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铜通过 PIN1 介导的生长素再分配来调节主根伸长。

Copper regulates primary root elongation through PIN1-mediated auxin redistribution.

机构信息

College of Life Sciences, Wuhan University, Wuhan 430072, China.

出版信息

Plant Cell Physiol. 2013 May;54(5):766-78. doi: 10.1093/pcp/pct030. Epub 2013 Feb 8.

Abstract

The heavy metal copper (Cu) is an essential microelement required for normal plant growth and development, but it inhibits primary root growth when in excess. The mechanism underlying how excess Cu functions in this process remains to be further elucidated. Here, we report that a higher concentration of CuSO4 inhibited primary root elongation of Arabidopsis seedlings by affecting both the elongation and meristem zones. In the meristem zone, meristematic cell division potential was reduced by excess Cu. Further experiments showed that Cu can modulate auxin distribution, resulting in higher auxin activities in both the elongation and meristem zones of Cu-treated roots based on DR5::GUS expression patterns. This Cu-mediated auxin redistribution was shown to be responsible for Cu-mediated inhibition of primary root elongation. Additional genetic and physiological data demonstrated that it was PINFORMED1 (PIN1), but not PIN2 or AUXIN1 (AUX1), that regulated this process. However, Cu-induced hydrogen peroxide accumulation did not contribute to Cu-induced auxin redistribution for inhibition of root elongation. When the possible role of ethylene in this process was analyzed, Cu had a similar impact on the root elongation of both the wild type and the ein2-1 mutant, implying that Cu-mediated inhibition of primary root elongation was not due to the ethylene signaling pathway.

摘要

重金属铜(Cu)是植物正常生长和发育所必需的微量元素,但过量时会抑制主根生长。过量 Cu 在这个过程中的作用机制仍有待进一步阐明。在这里,我们报告说,较高浓度的 CuSO4 通过影响伸长区和分生组织区来抑制拟南芥幼苗的主根伸长。在分生组织区,过量的 Cu 降低了分生组织细胞的分裂潜力。进一步的实验表明,Cu 可以调节生长素的分布,导致 Cu 处理的根的伸长区和分生组织区中的生长素活性增加,基于 DR5::GUS 表达模式。这种 Cu 介导的生长素再分配负责 Cu 介导的主根伸长抑制。额外的遗传和生理数据表明,是 PINFORMED1(PIN1),而不是 PIN2 或 AUXIN1(AUX1),调节了这个过程。然而,Cu 诱导的过氧化氢积累并没有导致 Cu 诱导的生长素再分配,从而抑制根的伸长。当分析乙烯在这个过程中的可能作用时,Cu 对野生型和 ein2-1 突变体的根伸长都有类似的影响,这表明 Cu 介导的主根伸长抑制不是由于乙烯信号通路。

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