首页> 外文OA文献 >The Arabidopsis Phytochrome-Interacting Factor PIF7, Together with PIF3 and PIF4, Regulates Responses to Prolonged Red Light by Modulating phyB Levels[W]
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The Arabidopsis Phytochrome-Interacting Factor PIF7, Together with PIF3 and PIF4, Regulates Responses to Prolonged Red Light by Modulating phyB Levels[W]

机译:拟南芥植物色素相互作用因子PIF7,与PIF3和PIF4一起,通过调节phyB水平来调节对延长红光的响应[W]

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摘要

We show that a previously uncharacterized Arabidopsis thaliana basic helix-loop-helix (bHLH) phytochrome interacting factor (PIF), designated PIF7, interacts specifically with the far-red light–absorbing Pfr form of phyB through a conserved domain called the active phyB binding motif. Similar to PIF3, upon light exposure, PIF7 rapidly migrates to intranuclear speckles, where it colocalizes with phyB. However, in striking contrast to PIF3, this process is not accompanied by detectable light-induced phosphorylation or degradation of PIF7, suggesting that the consequences of interaction with photoactivated phyB may differ among PIFs. Nevertheless, PIF7 acts similarly to PIF3 in prolonged red light as a weak negative regulator of phyB-mediated seedling deetiolation. Examination of pif3, pif4, and pif7 double mutant combinations shows that their moderate hypersensitivity to extended red light is additive. We provide evidence that the mechanism by which these PIFs operate on the phyB signaling pathway under prolonged red light is through maintaining low phyB protein levels, in an additive or synergistic manner, via a process likely involving the proteasome pathway. These data suggest that the role of these phyB-interacting bHLH factors in modulating seedling deetiolation in prolonged red light may not be as phy-activated signaling intermediates, as proposed previously, but as direct modulators of the abundance of the photoreceptor.
机译:我们显示了以前未鉴定的拟南芥基本螺旋-环-螺旋(bHLH)植物色素相互作用因子(PIF),称为PIF7,通过一个称为主动phyB结合的保守域与远红光吸收性phyr相互作用主题。与PIF3相似,在光照下,PIF7会迅速迁移到核内斑点,并与phyB共定位。但是,与PIF3形成鲜明对比的是,此过程没有伴随可检测到的光诱导PIF7磷酸化或降解,这表明PIF之间与光活化phyB相互作用的后果可能有所不同。尽管如此,PIF7在延长的红光中的作用与PIF3相似,是phyB介导的幼苗去化作用的弱负调节剂。对pif3,pif4和pif7双重突变体组合的检查表明,它们对扩展红光的中等超敏性是可加的。我们提供的证据表明,这些PIF在延长的红光下在phyB信号途径上起作用的机制是通过加性或协同方式,通过可能涉及蛋白酶体途径的过程,维持低phyB蛋白水平。这些数据表明,这些与phyB相互作用的bHLH因子在延长的红光中调节幼苗脱脂作用中的作用可能不像以前提出的那样是作为phy活化的信号传导中间体,而是作为光感受器丰度的直接调节剂。

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