Henriques Rossana, Jásik Ján, Klein Markus, Martinoia Enrico, Feller Urs, Schell Jeff, Pais Maria S, Koncz Csaba
ICAT, Faculdade de Ciências da Universidade de Lisboa, Portugal.
Plant Mol Biol. 2002 Nov;50(4-5):587-97. doi: 10.1023/a:1019942200164.
IRT1 and IRT2 are members of the Arabidopsis ZIP metal transporter family that are specifically induced by iron deprivation in roots and act as heterologous suppressors of yeast mutations inhibiting iron and zinc uptake. Although IRT1 and IRT2 are thought to perform redundant functions as root-specific metal transporters, insertional inactivation of the IRT1 gene alone results in typical symptoms of iron deficiency causing severe leaf chlorosis and lethality in soil. The irt1 mutation is characterized by specific developmental defects, including a drastic reduction of chloroplast thylakoid stacking into grana and lack of palisade parenchyma differentiation in leaves, reduced number of vascular bundles in stems, and irregular patterns of enlarged endodermal and cortex cells in roots. Pulse labeling with 59Fe through the root system shows that the irt1 mutation reduces iron accumulation in the shoots. Short-term labeling with 65Zn reveals no alteration in spatial distribution of zinc, but indicates a lower level of zinc accumulation. In comparison to wild-type, the irt1 mutant responds to iron and zinc deprivation by altered expression of certain zinc and iron transporter genes, which results in the activation of ZIP1 in shoots, reduction of ZIP2 transcript levels in roots, and enhanced expression of IRT2 in roots. These data support the conclusion that IRT1 is an essential metal transporter required for proper development and regulation of iron and zinc homeostasis in Arabidopsis.
IRT1和IRT2是拟南芥ZIP金属转运蛋白家族的成员,它们在根中由缺铁特异性诱导,并作为抑制铁和锌吸收的酵母突变的异源抑制因子发挥作用。尽管IRT1和IRT2被认为作为根特异性金属转运蛋白发挥冗余功能,但仅IRT1基因的插入失活就会导致缺铁的典型症状,在土壤中引起严重的叶片黄化和致死。irt1突变的特征是特定的发育缺陷,包括叶绿体类囊体堆叠成基粒的急剧减少以及叶片中栅栏薄壁组织分化的缺失、茎中维管束数量减少、根中内皮层和皮层细胞增大的不规则模式。通过根系用59Fe进行脉冲标记表明,irt1突变减少了地上部的铁积累。用65Zn进行短期标记显示锌的空间分布没有改变,但表明锌积累水平较低。与野生型相比,irt1突变体通过某些锌和铁转运蛋白基因表达的改变对铁和锌缺乏作出反应,这导致地上部ZIP1的激活、根中ZIP2转录水平的降低以及根中IRT2表达的增强。这些数据支持了IRT1是拟南芥正常发育以及铁和锌稳态调节所需的必需金属转运蛋白这一结论。