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首页> 外文期刊>Journal of Plant Biology >H2O2 regulates root system architecture by modulating the polar transport and redistribution of auxin
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H2O2 regulates root system architecture by modulating the polar transport and redistribution of auxin

机译:H2O2通过调节生长素的极性转运和再分布来调节根系体系结构

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The accumulation and redistribution of the plant hormone auxin plays a crucial role in root development and patterning. Plants can alter their root system architecture (RSA) to adapt to different biotic and abiotic stresses. In addition, reactive oxygen species (ROS), such as H2O2, are known to increase in plants undergoing stress. Here, we present evidence that H2O2 can regulate auxin accumulation and redistribution through modulating polar auxin transport, leading to changes in RSA. Plants exposed to different concentrations of H2O2 formed a highly branched root system with abundant lateral roots and a shorter primary root. Monitoring of the auxin responsive DR5::GUS indicated that auxin accumulation decreased in lateral root primordia (LRP) and emerging lateral root tips. In addition, polar auxin transport, including both basipetal and acropetal transport modulated by AUX1 and PIN protein carriers, was involved in the process. Taken together, our results suggest that H2O2 could regulate plastic RSA by perturbing polar auxin transport as a means of modulating the accumulation and distribution of auxin.
机译:植物激素生长素的积累和再分布在根系发育和模式形成中起关键作用。植物可以改变其根系结构(RSA),以适应不同的生物和非生物胁迫。另外,已知诸如H 2 O 2的活性氧(ROS)在遭受胁迫的植物中增加。在这里,我们提供证据表明H2O2可以通过调节极性植物生长素的运输来调节植物生长素的积累和再分配,从而导致RSA的变化。暴露于不同浓度的H2O2的植物形成高度分支的根系,具有丰富的侧根和较短的初生根。生长素反应性DR5 :: GUS的监测表明,在侧根原基(LRP)和新兴的侧根尖中,生长素的积累减少。此外,该过程还涉及极性植物生长素的运输,包括由AUX1和PIN蛋白载体调节的基部和顶基运输。两者合计,我们的结果表明,H2O2可以通过干扰极性植物生长素的运输来调节塑料RSA,这是调节植物生长素积累和分布的一种手段。

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