFLC silencing, it has remained unknown how cold duration affects the reactivation of perennial FLC. Here, we analysed the dynamics of A. halleri FLC (AhgFLC) mRNA, H3K4me3, and H3K27me3 over 8 weeks and 14 weeks cold followed by warm conditions. We showed that the minimum levels of AhgFLC mRNA and H3K4me3 were similar between 8 and 14 weeks vernalisation; however, the maximum level of H3K27me3 was higher after 14 weeks than after 8 weeks vernalisation. Combined with mathematical modelling, we showed that H3K27me3 prevents a rapid increase in AhgFLC expression in response to warm temperatures after vernalisation, which controls AhgFT expression and the initiation of flowering. Thus, the duration of cold defines the rate of AhgFLC reactivation via the buffering function of H3K27me3 against temperature increase.

摘要

春化作用是指植物长期暴露在低温下变得有能力开花的过程。在拟南芥的春化作用中,一个花抑制物 AtFLC 经历了表观遗传沉默。尽管在足够长的低温处理后,AtFLC 的沉默在温暖条件下得到维持,但在多年生植物中,如 A. halleri 中,FLC 同源物在相同条件下被重新激活。与对 AtFLC 沉默的冷需求的大量知识相比,冷持续时间如何影响多年生 FLC 的重新激活仍然未知。在这里,我们分析了 A. halleri FLC (AhgFLC) mRNA、H3K4me3 和 H3K27me3 在 8 周和 14 周冷处理后再遇温暖条件下的动态变化。我们表明,8 周和 14 周春化处理之间 AhgFLC mRNA 和 H3K4me3 的最低水平相似;然而,H3K27me3 的最高水平在 14 周春化后比在 8 周春化后更高。结合数学建模,我们表明 H3K27me3 防止了在春化后对温暖温度的快速响应中 AhgFLC 表达的增加,从而控制了 AhgFT 的表达和开花的启动。因此,冷持续时间通过 H3K27me3 对温度升高的缓冲作用来定义 AhgFLC 重新激活的速率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a11/7525499/36d3b510f4b1/41598_2020_72566_Fig1_HTML.jpg

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