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Quantitative proteomics of Arabidopsis shoot microsomal proteins reveals a cross-talk between excess zinc and iron deficiency

机译:拟南芥芽微粒体蛋白的定量蛋白质组学揭示了过量锌与铁缺乏之间的串扰

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摘要

Iron (Fe) deficiency significantly effects plant growth and development. Plant symptoms under excess zinc (Zn) resemble symptoms of Fe-deficient plants. To understand cross-talk between excess Zn and Fe deficiency, we investigated physiological parameters of Arabidopsis plants and applied iTRAQ-OFFGEL quantitative proteomic approach to examine protein expression changes in microsomal fraction from Arabidopsis shoots under those physiological conditions. Arabidopsis plants manifested shoot inhibition and chlorosis symptoms when grown on Fe-deficient media compared to basal MGRL solid medium. iTRAQ-OFFGEL approach identified 909 differentially expressed proteins common to all three biological replicates; the majority were transporters or proteins involved in photosynthesis, and ribosomal proteins. Interestingly, protein expression changes between excess Zn and Fe deficiency showed similar pattern. Further, the changes due to excess Zn were dramatically restored by the addition of Fe. To obtain biological insight into Zn and Fe cross-talk, we focused on transporters, where STP4 and STP13 sugar transporters were predominantly expressed and responsive to Fe-deficient conditions. Plants grown on Fe-deficient conditions showed significantly increased level of sugars. These results suggest that Fe deficiency might lead to the disruption of sugar synthesis and utilization.
机译:铁(Fe)缺乏严重影响植物的生长发育。过量锌(Zn)下的植物症状类似于缺铁植物的症状。为了了解过量的锌和铁缺乏之间的串扰,我们研究了拟南芥植物的生理参数,并应用iTRAQ-OFFGEL定量蛋白质组学方法来检查在那些生理条件下拟南芥芽的微粒体级分中的蛋白质表达变化。与基础MGRL固体培养基相比,拟南芥植物在缺铁培养基上生长时表现出芽抑制和萎黄症状。 iTRAQ-OFFGEL方法鉴定了所有三种生物学复制共有的909种差异表达蛋白。大多数是参与光合作用的转运蛋白或蛋白质,以及核糖体蛋白质。有趣的是,过量的锌和铁缺乏之间的蛋白质表达变化表现出相似的模式。此外,通过添加铁可显着地恢复由于过量锌引起的变化。为了获得有关锌和铁串扰的生物学见解,我们重点研究了转运蛋白,其中STP4和STP13糖转运蛋白主要表达并对缺铁条件产生响应。在缺铁条件下生长的植物显示糖水平显着增加。这些结果表明,铁缺乏可能导致糖的合成和利用中断。

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