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首页> 外文期刊>Journal of Plant Physiology >Phytochrome interacting factors (PIFs) are essential regulators for sucrose-induced hypocotyl elongation in Arabidopsis.
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Phytochrome interacting factors (PIFs) are essential regulators for sucrose-induced hypocotyl elongation in Arabidopsis.

机译:植物色素相互作用因子(PIF)是蔗糖诱导拟南芥(Arabidopsis)中下胚轴伸长的重要调节剂。

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Phytochrome interacting factors (PIFs) are members of a subfamily of basic helix-loop-helix transcript factors and have been proposed to act as positive regulators of hypocotyl elongation under normal condition. Here, we show that PIF1, 3, 4, 5 together play a central role in sucrose-induced hypocotyl elongation. When seedlings grown in light were transferred to darkness, exogenously applied sucrose significantly induced hypocotyl elongation in wild type Col-0, but this effect was impaired in all tested pif mutants, especially in the quadruple mutant pif1pif3pif4pif5 (pifq). Subsequent experiments showed that under various light/dark (L/D) cycle conditions sucrose still markedly induced hypocotyl elongation in Col-0, but exhibited little effects in pifq. Phytohormone gibberellins (GAs) have been proven to be required for sucrose-induced hypocotyl elongation, but application of GA3 (an active form of GAs) was not able to rescue the impairment observed in pifq, suggesting that impairment of sucrose-induced hypocotyl elongation in pifq is not due to the reduced endogenous GAs. Interestingly, through RT-PCR assay, we found that sucrose up-regulated the transcript level of PIF1, 3, 4, 5 in darkness. Furthermore, this effect was dependent on the presence of GAs. Additionally, under continuous light condition, sucrose markedly inhibited the hypocotyl elongation in Col-0 but not in pifq, whereas exogenous GA3 could recover the repression in Col-0 but only showed slight effect in pifq. These results collectively indicate that PIFs together with GAs control the effect of sucrose on hypocotyl elongation in Arabidopsis seedlings.
机译:植物色素相互作用因子(PIF)是基本螺旋-环-螺旋转录因子的一个亚家族的成员,并已提出在正常条件下充当下胚轴伸长的正调节剂。在这里,我们显示PIF1,3,4,5一起在蔗糖诱导的下胚轴伸长中发挥核心作用。当在光下生长的幼苗转移到黑暗中时,外源施用的蔗糖显着诱导了野生型Col-0的下胚轴伸长,但是在所有测试的 pif 突变体中,特别是在四重突变体中,这种作用均被削弱。 pif1pif3pif4pif5 ( pifq )。随后的实验表明,在各种明/暗(L / D)循环条件下,蔗糖仍显着诱导Col-0中的下胚轴伸长,但对 pifq 几乎没有影响。已证明植物激素赤霉素是蔗糖诱导的胚轴伸长所必需的,但是使用GA 3 (GA的一种活性形式)不能挽救在 pifq中观察到的损伤,表明 pifq 中蔗糖诱导的下胚轴伸长率降低并非由于内源GA减少所致。有趣的是,通过RT-PCR分析,我们发现蔗糖上调了 PIF1 , 3 , 4 , 5的转录水平在黑暗中。此外,这种效应取决于GA的存在。此外,在连续光照条件下,蔗糖显着抑制Col-0的下胚轴伸长,但不能抑制 pifq ,而外源GA 3 可以恢复Col-0的抑制,但只有在 pifq 中显示了轻微的影响。这些结果共同表明,PIF和GA共同控制蔗糖对拟南芥幼苗下胚轴伸长的影响。

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