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首页> 外文期刊>Frontiers in Plant Science >Magnesium Transporter MGT6 Plays an Essential Role in Maintaining Magnesium Homeostasis and Regulating High Magnesium Tolerance in Arabidopsis
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Magnesium Transporter MGT6 Plays an Essential Role in Maintaining Magnesium Homeostasis and Regulating High Magnesium Tolerance in Arabidopsis

机译:镁转运蛋白MGT6在维持 italic> Arabidopsis 的镁稳态和调节高镁耐受性中起重要作用。

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摘要

Magnesium (Mg) is one of the essential nutrients for all living organisms. Plants acquire Mg from the environment and distribute within their bodies in the ionic form via Mg~(2+)-permeable transporters. In Arabidopsis , the plasma membrane-localized magnesium transporter MGT6 mediates Mg~(2+)uptake under Mg-limited conditions, and therefore is important for the plant adaptation to low-Mg environment. In this study, we further assessed the physiological function of MGT6 using a knockout T-DNA insertional mutant allele. We found that MGT6 was required for normal plant growth during various developmental stages when the environmental Mg~(2+)was low. Interestingly, in addition to the hypersensitivity to Mg~(2+)limitation, mgt6 mutants displayed dramatic growth defects when external Mg~(2+)was in excess. Compared with wild-type plants, mgt6 mutants generally contained less Mg~(2+)under both low and high external Mg~(2+)conditions. Reciprocal grafting experiments further underpinned a role of MGT6 in a shoot-based mechanism for detoxifying excessive Mg~(2+)in the environment. Moreover, we found that mgt6 mgt7 double mutant showed more severe phenotypes compared with single mutants under both low- and high-Mg~(2+)stress conditions, suggesting that these two MGT-type transporters play an additive role in controlling plant Mg~(2+)homeostasis under a wide range of external Mg~(2+)concentrations.
机译:镁(Mg)是所有生物的必需营养素之一。植物从环境中获取镁,并通过可透过Mg〜(2+)的转运蛋白以离子形式分布在体内。在拟南芥中,质膜定位的镁转运蛋白MGT6在有限的镁条件下介导了Mg〜(2+)的吸收,因此对于植物适应低镁环境具有重要意义。在这项研究中,我们使用敲除的T-DNA插入突变等位基因进一步评估了MGT6的生理功能。我们发现,当环境Mg〜(2+)较低时,MGT6是正常植物在各个发育阶段的生长所必需的。有趣的是,除了对Mg〜(2+)的超敏反应外,当外部Mg〜(2+)过量时,mgt6突变体还表现出明显的生长缺陷。与野生型植物相比,在低和高外部Mg〜(2+)条件下,mgt6突变体通常都含有较少的Mg〜(2+)。相互嫁接实验进一步巩固了MGT6在基于芽的机制中为环境中过量的Mg〜(2+)排毒的作用。此外,我们发现在低和高Mg〜(2+)胁迫条件下,mgt6,mgt7双突变体均比单突变体表现出更严重的表型,表明这两种MGT型转运蛋白在控制植物Mg〜中起附加作用。在较大的外部Mg〜(2+)浓度范围内,(2+)稳态。

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