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拟南芥转录因子MYB28和MYB29通过调节铁稳态来塑造铵胁迫反应。

Arabidopsis thaliana transcription factors MYB28 and MYB29 shape ammonium stress responses by regulating Fe homeostasis.

作者信息

Coleto Inmaculada, Bejarano Iraide, Marín-Peña Agustín Javier, Medina Joaquín, Rioja Cristina, Burow Meike, Marino Daniel

机构信息

Department of Plant Biology and Ecology, University of the Basque Country (UPV/EHU), Apdo. 644, Bilbao, E-48080, Spain.

Centro de Biotecnología y Genómica de Plantas, Universidad Politécnica de Madrid (UPM) - Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria (INIA), Campus de Montegancedo, Autopista M40 (km 38), Madrid, 28223, Spain.

出版信息

New Phytol. 2021 Jan;229(2):1021-1035. doi: 10.1111/nph.16918. Epub 2020 Oct 4.

Abstract

Although ammonium (NH ) is a key intermediate of plant nitrogen metabolism, high concentrations of NH in the soil provoke physiological disorders that lead to the development of stress symptoms. Ammonium nutrition was shown to induce the accumulation of glucosinolates (GSLs) in leaves of different Brassicaceae species. To further understand the link between ammonium nutrition and GSLs, we analysed the ammonium stress response of Arabidopsis mutants impaired in GSL metabolic pathway. We showed that the MYB28 and MYB29 double mutant (myb28myb29), which is almost deprived of aliphatic GSLs, is highly hypersensitive to ammonium nutrition. Moreover, we evidenced that the stress symptoms developed were not a consequence of the lack of aliphatic GSLs. Transcriptomic analysis highlighted the induction of an iron (Fe) deficiency response in myb28myb29 under ammonium nutrition. Consistently, ammonium-grown myb28myb29 plants showed altered Fe accumulation and homeostasis. Interestingly, we showed overall that growing Arabidopsis with increased Fe availability relieved ammonium stress symptoms and that this was associated with MYB28 and MYB29 expression. Taken together, our data indicated that the control of Fe homeostasis was crucial for the Arabidopsis response to ammonium nutrition and evidenced that MYB28 and MYB29 play a role in this control.

摘要

虽然铵(NH )是植物氮代谢的关键中间体,但土壤中高浓度的NH会引发生理紊乱,导致应激症状的出现。铵营养被证明会诱导不同十字花科物种叶片中硫代葡萄糖苷(GSLs)的积累。为了进一步了解铵营养与GSLs之间的联系,我们分析了GSL代谢途径受损的拟南芥突变体对铵胁迫的反应。我们发现,几乎缺乏脂肪族GSLs的MYB28和MYB29双突变体(myb28myb29)对铵营养高度敏感。此外,我们证明所出现的应激症状并非脂肪族GSLs缺乏的结果。转录组分析突出了铵营养条件下myb28myb29中铁(Fe)缺乏反应的诱导。一致地,铵培养的myb28myb29植物表现出铁积累和稳态的改变。有趣的是,我们总体上表明,增加铁的有效性来培养拟南芥可缓解铵胁迫症状,且这与MYB28和MYB29的表达有关。综上所述,我们的数据表明铁稳态的控制对拟南芥对铵营养的反应至关重要,并证明MYB28和MYB29在这种控制中发挥作用。

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