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Comparative Proteomic Analysis of Differentially Expressed Proteins in Shoots of Salicornia europaea under Different Salinity

机译:不同盐度下欧洲柳枝芽中差异表达蛋白质的比较蛋白质组学分析

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Soil salinity is a major abiotic stress that limits agriculture productivity worldwide. Salicornia europaea is a succulent annual euhalophyte and one of the most salt tolerant plant species. The elucidation of its salt tolerance mechanism is of significance for generating salt-tolerant crops. In this study, we provided high resolution of proteome reference maps of S. europaea shoot and obtained evidence on the salt tolerance mechanism by analyzing the proteomic responses of this plant to high salinity. Our results demonstrated significant variations existed in 196 out of 1880 protein spots detected on CBB stained 2-DE gels. Of these, 111 proteins were identified by mass spectrometry. Among them, the majority was energy production and conversion related proteins, followed by photosynthesis and carbohydrate metabolism associated enzymes. Analysis of protein expression patters revealed that energy production and ion homeostasis associated proteins played important roles for this plant salt tolerance ability. Hierarchical clustering results revealed many proteins were involved in S. europaea salt tolerance mechanism as a dynamic network. Finally, based on our proteomic results, we brought forward a possible schematic representation of mechanism associated with the systematic salt tolerance phenotype in S. europaea.
机译:土壤盐分是一种主要的非生物胁迫,限制了全球农业生产力。欧洲Salicornia europaea是一年生多肉植物,是最耐盐的植物之一。阐明其耐盐机制对产生耐盐作物具有重要意义。在这项研究中,我们通过分析该植物对高盐分的蛋白质组学响应,提供了欧洲链球菌芽的蛋白质组参考图的高分辨率,并获得了耐盐机理的证据。我们的结果表明,在CBB染色的2-DE凝胶上检测到的1880个蛋白质斑点中,有196个存在明显的变异。其中,通过质谱鉴定出111种蛋白质。其中,大多数是与能量产生和转化相关的蛋白质,其次是光合作用和碳水化合物代谢相关的酶。对蛋白质表达模式的分析表明,能量产生和离子稳态相关的蛋白质对此植物的耐盐能力具有重要作用。层次聚类结果表明,许多蛋白质作为动态网络参与了欧洲链球菌的耐盐性机制。最后,基于我们的蛋白质组学结果,我们提出了与欧洲链球菌系统耐盐表型相关的机制的可能示意图。

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