Jain Anshika, Dashner Zachary S, Connolly Erin L
Department of Biological Sciences, University of South Carolina, Columbia, SC, United States.
Department of Plant Science, The Pennsylvania State University, University Park, PA, United States.
Front Plant Sci. 2019 Nov 25;10:1449. doi: 10.3389/fpls.2019.01449. eCollection 2019.
Iron (Fe) is an essential nutrient for virtually all organisms, where it functions in critical electron transfer processes, like those involved in respiration. Photosynthetic organisms have special requirements for Fe due to its importance in photosynthesis. While the importance of Fe for mitochondria- and chloroplast-localized processes is clear, our understanding of the molecular mechanisms that underlie the trafficking of Fe to these compartments is not complete. Here, we describe the Arabidopsis mitochondrial iron transporters, MIT1 and MIT2, that belong to the mitochondrial carrier family (MCF) of transport proteins. MIT1 and MIT2 display considerable homology with known mitochondrial Fe transporters of other organisms. Expression of MIT1 or MIT2 rescues the phenotype of the yeast mutant, which is defective in mitochondrial iron transport. Although the Arabidopsis and single mutants do not show any significant visible phenotypes, the double mutant displays embryo lethality. Analysis of a line revealed that MIT1 and MIT2 are essential for iron acquisition by mitochondria and proper mitochondrial function. In addition, loss of function results in mislocalization of Fe, which in turn causes upregulation of the root high affinity Fe uptake pathway. Thus, MIT1 and MIT2 are required for the maintenance of both mitochondrial and whole plant Fe homeostasis, which, in turn, is important for the proper growth and development of the plant.
铁(Fe)几乎是所有生物体必需的营养元素,它在关键的电子传递过程中发挥作用,如呼吸作用中涉及的那些过程。由于铁在光合作用中的重要性,光合生物对铁有特殊需求。虽然铁对线粒体和叶绿体定位过程的重要性是明确的,但我们对铁运输到这些细胞器的分子机制的理解并不完整。在这里,我们描述了拟南芥线粒体铁转运蛋白MIT1和MIT2,它们属于运输蛋白的线粒体载体家族(MCF)。MIT1和MIT2与其他生物体中已知的线粒体铁转运蛋白具有相当高的同源性。MIT1或MIT2的表达挽救了线粒体铁运输有缺陷的酵母突变体的表型。虽然拟南芥单突变体没有表现出任何明显的可见表型,但双突变体表现出胚胎致死性。对一个品系的分析表明,MIT1和MIT2对于线粒体获取铁和正常的线粒体功能至关重要。此外,功能丧失导致铁的定位错误,进而导致根高亲和力铁吸收途径的上调。因此,MIT1和MIT2是维持线粒体和整个植物铁稳态所必需的,而这反过来又对植物的正常生长和发育很重要。