Departament de Bioquímica i Biologia Molecular and ERI Biotecmed, Universitat de València, Av. Doctor Moliner, 50, ES-46100, Burjassot, Valencia, Spain.
Instituto de Biología Molecular y Celular de Plantas (CSIC-Universidad Politécnica de Valencia), C/Ingeniero Fausto Elio, s/n. 46022, Valencia, Spain.
Sci Rep. 2019 Mar 15;9(1):4648. doi: 10.1038/s41598-018-38005-4.
Copper (Cu) deficiency affects iron (Fe) homeostasis in several plant processes, including the increased Fe requirements due to cuproprotein substitutions for the corresponding Fe counterpart. Loss-of-function mutants from Arabidopsis thaliana high affinity copper transporter COPT5 and Fe transporters NATURAL RESISTANCE-ASSOCIATED MACROPHAGE PROTEIN 3/4 (NRAMP3 and NRAMP4) were used to study the interaction between metals internal pools. A physiological characterisation showed that the copt5 mutant is sensitive to Fe deficiency, and that nramp3nramp4 mutant growth was severely affected under limiting Cu. By a transcriptomic analysis, we observed that NRAMP4 expression was highly induced in the copt5 mutant under Cu deficiency, while COPT5 was overexpressed in the nramp3nramp4 mutant. As a result, an enhanced mobilisation of the vacuolar Cu or Fe pools, when the other metal export through the tonoplast is impaired in the mutants, has been postulated. However, metals coming from internal pools are not used to accomplish the increased requirements that derive from metalloprotein substitution under metal deficiencies. Instead, the metal concentrations present in aerial parts of the copt5 and nramp3nramp4 mutants conversely show compensated levels of these two metals. Together, our data uncover an interconnection between Cu and Fe vacuolar pools, whose aim is to fulfil interorgan metal translocation.
铜(Cu)缺乏会影响植物的多个过程中的铁(Fe)稳态,包括由于铜蛋白取代相应的Fe 对应物而增加的 Fe 需求。拟南芥高亲和力铜转运蛋白 COPT5 和 Fe 转运蛋白天然抗性相关巨噬细胞蛋白 3/4(NRAMP3 和 NRAMP4)的功能丧失突变体被用于研究金属内部池之间的相互作用。生理特性表明,copt5 突变体对 Fe 缺乏敏感,而 nramp3nramp4 突变体在 Cu 限制下的生长受到严重影响。通过转录组分析,我们观察到 Cu 缺乏时 NRAMP4 在 copt5 突变体中高度诱导表达,而 COPT5 在 nramp3nramp4 突变体中过表达。因此,当通过质膜的另一种金属外排受到突变体的损害时,推测会增强液泡 Cu 或 Fe 池的动员。然而,来自内部池的金属不会用于满足金属缺乏时金属蛋白取代产生的增加需求。相反,copt5 和 nramp3nramp4 突变体地上部分的金属浓度显示出这两种金属的补偿水平。总之,我们的数据揭示了 Cu 和 Fe 液泡池之间的相互联系,其目的是满足器官间的金属转运。