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首页> 外文期刊>Frontiers in Plant Science >Arabidopsis Glutaredoxin S17 Contributes to Vegetative Growth, Mineral Accumulation, and Redox Balance during Iron Deficiency
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Arabidopsis Glutaredoxin S17 Contributes to Vegetative Growth, Mineral Accumulation, and Redox Balance during Iron Deficiency

机译:缺铁期间拟南芥Glutaredoxin S17有助于营养生长,矿物质积累和氧化还原平衡

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摘要

Iron (Fe) is an essential mineral nutrient and a metal cofactor required for many proteins and enzymes involved in the processes of DNA synthesis, respiration, and photosynthesis. Iron limitation can have detrimental effects on plant growth and development. Such effects are mediated, at least in part, through the generation of reactive oxygen species (ROS). Thus, plants have evolved a complex regulatory network to respond to conditions of iron limitations. However, the mechanisms that couple iron deficiency and oxidative stress responses are not fully understood. Here, we report the discovery that an Arabidopsis thaliana monothiol glutaredoxin S17 (AtGRXS17) plays a critical role in the plants ability to respond to iron deficiency stress and maintain redox homeostasis. In a yeast expression assay, AtGRXS17 was able to suppress the iron accumulation in yeast ScGrx3/ScGrx4 mutant cells. Genetic analysis indicated that plants with reduced AtGRXS17 expression were hypersensitive to iron deficiency and showed increased iron concentrations in mature seeds. Disruption of AtGRXS17 caused plant sensitivity to exogenous oxidants and increased ROS production under iron deficiency. Addition of reduced glutathione rescued the growth and alleviates the sensitivity of atgrxs17 mutants to iron deficiency. These findings suggest AtGRXS17 helps integrate redox homeostasis and iron deficiency responses.
机译:铁(Fe)是一种必需的矿物质营养素,也是许多涉及DNA合成,呼吸作用和光合作用的蛋白质和酶所需的金属辅因子。铁的限制会对植物的生长发育产生不利影响。这种作用至少部分地通过活性氧(ROS)的产生来介导。因此,植物已经进化出一个复杂的调控网络来应对铁的限制条件。然而,结合铁缺乏和氧化应激反应的机制尚未完全了解。在这里,我们报道了一个发现,拟南芥单硫醇谷胱甘肽S17(AtGRXS17)在植物应对铁缺乏胁迫和维持氧化还原稳态的能力中起着至关重要的作用。在酵母表达分析中,AtGRXS17能够抑制酵母ScGrx3 / ScGrx4突变细胞中铁的积累。遗传分析表明,AtGRXS17表达降低的植物对铁缺乏症非常敏感,并显示出成熟种子中铁的含量增加。 AtGRXS17的破坏引起植物对外源氧化剂的敏感性,并在缺铁条件下增加了ROS的产生。添加还原型谷胱甘肽可以挽救生长,并减轻atgrxs17突变体对铁缺乏症的敏感性。这些发现表明AtGRXS17有助于整合氧化还原稳态和铁缺乏反应。

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