Mediation of Zinc and Iron Accumulation in Maize by ZmIRT2, a Novel Iron-Regulated Transporter.

Suzhen Li, Zizhao Song, Xiaoqing Liu, Xiaojin Zhou, Wenzhu Yang, Jingtang Chen, Rumei Chen
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引用次数: 1

Abstract

Iron (Fe) is an essential micronutrient for plant growth. Iron-regulated transporters (IRTs) play important roles in Fe2+ uptake and transport in strategy I plants. Maize (Zea mays) belongs to a strategy II plant, in which mugineic acid (MA)-Fe3+ uptake is mainly carried out by Yellow Stripe 1 (YS1). However, ZmIRT1 was previously identified by our laboratory. In this study, we isolated a novel gene from maize (ZmIRT2), which is highly homologous to OsIRT2 and ZmIRT1. ZmIRT2 was expressed in roots and anther and was induced by Fe and zinc (Zn) deficiencies. ZmIRT2-GFP fusion protein localized to the plasma membrane and endoplasmic reticulum. ZmIRT2 reversed growth defects involving Zn and Fe uptake in mutant yeast. ZmIRT2 overexpression in maize led to elevated Zn and Fe levels in roots, shoots and seeds of transgenic plants. Transcript levels of ZmIRT1 were elevated in roots, while levels of YS1 were reduced in shoots of ZmIRT2 transgenic plants. Our results imply that ZmIRT2 may function solely with ZmIRT1 to mediate Fe uptake in roots. ZmIRT1, ZmIRT2 and ZmYS1 may function in a cooperative manner to maintain Zn and Fe homeostasis in ZmIRT2 overexpressing plants. Furthermore, ZmIRT2 could be used in fortification efforts to elevate Zn and Fe levels in crop plants.

新型铁调控转运蛋白ZmIRT2介导玉米锌铁积累
铁(Fe)是植物生长必需的微量元素。铁调节转运蛋白(IRTs)在策略ⅰ植物对铁离子的吸收和转运中起着重要作用。玉米(Zea mays)属于策略II型植物,其对mugineic acid (MA)-Fe3+的吸收主要由黄条1 (Yellow Stripe 1, YS1)完成。然而,ZmIRT1之前被我们的实验室发现。在这项研究中,我们从玉米中分离到一个新的基因(ZmIRT2),它与OsIRT2和ZmIRT1高度同源。ZmIRT2在根和花药中表达,由缺铁和缺锌诱导。定位于质膜和内质网的ZmIRT2-GFP融合蛋白。ZmIRT2逆转了突变酵母中锌和铁摄取的生长缺陷。ZmIRT2在玉米中的过表达导致转基因植株根、芽和种子中Zn和Fe水平升高。ZmIRT2转基因植株的根中ZmIRT1转录本水平升高,而茎中YS1转录本水平降低。我们的研究结果表明,ZmIRT2可能单独与ZmIRT1一起调节根的铁吸收。ZmIRT1、ZmIRT2和ZmYS1可能协同发挥作用,维持ZmIRT2过表达植物中锌和铁的稳态。此外,ZmIRT2可用于提高作物锌和铁水平的强化措施。
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