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Mutations in Arabidopsis Yellow Stripe-Like1 and Yellow Stripe-Like3 Reveal Their Roles in Metal Ion Homeostasis and Loading of Metal Ions in Seeds

机译:拟南芥黄色条纹样和黄色条纹样3的突变揭示了它们在金属离子稳态和种子中金属离子负载中的作用

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摘要

Here, we describe two members of the Arabidopsis (Arabidopsis thaliana) Yellow Stripe-Like (YSL) family, AtYSL1 and AtYSL3. The YSL1 and YSL3 proteins are members of the oligopeptide transporter family and are predicted to be integral membrane proteins. YSL1 and YSL3 are similar to the maize (Zea mays) YS1 phytosiderophore transporter (ZmYS1) and the AtYSL2 iron (Fe)-nicotianamine transporter, and are predicted to transport metal-nicotianamine complexes into cells. YSL1 and YSL3 mRNAs are expressed in both root and shoot tissues, and both are regulated in response to the Fe status of the plant. β-Glucuronidase reporter expression, driven by YSL1 and YSL3 promoters, reveals expression patterns of the genes in roots, leaves, and flowers. Expression was highest in senescing rosette leaves and cauline leaves. Whereas the single mutants ysl1 and ysl3 had no visible phenotypes, the ysl1ysl3 double mutant exhibited Fe deficiency symptoms, such as interveinal chlorosis. Leaf Fe concentrations are decreased in the double mutant, whereas manganese, zinc, and especially copper concentrations are elevated. In seeds of double-mutant plants, the concentrations of Fe, zinc, and copper are low. Mobilization of metals from leaves during senescence is impaired in the double mutant. In addition, the double mutant has reduced fertility due to defective anther and embryo development. The proposed physiological roles for YSL1 and YSL3 are in delivery of metal micronutrients to and from vascular tissues.
机译:在这里,我们描述了拟南芥(Arabidopsis thaliana)黄色条纹状(YSL)家族的两个成员AtYSL1和AtYSL3。 YSL1和YSL3蛋白是寡肽转运蛋白家族的成员,并被认为是完整的膜蛋白。 YSL1和YSL3与玉米(Zea mays)YS1植物铁载体(ZmYS1)和AtYSL2铁(Fe)-烟碱胺转运蛋白相似,并有望将金属烟碱胺络合物转运到细胞中。 YSL1和YSL3 mRNA在根和芽组织中均表达,并且都响应植物的铁状态而受到调节。由YSL1和YSL3启动子驱动的β-葡萄糖醛酸苷酶报告基因表达揭示了该基因在根,叶和花中的表达模式。在衰老的莲座丛叶和茎生叶中表达最高。单个突变体ysl1和ysl3没有可见的表型,而ysl1ysl3双突变体则表现出铁缺乏症状,如小肠萎黄。在双重突变体中,叶片铁的浓度降低,而锰,锌,尤其是铜的浓度升高。在双突变植物的种子中,铁,锌和铜的浓度很低。在双突变体中,衰老过程中叶片中金属的动员受到损害。另外,由于花药和胚胎发育不良,双突变体的繁殖力降低。提出的YSL1和YSL3的生理作用是在金属微营养素与血管组织之间的传递中。

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