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硝酸盐通过 SLAH 介导的从根部分泌柠檬酸来提高铝抗性。

Nitrate improves aluminium resistance through SLAH-mediated citrate exudation from roots.

机构信息

The Key Laboratory of Plant Development and Environmental Adaptation Biology, Ministry of Education, School of Life Science, Shandong University (Qingdao), Qingdao, China.

State Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, Tai'an, China.

出版信息

Plant Cell Environ. 2023 Nov;46(11):3518-3541. doi: 10.1111/pce.14688. Epub 2023 Aug 14.

Abstract

Aluminium (Al) toxicity is one of the major constraint for crop production in acidic soil, and the inappropriate utilization of nitrogen fertilizer can accelerate soil acidification. Despite previous studies investigating the regulation of nitrogen forms in Al toxicity of plants, the underlying mechanism, particularly at the molecular level, remains unclear. This study aims to uncover the potentially regulatory mechanism of nitrate (NO ) in the Al resistance of maize and Arabidopsis. NO conservatively improves Al resistance in maize and Arabidopsis, with nitrate-elevated citrate synthesis and exudation potentially playing critical roles in excluding Al from the root symplast. ZmSLAH2 in maize and AtSLAH1 in Arabidopsis are essential for the regulation of citrate exudation and NO -promoted Al resistance, with ZmMYB81 directly targeting the ZmSLAH2 promoter to activate its activity. Additionally, NO transport is necessary for NO -promoted Al resistance, with ZmNRT1.1A and AtNRT1.1 potentially playing vital roles. The suppression of NO transport in roots by ammonium (NH ) may inhibit NO -promoted Al resistance. This study provides novel insights into the understanding of the crucial role of NO -mediated signalling in the Al resistance of plants and offers guidance for nitrogen fertilization on acid soils.

摘要

铝(Al)毒性是酸性土壤中作物生产的主要限制因素之一,氮肥的不当利用会加速土壤酸化。尽管先前的研究调查了氮素形态在植物铝毒性中的调节作用,但潜在的机制,特别是在分子水平上,仍不清楚。本研究旨在揭示硝酸盐(NO3-)在玉米和拟南芥耐铝性中的潜在调节机制。NO3-保守地提高了玉米和拟南芥的耐铝性,硝酸根升高的柠檬酸合成和分泌可能在将铝从根共质体中排除方面发挥关键作用。玉米中的 ZmSLAH2 和拟南芥中的 AtSLAH1 对于柠檬酸分泌和 NO3-促进的耐铝性的调节是必需的,ZmMYB81 直接靶向 ZmSLAH2 启动子以激活其活性。此外,NO3-的运输对于 NO3-促进的耐铝性是必要的,ZmNRT1.1A 和 AtNRT1.1 可能发挥重要作用。根中铵(NH4+)对 NO3-运输的抑制可能抑制 NO3-促进的耐铝性。本研究为理解 NO3-介导的信号在植物耐铝性中的关键作用提供了新的见解,并为酸性土壤中的氮肥施肥提供了指导。

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