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OPT3是叶片与根系之间铁信号网络的一个组成部分,OPT3调控失常会导致种子中镉的过度积累。

OPT3 is a component of the iron-signaling network between leaves and roots and misregulation of OPT3 leads to an over-accumulation of cadmium in seeds.

作者信息

Mendoza-Cózatl David G, Xie Qingqing, Akmakjian Garo Z, Jobe Timothy O, Patel Ami, Stacey Minviluz G, Song Lihui, Demoin Dustin Wayne, Jurisson Silvia S, Stacey Gary, Schroeder Julian I

机构信息

Division of Biological Sciences, Cell and Developmental Biology Section and Center for Food and Fuel for the 21st Century, University of California, San Diego, La Jolla, CA 92093, USA; Division of Plant Sciences, C.S. Bond Life Sciences Center, University of Missouri, Columbia, MO 65211, USA.

Division of Biological Sciences, Cell and Developmental Biology Section and Center for Food and Fuel for the 21st Century, University of California, San Diego, La Jolla, CA 92093, USA; Department of Chemistry, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen, Fujian, 361005, China.

出版信息

Mol Plant. 2014 Sep;7(9):1455-1469. doi: 10.1093/mp/ssu067. Epub 2014 May 31.

Abstract

Plants and seeds are the main dietary sources of zinc, iron, manganese, and copper, but are also the main entry point for toxic elements such as cadmium into the food chain. We report here that an Arabidopsis oligopeptide transporter mutant, opt3-2, over-accumulates cadmium (Cd) in seeds and roots but, unexpectedly, under-accumulates Cd in leaves. The cadmium distribution in opt3-2 differs from iron, zinc, and manganese, suggesting a metal-specific mechanism for metal partitioning within the plant. The opt3-2 mutant constitutively up-regulates the Fe/Zn/Cd transporter IRT1 and FRO2 in roots, indicative of an iron-deficiency response. No genetic mutants that impair the shoot-to-root signaling of iron status in leaves have been identified. Interestingly, shoot-specific expression of OPT3 rescues the Cd sensitivity and complements the aberrant expression of IRT1 in opt3-2 roots, suggesting that OPT3 is required to relay the iron status from leaves to roots. OPT3 expression was found in the vasculature with preferential expression in the phloem at the plasma membrane. Using radioisotope experiments, we found that mobilization of Fe from leaves is severely affected in opt3-2, suggesting that Fe mobilization out of leaves is required for proper trace-metal homeostasis. When expressed in yeast, OPT3 does not localize to the plasma membrane, precluding the identification of the OPT3 substrate. Our in planta results show that OPT3 is important for leaf phloem-loading of iron and plays a key role regulating Fe, Zn, and Cd distribution within the plant. Furthermore, ferric chelate reductase activity analyses provide evidence that iron is not the sole signal transferred from leaves to roots in leaf iron status signaling.

摘要

植物和种子是锌、铁、锰和铜的主要膳食来源,但也是镉等有毒元素进入食物链的主要入口。我们在此报告,拟南芥寡肽转运体突变体opt3-2在种子和根中过度积累镉(Cd),但出乎意料的是,在叶片中镉积累不足。opt3-2中的镉分布不同于铁、锌和锰,这表明植物体内金属分配存在金属特异性机制。opt3-2突变体在根中组成型上调铁/锌/镉转运体IRT1和FRO2,这表明存在缺铁反应。尚未鉴定出损害叶片中铁状态从地上部到根部信号传导的基因突变体。有趣的是,OPT3在地上部的特异性表达挽救了镉敏感性,并补充了opt3-2根中IRT1的异常表达,这表明OPT3是将铁状态从叶片传递到根部所必需的。在维管系统中发现了OPT3的表达,在质膜处的韧皮部中优先表达。使用放射性同位素实验,我们发现opt3-2中叶片中铁的转运受到严重影响,这表明叶片中铁的转运对于适当的微量金属稳态是必需的。当在酵母中表达时,OPT3不会定位于质膜,这妨碍了对OPT3底物的鉴定。我们在植物体内的结果表明,OPT3对于叶片韧皮部中铁的装载很重要,并且在调节植物体内铁、锌和镉的分布中起关键作用。此外,铁螯合物还原酶活性分析提供了证据,表明铁不是叶片铁状态信号传导中从叶片传递到根部的唯一信号。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5cf/4153440/ae108148ee3a/mpphys_ssu067_f0001.jpg

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