Trujillo-Hernandez José A, Bariat Laetitia, Enders Tara A, Strader Lucia C, Reichheld Jean-Philippe, Belin Christophe
Université Perpignan Via Domitia, Laboratoire Génome et Développement des Plantes, UMR, Perpignan, France.
CNRS, Laboratoire Génome et Développement des Plantes, UMR, Perpignan, France.
J Exp Bot. 2020 Aug 6;71(16):4843-4857. doi: 10.1093/jxb/eraa195.
Root system architecture results from a highly plastic developmental process to adapt to environmental conditions. In particular, the development of lateral roots and root hair growth are constantly optimized to the rhizosphere properties, including biotic and abiotic constraints. The development of the root system is tightly controlled by auxin, the driving morphogenic hormone in plants. Glutathione, a major thiol redox regulator, is also critical for root development but its interplay with auxin is scarcely understood. Previous work showed that glutathione deficiency does not alter root responses to indole acetic acid (IAA), the main active auxin in plants. Because indole butyric acid (IBA), another endogenous auxinic compound, is an important source of IAA for the control of root development, we investigated the crosstalk between glutathione and IBA during root development. We show that glutathione deficiency alters lateral roots and root hair responses to exogenous IBA but not IAA. Detailed genetic analyses suggest that glutathione regulates IBA homeostasis or conversion to IAA in the root cap. Finally, we show that both glutathione and IBA are required to trigger the root hair response to phosphate deprivation, suggesting an important role for this glutathione-dependent regulation of the auxin pathway in plant developmental adaptation to its environment.
根系结构源于一个高度可塑性的发育过程,以适应环境条件。特别是,侧根的发育和根毛的生长会不断根据根际特性进行优化,包括生物和非生物限制因素。根系的发育受到生长素(植物中驱动形态发生的激素)的严格控制。谷胱甘肽是一种主要的硫醇氧化还原调节剂,对根系发育也至关重要,但其与生长素的相互作用却鲜为人知。先前的研究表明,谷胱甘肽缺乏不会改变根系对吲哚乙酸(IAA,植物中主要的活性生长素)的反应。由于另一种内源性生长素类化合物吲哚丁酸(IBA)是控制根系发育的IAA的重要来源,我们研究了根系发育过程中谷胱甘肽与IBA之间的相互作用。我们发现谷胱甘肽缺乏会改变侧根和根毛对外源IBA的反应,但不会改变对IAA的反应。详细的遗传分析表明,谷胱甘肽在根冠中调节IBA的稳态或向IAA的转化。最后,我们表明谷胱甘肽和IBA都是触发根毛对磷缺乏反应所必需的,这表明这种依赖谷胱甘肽的生长素途径调节在植物发育适应环境中具有重要作用。