BioQuant Center, University of Heidelberg, D-69120 Heidelberg, Germany.
Plant Cell. 2012 Feb;24(2):724-37. doi: 10.1105/tpc.111.095042. Epub 2012 Feb 28.
The essential micronutrients Fe and Zn often limit plant growth but are toxic in excess. Arabidopsis thaliana ZINC-INDUCED FACILITATOR1 (ZIF1) is a vacuolar membrane major facilitator superfamily protein required for basal Zn tolerance. Here, we show that overexpression of ZIF1 enhances the partitioning into vacuoles of the low molecular mass metal chelator nicotianamine and leads to pronounced nicotianamine accumulation in roots, accompanied by vacuolar buildup of Zn. Heterologous ZIF1 protein localizes to vacuolar membranes and enhances nicotianamine contents of yeast cells engineered to synthesize nicotianamine, without complementing a Zn-hypersensitive mutant that additionally lacks vacuolar membrane Zn(2+)/H(+) antiport activity. Retention in roots of Zn, but not of Fe, is enhanced in ZIF1 overexpressors at the expense of the shoots. Furthermore, these lines exhibit impaired intercellular Fe movement in leaves and constitutive Fe deficiency symptoms, thus phenocopying nicotianamine biosynthesis mutants. Hence, perturbing the subcellular distribution of the chelator nicotianamine has profound, yet distinct, effects on Zn and Fe with respect to their subcellular and interorgan partitioning. The zif1 mutant is also hypersensitive to Fe deficiency, even in media lacking added Zn. Therefore, accurate levels of ZIF1 expression are critical for both Zn and Fe homeostasis. This will help to advance the biofortification of crops.
必需的微量营养素铁和锌通常会限制植物生长,但过量时会有毒性。拟南芥 ZINC-INDUCED FACILITATOR1(ZIF1)是一种液泡膜主要易化超家族蛋白,是基础锌耐受所必需的。在这里,我们表明过表达 ZIF1 增强了低分子量金属螯合剂烟酰胺的液泡分配,并导致根中明显的烟酰胺积累,同时伴随着锌在液泡中的积累。异源 ZIF1 蛋白定位于液泡膜,并增强了合成烟酰胺的酵母细胞中的烟酰胺含量,而无需补充另外缺乏液泡膜 Zn(2+)/H(+)反向转运活性的 Zn 敏感突变体。在 ZIF1 过表达植株中,锌而不是铁在根中的保留增强,这是以牺牲地上部分为代价的。此外,这些系在叶片中表现出细胞间铁运动受损和组成型缺铁症状,因此模拟了烟酰胺生物合成突变体。因此,干扰螯合剂烟酰胺的亚细胞分布对锌和铁的亚细胞和器官间分配有深远而不同的影响。zif1 突变体对缺铁也很敏感,即使在没有添加锌的培养基中也是如此。因此,ZIF1 表达水平的准确控制对于锌和铁的体内平衡都很关键。这将有助于推进作物的生物强化。