Institut de Biologie Moléculaire des Plantes, UPR2357, Associé avec l'Université de Strasbourg, 67084 Strasbourg, France.
Instituto de Biología Molecular y Celular de Plantas, CSIC-UPV, 46022 Valencia, Spain.
Dev Cell. 2016 Apr 18;37(2):190-200. doi: 10.1016/j.devcel.2016.03.022.
Iron is an essential element for most living organisms. Plants acquire iron from the rhizosphere and have evolved different biochemical and developmental responses to adapt to a low-iron environment. In Arabidopsis, FIT encodes a basic helix-loop-helix transcription factor that activates the expression of iron-uptake genes in root epidermis upon iron deficiency. Here, we report that the gibberellin (GA)-signaling DELLA repressors contribute substantially in the adaptive responses to iron-deficient conditions. When iron availability decreases, DELLAs accumulate in the root meristem, thereby restraining root growth, while being progressively excluded from epidermal cells in the root differentiation zone. Such DELLA exclusion from the site of iron acquisition relieves FIT from DELLA-dependent inhibition and therefore promotes iron uptake. Consistent with this mechanism, expression of a non-GA-degradable DELLA mutant protein in root epidermis interferes with iron acquisition. Hence, spatial distribution of DELLAs in roots is essential to fine-tune the adaptive responses to iron availability.
铁是大多数生物的必需元素。植物从根际获取铁,并进化出不同的生化和发育反应来适应低铁环境。在拟南芥中,FIT 编码一个碱性螺旋-环-螺旋转录因子,在缺铁时激活根表皮中铁吸收基因的表达。在这里,我们报告赤霉素(GA)信号 DELLA 阻遏物在适应缺铁条件的过程中起到了重要作用。当铁的供应减少时,DELLAs 在根分生组织中积累,从而抑制根的生长,同时逐渐从根分化区的表皮细胞中被排除。这种从铁吸收部位排除 DELLA 会使 FIT 摆脱 DELLA 依赖性抑制,从而促进铁的摄取。与这一机制一致的是,在根表皮中表达一种非 GA 降解的 DELLA 突变蛋白会干扰铁的摄取。因此,DELLAs 在根中的空间分布对于精细调节对铁可用性的适应性反应至关重要。