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生长素外排载体 ZmPGP1 介导铝胁迫下的根生长抑制。

Auxin Efflux Carrier ZmPGP1 Mediates Root Growth Inhibition under Aluminum Stress.

机构信息

The Key Laboratory of Plant Cell Engineering and Germplasm Innovation, College of Life Sciences, Shandong University, Jinan 250100, Shandong, China.

Insititue of Molecular Breeding for Maize, Qilu Normal University, Jinan 250200, China.

出版信息

Plant Physiol. 2018 Jun;177(2):819-832. doi: 10.1104/pp.17.01379. Epub 2018 May 2.

Abstract

Auxin has been shown to enhance root growth inhibition under aluminum (Al) stress in Arabidopsis (). However, in maize (), auxin may play a negative role in the Al-induced inhibition of root growth. In this study, we identified mutants deficient in the maize auxin efflux carrier P-glycoprotein (ZmPGP1) after ethyl methanesulfonate mutagenesis and used them to elucidate the contribution of ZmPGP1 to Al-induced root growth inhibition. Root growth in the mutant, which forms shortened roots and is hyposensitive to auxin, was less inhibited by Al stress than that in the inbred line B73. In the mutants, the root tips displayed higher auxin accumulation and enhanced auxin signaling under Al stress, which was also consistent with the increased expression of auxin-responsive genes. Based on the behavior of the auxin-responsive marker transgene, , we concluded that Al stress reduced the level of auxin in the root tip, which contrasts with the tendency of Al stress-induced Arabidopsis plants to accumulate more auxin in their root tips. In addition, Al stress induced the expression of Therefore, in maize, Al stress is associated with reduced auxin accumulation in root tips, a process that is regulated by ZmPGP1 and thus causes inhibition of root growth. This study provides further evidence about the role of auxin and auxin polar transport in Al-induced root growth regulation in maize.

摘要

生长素已被证明可增强拟南芥在铝(Al)胁迫下的根生长抑制作用()。然而,在玉米中,生长素可能在 Al 诱导的根生长抑制中发挥负作用()。在这项研究中,我们通过乙磺酸乙酯诱变鉴定出玉米生长素外排载体 P-糖蛋白(ZmPGP1)缺陷型突变体,并利用它们阐明 ZmPGP1 对 Al 诱导的根生长抑制的贡献。在突变体中,根生长受到 Al 胁迫的抑制程度小于自交系 B73,突变体形成短根,对生长素的敏感性降低。在 突变体中,根尖端表现出更高的生长素积累和增强的生长素信号转导,这与生长素响应基因的表达增加一致。基于生长素响应标记转基因 的行为,我们得出结论,Al 胁迫降低了根尖的生长素水平,这与 Al 胁迫诱导拟南芥植物在根尖积累更多生长素的趋势相反。此外,Al 胁迫诱导了 的表达。因此,在玉米中,Al 胁迫与根尖生长素积累减少有关,这一过程受 ZmPGP1 调节,从而导致根生长抑制。本研究为生长素和生长素极性运输在玉米 Al 诱导根生长调节中的作用提供了进一步的证据。

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