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The plant stress hormone ethylene controls floral transition via DELLA-dependent regulation of floral meristem-identity genes

机译:植物逆境激素乙烯通过DELLA依赖的花卉分生组织同一性基因调控花卉的过渡

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The length of the Arabidopsis thaliana life cycle depends on the timing of the floral transition. Here, we define the relationship between the plant stress hormone ethylene and the timing of floral initiation. Ethylene signaling is activated by diverse environmental stresses, but it was not previously clear how ethylene regulates flowering. First, we show that ethylene delays flowering in Arabidopsis, and that this delay is partly rescued by loss-of-function mutations in genes encoding the DELLAs, a family of nuclear gibberellin (GA)-regulated growth-repressing proteins. This finding suggests that ethylene may act in part by modulating DELIA activity. We also show that activated ethylene signaling reduces bioactive GA levels, thus enhancing the accumulation of DELLAs. Next, we show that ethylene acts on DELLAs via the CTR1-dependent ethylene response pathway, most likely downstream of the transcriptional regulator EIN3. Ethylene-enhanced DELLA accumulation in turn delays flowering via repression of the floral meristem-identity genes LEAFY (LFY) and SUPPRESSOR OF OVEREXPRESSION OF CONSTANS 1 (SOC1). Our findings establish a link between the CTR1/EIN3-dependent ethylene and GA-DELLA signaling pathways that enables adaptively significant regulation of plant life cycle progression in response to environmental adversity.
机译:拟南芥生命周期的长短取决于花期过渡的时间。在这里,我们定义了植物逆境激素乙烯与花序授粉时间之间的关系。乙烯信号传导受到各种环境压力的激活,但以前尚不清楚乙烯如何调节开花。首先,我们证明了乙烯延迟了拟南芥的开花,并且这种延迟的部分缓解是由于编码DELLAs(一种由核赤霉素(GA)调控的生长抑制蛋白)的基因中的功能丧失突变所挽救的。该发现表明乙烯可以通过调节DELIA活性来部分起作用。我们还表明,活化的乙烯信号传导降低了生物活性GA水平,从而增强了DELLAs的积累。接下来,我们显示乙烯通过CTR1依赖性乙烯反应途径(最可能在转录调节因子EIN3的下游)作用于DELLA。乙烯增强的DELLA积累反过来通过抑制花分生组织同一性基因LEAFY(LFY)和CONSTANS 1过表达的抑制因子(SOC1)延迟开花。我们的发现在依赖CTR1 / EIN3的乙烯与GA-DELLA信号传导途径之间建立了联系,从而能够适应环境逆境而对植物生命周期进程进行适应性显着调节。

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