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Differential proteomics: Effect of growth regulators on salt stress responses in safflower seedlings

机译:差分蛋白质组学:生长调节剂对红花幼苗盐应激反应的影响

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Productivity of safflower (Carthamus tinctorius L.) is markedly reduced by salt stress. This study is based on analysis of proteins profile of safflower plants treated with 200 mM NaCl, with exogenously applied salicylic acid (SA) and penconazole (PEN), as growth regulators. Plants were investigated through a gel-based proteomic approach, which resulted in the identification of 17 salt-responsive proteins related to different metabolic modifications. Of these, seven different proteins were up or down regulated by both SA and PEN, suggesting the synergistic and antagonistic effects of SA and PEN. The classification of differentially expressed proteins showed that salt-responsive proteins were mainly involved in photosynthesis, ion homeostasis, and oxidative stress response, as well as nitrogen, protein, and carbohydrate metabolism. The identified stress-responsive proteins in this study could pave the way to develop salt tolerance in safflower, thus sustaining its productivity under salinity. In addition, SA and PEN may be considered as a foliar application to ameliorate salinity effects, due to their low price and availability.
机译:红花(迦太基神经糖)的生产力通过盐胁迫显着降低。本研究基于分析用200mM NaCl处理的红花植物的蛋白质剖面,随着生长调节剂,外源施用的水杨酸(SA)和Penconazole(PEN)。通过基于凝胶的蛋白质组学方法研究植物,导致鉴定与不同代谢修饰有关的17个盐响应蛋白质。其中,由SA和笔调节七种不同的蛋白质,表明SA和笔的协同和拮抗作用。差异表达蛋白质的分类表明,盐响应蛋白主要涉及光合作用,离子稳态和氧化应激反应,以及氮,蛋白质和碳水化合物代谢。本研究中鉴定的应激响应蛋白可以铺平开发红麻种植耐盐性的方法,从而维持其在盐度下的生产率。此外,由于它们的价格低和可用性,SA和PEN可以被认为是改善盐度效应的叶面应用。

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