Plant Biology Graduate Program, University of Massachusetts, Amherst, Massachusetts 01003.
Department of Biology, University of Massachusetts, Amherst, Massachusetts 01003.
Plant Physiol. 2017 Nov;175(3):1254-1268. doi: 10.1104/pp.17.00821. Epub 2017 Sep 11.
The mechanisms of root iron uptake and the transcriptional networks that control root-level regulation of iron uptake have been well studied, but the mechanisms by which shoots signal iron status to the roots remain opaque. Here, we characterize an Arabidopsis () double mutant, (), which has lost the ability to properly regulate iron deficiency-influenced gene expression in both roots and shoots. In spite of markedly low tissue levels of iron, the double mutant does not up- and down-regulate iron deficiency-induced and -repressed genes. We have used grafting experiments to show that wild-type roots grafted to shoots do not initiate iron deficiency-induced gene expression, indicating that the shoots fail to send an appropriate long-distance signal of shoot iron status to the roots. We present a model to explain how impaired iron localization in leaf veins results in incorrect signals of iron sufficiency being sent to roots and affecting gene expression there. Improved understanding of the mechanism of long-distance iron signaling will allow improved strategies for the engineering of staple crops to accumulate additional bioavailable iron in edible parts, thus improving the iron nutrition of the billions of people worldwide whose inadequate diet causes iron deficiency anemia.
根铁吸收的机制和控制根水平铁吸收的转录网络已经得到了很好的研究,但 shoots 向 roots 发出铁状态信号的机制仍然不清楚。在这里,我们描述了一个拟南芥(Arabidopsis)双突变体(),它失去了在根和地上部正确调节缺铁影响基因表达的能力。尽管组织中铁的含量明显很低,但双突变体不会上调和下调缺铁诱导和抑制的基因。我们已经使用嫁接实验表明,野生型根嫁接到 突变体的地上部不会启动缺铁诱导的基因表达,表明 突变体地上部不能向根发送适当的 shoot 铁状态的长距离信号。我们提出了一个模型来解释为什么叶片叶脉中铁的定位受损会导致向根发送错误的铁充足信号并影响那里的基因表达。对长距离铁信号传递机制的更好理解将允许改进工程主食作物的策略,以在可食用部分积累更多可利用的铁,从而改善全球数十亿因饮食不当导致缺铁性贫血的人的铁营养状况。