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Polycomb-Group Proteins and FLOWERING LOCUS T Maintain Commitment to Flowering in Arabidopsis thaliana

机译:多梳子组蛋白和开花地点保持拟南芥开花的承诺。

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The switch from vegetative to reproductive growth is extremely stable even if plants are only transiently exposed to environmental stimuli that trigger flowering. In the photoperiodic pathway, a mobile signal, florigen, encoded by FLOWERING LOCUS T (FT) in Arabidopsis thaliana, induces flowering. Because FT activity in leaves is not maintained after transient photoperiodic induction, the molecular basis for stable floral commitment is unclear. Here, we show that Polycomb-group (Pc-G) proteins, which mediate epigenetic gene regulation, maintain the identity of inflorescence and floral meristems after floral induction. Thus, plants with reduced Pc-G activity show a remarkable increase of cauline leaves under noninductive conditions and floral reversion when shifted from inductive to noninductive conditions. These phenotypes are almost completely suppressed by loss of FLOWERING LOCUS C (FLC) and SHORT VEGETATIVE PHASE, which both delay flowering and promote vegetative shoot identity. Upregulation of FLC in Pc-G mutants leads to a strong decrease of FT expression in inflorescences. We find that this activity of FT is needed to prevent floral reversion. Collectively, our results reveal that floral meristem identity is at least partially maintained by a daylength-independent role of FT whose expression is indirectly sustained by Pc-G activity.
机译:即使植物仅短暂地暴露于触发开花的环境刺激下,从营养生长到生殖生长的转变也非常稳定。在光周期途径中,由拟南芥中的FLOWERING LOCUS T(FT)编码的一种流动信号florigen诱导开花。由于短暂的光周期诱导后叶片中的FT活性无法保持,因此尚不清楚稳定花序的分子基础。在这里,我们显示了介导表观遗传基因调控的Polycomb-group(Pc-G)蛋白,在花诱导后保持花序和花分生组织的身份。因此,具有降低的Pc-G活性的植物在非感应条件下显示出茎生叶的显着增加,当从感应条件转变为非感应条件时,花的返还。这些表型几乎被花丝C(FLC)和植物生长短相的丧失完全抑制,这既延迟了开花又促进了植物新梢的身份。 Pc-G突变体中FLC的上调导致花序中FT表达的强烈下降。我们发现FT的这种活性是需要的,以防止花的逆转。总的来说,我们的研究结果表明,花分生组织的身份至少部分由FT的不依赖日长的作用来维持,FT的表达通过Pc-G活性间接维持。

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