Louvain Institute of Biomolecular Science and Technology, Université catholique de Louvain, Croix du Sud, Louvain-la-Neuve, Belgium.
Department of Plant Nutrition, Estación Experimental de Aula Dei, Consejo Superior de Investigaciones Científicas (CSIC), Zaragoza, Spain.
J Exp Bot. 2018 Aug 14;69(18):4419-4431. doi: 10.1093/jxb/ery221.
Although iron is present in large amounts in the soil, its poor solubility means that plants have to use various strategies to facilitate its uptake. In this study, we show that expression of NtPDR3/NtABCG3, a Nicotiana tabacum plasma-membrane ABC transporter in the pleiotropic drug resistance (PDR) subfamily, is strongly induced in the root epidermis under iron deficiency conditions. Prevention of NtPDR3 expression resulted in N. tabacum plants that were less tolerant to iron-deficient conditions, displaying stronger chlorosis and slower growth than those of the wild-type when not supplied with iron. Metabolic profiling of roots and root exudates revealed that, upon iron deficiency, secretion of catechol-bearing O-methylated coumarins such as fraxetin, hydroxyfraxetin, and methoxyfraxetin to the rhizosphere was compromised in NtPDR3-silenced plants. However, exudation of flavins such as riboflavin was not markedly affected by NtPDR3-silencing. Expression of NtPDR3 in N. tabacum Bright Yellow-2 (BY-2) cells resulted in altered intra- and extracellular coumarin pools, supporting coumarin transport by this transporter. The results demonstrate that N. tabacum secretes both coumarins and flavins in response to iron deficiency and that NtPDR3 plays an essential role in the plant response to iron deficiency by mediating secretion of O-methylated coumarins to the rhizosphere.
尽管铁在土壤中大量存在,但由于其溶解度较差,植物必须采用各种策略来促进其吸收。在这项研究中,我们表明,在缺铁条件下,烟草原生质体膜 ABC 转运蛋白 NtPDR3/NtABCG3 在根表皮中强烈表达。NtPDR3 表达的抑制导致烟草植物对缺铁条件的耐受性降低,与野生型相比,在不供应铁的情况下,表现出更强的黄化和生长缓慢。根和根分泌物的代谢谱分析表明,在缺铁条件下,沉默 NtPDR3 的植物向根际分泌的邻苯二酚 O-甲基化香豆素(如 Fraxetin、羟基 Fraxetin 和甲氧基 Fraxetin)受到损害。然而,沉默 NtPDR3 对黄素(如核黄素)的分泌没有明显影响。NtPDR3 在烟草 Bright Yellow-2(BY-2)细胞中的表达导致细胞内和细胞外香豆素库发生改变,支持该转运蛋白对香豆素的转运。研究结果表明,烟草响应缺铁时会同时分泌香豆素和黄素,而 NtPDR3 通过将 O-甲基化香豆素分泌到根际来介导植物对缺铁的响应,从而发挥重要作用。