过氧化氢介导高强度蓝光诱导的棉花幼苗下胚轴向光性。

Qian-Yi Lv, Qing-Ping Zhao, Chen Zhu, Meichen Ding, Fang-Yuan Chu, Xing-Kun Li, Kai Cheng, Xiang Zhao
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引用次数: 0

摘要

趋光性是一种典型的适应性生长反应,有助于植物加强光合作用的光捕获。结果表明,过氧化氢(H2O2)参与了蓝光诱导下胚轴向光性的调控;然而,潜在的机制尚不清楚。在本研究中,我们证明了单侧高强度蓝光(HBL)可以诱导H2O2在棉花下胚轴中的不对称分布。通过将H2O2均匀地涂在下胚轴上或将H2O2清除剂涂在下胚轴上,破坏H2O2诱导的不对称分布,可以有效地抑制下胚轴的光性生长。同样,在下胚轴的阴影侧和光照侧施用H2O2分别导致下胚轴向光性降低和增强。此外,我们发现H2O2抑制棉花幼苗的下胚轴伸长,从而支持H2O2对hbl诱导的下胚轴向光性的抑制作用。此外,我们的研究结果表明H2O2干扰hbl诱导的棉花下胚轴中生长素的不对称分布。综上所述,我们的研究发现H2O2改变了生长素的不对称积累,抑制了下胚轴细胞的伸长,从而介导了hbl诱导的下胚轴向光性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Hydrogen peroxide mediates high-intensity blue light-induced hypocotyl phototropism of cotton seedlings.

Hydrogen peroxide mediates high-intensity blue light-induced hypocotyl phototropism of cotton seedlings.

Hydrogen peroxide mediates high-intensity blue light-induced hypocotyl phototropism of cotton seedlings.

Hydrogen peroxide mediates high-intensity blue light-induced hypocotyl phototropism of cotton seedlings.

Phototropism is a classic adaptive growth response that helps plants to enhance light capture for photosynthesis. It was shown that hydrogen peroxide (H2O2) participates in the regulation of blue light-induced hypocotyl phototropism; however, the underlying mechanism is unclear. In this study, we demonstrate that the unilateral high-intensity blue light (HBL) could induce asymmetric distribution of H2O2 in cotton hypocotyls. Disruption of the HBL-induced asymmetric distribution of H2O2 by applying either H2O2 itself evenly on the hypocotyls or H2O2 scavengers on the lit side of hypocotyls could efficiently inhibit hypocotyl phototropic growth. Consistently, application of H2O2 on the shaded and lit sides of the hypocotyls led to reduced and enhanced hypocotyl phototropism, respectively. Further, we show that H2O2 inhibits hypocotyl elongation of cotton seedlings, thus supporting the repressive role of H2O2 in HBL-induced hypocotyl phototropism. Moreover, our results show that H2O2 interferes with HBL-induced asymmetric distribution of auxin in the cotton hypocotyls. Taken together, our study uncovers that H2O2 changes the asymmetric accumulation of auxin and inhibits hypocotyl cell elongation, thus mediating HBL-induced hypocotyl phototropism.

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