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PIF3 is involved in the primary root growth inhibition of Arabidopsis induced by nitric oxide in the light.

机译:PIF3参与了一氧化氮在光照下对拟南芥的主要根生长抑制作用。

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PHYTOCHROME INTERACTING FACTOR3 (PIF3) is an important component in the phytochrome signaling pathway and mediates plant responses to various environmental conditions. We found that PIF3 is involved in the inhibition of root growth of Arabidopsis thaliana seedlings induced by nitric oxide (NO) in light. Overexpression of PIF3 partially alleviated the inhibitory effect of NO on root growth, whereas the pif3-1 mutant displayed enhanced sensitivity to NO in terms of root growth. During phytochrome signaling, the photoreceptor PHYB mediates the degradation of PIF3. We found that the phyB-9 mutant had a similar phenotype to that of PIF3ox in terms of responsiveness to NO. Furthermore, NO treatment promoted the accumulation of PHYB, and thus reduced PIF3 content. Our results further show that the activity of PIF3 is regulated by the DELLA protein RGL3[RGA (repressor of ga1-3) LIKE 3]. Therefore, we speculate that PIF3 lies downstream of PHYB and RGL3, and plays an important role in the inhibitory effect of NO on root growth of Arabidopsis seedlings in light.
机译:植物色素相互作用因子3(PIF3)是植物色素信号传导途径中的重要组成部分,可介导植物对各种环境条件的反应。我们发现,PIF3参与光抑制一氧化氮(NO)诱导的拟南芥幼苗根生长。 PIF3的过表达部分减轻了NO对根生长的抑制作用,而pif3-1突变体对根生长的NO敏感性增强。在植物色素信号传导过程中,感光体PHYB介导PIF3的降解。我们发现phyB-9突变体在对NO的反应性方面与PIF3ox具有相似的表型。此外,NO处理促进了PHYB的积累,从而降低了PIF3含量。我们的结果进一步表明,PIF3的活性受DELLA蛋白RGL3 [RGA(ga1-3的阻遏物)LIKE 3]调控。因此,我们推测PIF3位于PHYB和RGL3的下游,并且在NO抑制光对拟南芥幼苗根系生长的抑制作用中起重要作用。

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