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首页> 外文期刊>The Plant Cell >A DELLA in Disguise: SPATULA Restrains the Growth of the Developing Arabidopsis Seedling
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A DELLA in Disguise: SPATULA Restrains the Growth of the Developing Arabidopsis Seedling

机译:变相的DELLA:SPATULA抑制拟南芥幼苗的生长

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The period following seedling emergence is a particularly vulnerable stage in the plant life cycle. In Arabidopsis thaliana, the phytochrome-interacting factor (PIF) subgroup of basic-helix-loop-helix transcription factors has a pivotal role in regulating growth during this early phase, integrating environmental and hormonal signals. We previously showed that SPATULA (SPT), a PIF homolog, regulates seed dormancy. In this article, we establish that unlike PIFs, which mainly promote hypocotyl elongation, SPT is a potent regulator of cotyledon expansion. Here, SPT acts in an analogous manner to the gibberellin-dependent DELLAs, REPRESSOR OF GA1-3 and GIBBERELLIC ACID INSENSITIVE, which restrain cotyledon expansion alongside SPT. However, although DELLAs are not required for SPT action, we demonstrate that SPT is subject to negative regulation by DELLAs. Cross-regulation of SPT by DELLAs ensures that SPT protein levels are limited when DELLAs are abundant but rise following DELLA depletion. This regulation provides a means to prevent excessive growth suppression that would result from the dual activity of SPT and DELLAs, yet maintain growth restraint under DELLA-depleted conditions. We present evidence that SPT and DELLAs regulate common gene targets and illustrate that the balance of SPT and DELLA action depends on light quality signals in the natural environment.
机译:幼苗出苗后的时期是植物生命周期中特别脆弱的阶段。在拟南芥中,基本螺旋-环-螺旋转录因子的植物色素相互作用因子(PIF)亚组在此早期阶段在调节生长,整合环境和激素信号方面起着关键作用。我们先前显示,SPATULA(SPT)是一种PIF同源物,可调节种子的休眠状态。在本文中,我们确定与主要促进下胚轴伸长的PIF不同,SPT是子叶扩增的有效调节剂。在这里,SPT的作用类似于赤霉素依赖性的DELLA,GA1-3的阻遏物和赤霉素,它们与SPT一起抑制子叶的扩增。但是,尽管SPT动作不需要DELLA,但我们证明SPT受到DELLA的负面监管。 DELLA对SPT的交叉调节可确保当DELLA丰富时SPT蛋白水平受到限制,但随着DELLA消耗而升高。该法规提供了防止由于SPT和DELLAs双重活性而导致的过度生长抑制的手段,同时又可在DELLA耗尽的条件下保持生长抑制。我们提供证据表明SPT和DELLAs调节共同的基因靶标,并说明SPT和DELLA作用的平衡取决于自然环境中的光质量信号。

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