Lee Joohyun, Yun Jae-Young, Zhao Wei, Shen Wen-Hui, Amasino Richard M
Department of Biochemistry, University of Wisconsin-Madison, Madison, WI 53706; and.
Institut de Biologie Moléculaire des Plantes du CNRS, Université de Strasbourg, Strasbourg 67084, France.
Proc Natl Acad Sci U S A. 2015 Feb 17;112(7):2269-74. doi: 10.1073/pnas.1423585112. Epub 2015 Jan 20.
Prolonged exposure to winter cold enables flowering in many plant species through a process called vernalization. In Arabidopsis, vernalization results from the epigenetic silencing of the floral repressor flowering locus C (FLC) via a Polycomb Repressive Complex 2 (PRC2)-mediated increase in the density of the epigenetic silencing mark H3K27me3 at FLC chromatin. During cold exposure, a gene encoding a unique, cold-specific PRC2 component, vernalization insensitive 3 (VIN3), which is necessary for PRC2-mediated silencing of FLC, is induced. Here we show that set domain group 7 (SDG7) is required for proper timing of VIN3 induction and of the vernalization process. Loss of SDG7 results in a vernalization-hypersensitive phenotype, as well as more rapid cold-mediated up-regulation of VIN3. In the absence of cold, loss of SDG7 results in elevated levels of long noncoding RNAs, which are thought to participate in epigenetic repression of FLC. Furthermore, loss of SDG7 results in increased H3K27me3 deposition on FLC chromatin in the absence of cold exposure and enhanced H3K27me3 spreading during cold treatment. Thus, SDG7 is a negative regulator of vernalization, and loss of SDG7 creates a partially vernalized state without cold exposure.
长期暴露于冬季寒冷环境会通过一种称为春化作用的过程使许多植物物种开花。在拟南芥中,春化作用源于通过多梳抑制复合物2(PRC2)介导的在开花抑制因子开花位点C(FLC)染色质上的表观遗传沉默标记H3K27me3密度增加,从而对FLC进行表观遗传沉默。在寒冷暴露期间,一个编码独特的、冷特异性PRC2组分即春化作用不敏感3(VIN3)的基因被诱导,VIN3是PRC2介导的FLC沉默所必需的。我们在此表明,SET结构域蛋白7(SDG7)对于VIN3诱导和春化作用过程的正确时机是必需的。SDG7缺失导致春化作用超敏表型,以及VIN3更快的冷介导上调。在无寒冷条件下,SDG7缺失导致长链非编码RNA水平升高,这些长链非编码RNA被认为参与FLC的表观遗传抑制。此外,SDG7缺失导致在无寒冷暴露时FLC染色质上H3K27me3沉积增加,以及在冷处理期间H3K27me3扩散增强。因此,SDG7是春化作用的负调节因子,SDG7缺失会在无寒冷暴露时产生部分春化状态。