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首页> 外文期刊>The Plant Cell >The basic helix-loop-helix transcription factor PIF5 acts on ethylene biosynthesis and phytochrome signaling by distinct mechanisms
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The basic helix-loop-helix transcription factor PIF5 acts on ethylene biosynthesis and phytochrome signaling by distinct mechanisms

机译:基本的螺旋-环-螺旋转录因子PIF5通过不同的机制作用于乙烯的生物合成和植物色素信号传导

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PHYTOCHROME-INTERACTING FACTOR5 (PIF5), a basic helix-loop-helix transcription factor, interacts specifically with the photoactivated form of phytochrome B ( phyB). Here, we report that dark-grown Arabidopsis thaliana seedlings over-expressing PIF5 (PIF5-OX) exhibit exaggerated apical hooks and short hypocotyls, reminiscent of the triple response induced by elevated ethylene levels, whereas pif5 mutants fail to maintain tight hooks like those of wild-type seedlings. Silver ions, an ethylene receptor blocker, rescued the triple-response phenotype, and we show that PIF5-OX seedlings express enhanced levels of key ethylene biosynthesis enzymes and produce elevated ethylene levels. Exposure of PIF5-OX seedlings to prolonged continuous red light (Rc) promotes hypocotyl elongation relative to dark controls, the reciprocal of the Rc-imposed hypocotyl inhibition displayed by wild-type seedlings. In contrast with this PIF5-OX hyposensitivity to Rc, pif5 mutant seedlings are hypersensitive relative to wild-type seedlings. We show that this contrast is due to reciprocal changes in phyB protein levels in prolonged Rc. Compared with wild-type seedlings, PIF5-OX seedlings have reduced, whereas pif5 mutants have increased, phyB (and phyC) levels in Rc. The phyB degradation in the overexpressors depends on a functional phyB binding motif in PIF5 and involves the 26S proteasome pathway. Our data thus indicate that overexpressed PIF5 causes altered ethylene levels, which promote the triple response in darkness, whereas in the light, the interaction of photoactivated phyB with PIF5 causes degradation of the photoreceptor protein. The evidence suggests that endogenous PIF5 negatively regulates phyB-imposed hypocotyl inhibition in prolonged Rc by reducing photoreceptor abundance, and thereby photosensory capacity, rather than functioning as a signaling intermediate.
机译:植物色素相互作用因子5(PIF5)是一种基本的螺旋-环-螺旋转录因子,可与光活化形式的植物色素B(phyB)特异性相互作用。在这里,我们报道过表达PIF5(PIF5-OX)的深色拟南芥幼苗表现出夸张的顶端钩和短胚轴,令人联想到乙烯水平升高引起的三重响应,而pif5突变体无法像野生型幼苗。银离子,一种乙烯受体阻滞剂,挽救了三重反应的表型,我们表明PIF5-OX幼苗表达增强的关键乙烯生物合成酶水平,并产生升高的乙烯水平。相对于黑暗对照,PIF5-OX幼苗暴露于延长的连续红光(Rc)会促进下胚轴伸长,这是野生型幼苗表现出的R​​c施加的下胚轴抑制作用的倒数。与这种PIF5-OX对Rc的低敏感性相反,pif5突变体幼苗相对于野生型幼苗非常敏感。我们表明,这种对比是由于Rc中phyB蛋白水平的倒数变化所致。与野生型幼苗相比,PIF5-OX幼苗减少了,而pif5突变体增加了Rc中的phyB(和phyC)水平。过度表达中的phyB降解取决于PIF5中的功能性phyB结合基序,并涉及26S蛋白酶体途径。因此,我们的数据表明,过表达的PIF5会引起乙烯水平的改变,从而促进黑暗中的三重反应,而在光下,光活化phyB与PIF5的相互作用会导致感光蛋白的降解。有证据表明,内源性PIF5通过降低感光细胞的丰度,从而降低光感受器的能力,而不是作为信号传导的中间产物,在延长的Rc中负调控phyB施加的下胚轴抑制作用。

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