Green Laura S, Rogers Elizabeth E
Departments of Biochemistry and Nutritional Sciences, University of Missouri, Columbia, MO 65211, USA.
Plant Physiol. 2004 Sep;136(1):2523-31. doi: 10.1104/pp.104.045633. Epub 2004 Aug 13.
The frd3 mutant of Arabidopsis exhibits constitutive expression of its iron uptake responses and is chlorotic. These phenotypes are consistent with defects either in iron deficiency signaling or in iron translocation and localization. Here we present several experiments demonstrating that a functional FRD3 gene is necessary for correct iron localization in both the root and shoot of Arabidopsis plants. Reciprocal grafting experiments with frd3 and wild-type Arabidopsis plants reveal that the phenotype of a grafted plant is determined by the genotype of the root, not by the genotype of the shoot. This indicates that FRD3 function is root-specific and points to a role for FRD3 in delivering iron to the shoot in a usable form. When grown under certain conditions, frd3 mutant plants overaccumulate iron in their shoot tissues. However, we demonstrate by direct measurement of iron levels in shoot protoplasts that intracellular iron levels in frd3 are only about one-half the levels in wild type. Histochemical staining for iron reveals that frd3 mutants accumulate high levels of ferric iron in their root vascular cylinder, the same tissues in which the FRD3 gene is expressed. Taken together, these results clearly indicate a role for FRD3 in iron localization in Arabidopsis. Specifically, FRD3 is likely to function in root xylem loading of an iron chelator or other factor necessary for efficient iron uptake out of the xylem or apoplastic space and into leaf cells.
拟南芥的frd3突变体表现出铁吸收反应的组成型表达且呈黄化现象。这些表型与铁缺乏信号传导缺陷或铁转运及定位缺陷一致。在此,我们展示了几个实验,证明功能性FRD3基因对于拟南芥植株根和地上部分中铁的正确定位是必需的。用frd3和野生型拟南芥植株进行的 reciprocal grafting实验表明,嫁接植株的表型由根的基因型决定,而非地上部分的基因型。这表明FRD3的功能是根特异性的,并指出FRD3在以可用形式将铁输送到地上部分中发挥作用。在特定条件下生长时,frd3突变体植株在其地上组织中过度积累铁。然而,我们通过直接测量地上部分原生质体中的铁水平证明,frd3细胞内的铁水平仅约为野生型的一半。铁的组织化学染色显示,frd3突变体在其根维管束中积累高水平的三价铁,而FRD3基因正是在相同组织中表达。综上所述,这些结果清楚地表明FRD3在拟南芥铁定位中发挥作用。具体而言,FRD3可能在根木质部装载铁螯合剂或其他对于将铁从木质部或质外体空间有效吸收并转运到叶细胞中所必需的因子方面发挥作用。