首页> 美国卫生研究院文献>Plant Physiology >Successful Reproduction Requires the Function of Arabidopsis YELLOW STRIPE-LIKE1 and YELLOW STRIPE-LIKE3 Metal-Nicotianamine Transporters in Both Vegetative and Reproductive Structures
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Successful Reproduction Requires the Function of Arabidopsis YELLOW STRIPE-LIKE1 and YELLOW STRIPE-LIKE3 Metal-Nicotianamine Transporters in Both Vegetative and Reproductive Structures

机译:成功的繁殖需要拟南芥属的YELLOW STRIPE-LIKE1和YELLOW STRIPE-LIKE3金属-尼古丁胺转运蛋白在营养和生殖结构中的功能

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摘要

Several members of the Yellow Stripe-Like (YSL) family of proteins are transporters of metals that are bound to the metal chelator nicotianamine or the related set of mugineic acid family chelators known as phytosiderophores. Here, we examine the physiological functions of three closely related Arabidopsis (Arabidopsis thaliana) YSL family members, AtYSL1, AtYSL2, and AtYSL3, to elucidate their role(s) in the allocation of metals into various organs of Arabidopsis. We show that AtYSL3 and AtYSL1 are localized to the plasma membrane and function as iron transporters in yeast functional complementation assays. By using inflorescence grafting, we show that AtYSL1 and AtYSL3 have dual roles in reproduction: their activity in the leaves is required for normal fertility and normal seed development, while activity in the inflorescences themselves is required for proper loading of metals into the seeds. We further demonstrate that the AtYSL1 and AtYSL2 proteins, when expressed from the AtYSL3 promoter, can only partially rescue the phenotypes of a ysl1ysl3 double mutant, suggesting that although these three YSL transporters are closely related and have similar patterns of expression, they have distinct activities in planta. In particular, neither AtYSL1 nor AtYSL2 is able to functionally complement the reproductive defects exhibited by ysl1ysl3 double mutant plants.
机译:黄色条纹样(YSL)蛋白质家族的几个成员是与金属螯合剂尼古丁胺或相关的一组古铜酸家族螯合剂(称为植物铁载体)结合的金属转运蛋白。在这里,我们检查了三个密切相关的拟南芥(Arabidopsis thaliana)YSL家族成员AtYSL1,AtYSL2和AtYSL3的生理功能,以阐明它们在将金属分配到拟南芥各个器官中的作用。我们显示AtYSL3和AtYSL1定位于质膜,并在酵母功能互补测定中充当铁转运蛋白。通过使用花序嫁接,我们显示AtYSL1和AtYSL3在繁殖中具有双重作用:正常生育力和正常种子发育需要它们在叶片中的活性,而适当地将金属负载到种子中则需要花序本身的活性。我们进一步证明,AtYSL1和AtYSL2蛋白从AtYSL3启动子表达时只能部分挽救ysl1ysl3双突变体的表型,这表明尽管这三个YSL转运蛋白密切相关且具有相似的表达模式,但它们具有不同的活性在植物中。特别是,AtYSL1和AtYSL2都不能在功能上补充ysl1ysl3双突变植物表现出的繁殖缺陷。

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