首页> 美国卫生研究院文献>PLoS Genetics >Floral regulators FLC and SOC1 directly regulate expression of the B3-type transcription factor TARGET OF FLC AND SVP 1 at the Arabidopsis shoot apex via antagonistic chromatin modifications
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Floral regulators FLC and SOC1 directly regulate expression of the B3-type transcription factor TARGET OF FLC AND SVP 1 at the Arabidopsis shoot apex via antagonistic chromatin modifications

机译:花卉调节剂FLC和SOC1通过拮抗染色质修饰直接调节拟南芥芽尖处B3型转录因子TARGET FLC和SVP 1的表达

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摘要

Integration of environmental and endogenous cues at plant shoot meristems determines the timing of flowering and reproductive development. The MADS box transcription factor FLOWERING LOCUS C (FLC) of Arabidopsis thaliana is an important repressor of floral transition, which blocks flowering until plants are exposed to winter cold. However, the target genes of FLC have not been thoroughly described, and our understanding of the mechanisms by which FLC represses transcription of these targets and how this repression is overcome during floral transition is still fragmentary. Here, we identify and characterize TARGET OF FLC AND SVP1 (TFS1), a novel target gene of FLC and its interacting protein SHORT VEGETATIVE PHASE (SVP). TFS1 encodes a B3-type transcription factor, and we show that tfs1 mutants are later flowering than wild-type, particularly under short days. FLC and SVP repress TFS1 transcription leading to deposition of trimethylation of Iysine 27 of histone 3 (H3K27me3) by the Polycomb Repressive Complex 2 at the TFS1 locus. During floral transition, after downregulation of FLC by cold, TFS1 transcription is promoted by SUPPRESSOR OF OVEREXPRESSION OF CONSTANS1 (SOC1), a MADS box protein encoded by another target of FLC/SVP. SOC1 opposes PRC function at TFS1 through recruitment of the histone demethylase RELATIVE OF EARLY FLOWERING 6 (REF6) and the SWI/SNF chromatin remodeler ATPase BRAHMA (BRM). This recruitment of BRM is also strictly required for SQUAMOSA PROMOTER BINDING PROTEIN-LIKE 9 (SPL9) binding at TFS1 to coordinate RNAPII recruitment through the Mediator complex. Thus, we show that antagonistic chromatin modifications mediated by different MADS box transcription factor complexes play a crucial role in defining the temporal and spatial patterns of transcription of genes within a network of interactions downstream of FLC/SVP during floral transition.
机译:植物分生组织中环境和内源线索的整合决定了开花和生殖发育的时机。拟南芥的MADS框转录因子FLOWERING LOCUS C(FLC)是花卉过渡的重要阻遏物,其阻止开花直至植物暴露于冬季寒冷。但是,FLC的靶基因尚未被彻底描述,我们对FLC抑制这些靶标转录的机制以及在花期转化过程中如何克服这种抑制的理解仍然是零碎的。在这里,我们确定和表征FLC和SVP1(TFS1)的靶标,FLC的新型靶基因及其相互作用的蛋白质植物生长素期(SVP)。 TFS1编码一个B3型转录因子,并且我们显示tfs1突变体的开花时间比野生型晚,尤其是在短时间内。 FLC和SVP抑制TFS1转录,导致TFS1基因座上的Polycomb Repressive Complex 2沉积组蛋白3(H3K27me3)赖氨酸27的三甲基化。在花期过渡过程中,寒冷导致FLC的下调后,TFS1转录受CONSTANS1过表达的抑制因子(SOC1)的促进,后者是由FLC / SVP的另一个靶标编码的MADS盒蛋白。 SOC1通过募集组蛋白脱甲基酶相对早花6(REF6)和SWI / SNF染色质重塑剂ATPase BRAHMA(BRM)来抵抗TFS1的PRC功能。对于SQUAMOSA PROMOTER BINDING PROTEIN-LIKE 9(SPL9)在TFS1上进行结合以协调通过介体复合物的RNAPII募集,BRM的募集也是严格要求的。因此,我们表明由不同的MADS框转录因子复合物介导的拮抗染色质修饰在定义花期过渡期间FLC / SVP下游相互作用网络内基因转录的时空格局中起着至关重要的作用。

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