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Proteomics Revealed Distinct Responses to Salinity between the Halophytes Suaeda maritima (L.) Dumort and Salicornia brachiata (Roxb)

机译:蛋白质组学揭示了盐酸盐苏地玛(L.)杜马特和Salicornia Brachiata(Roxb)之间的盐度不同的反应

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Plant resistance to salinity stress is one of the main challenges of agriculture. The comprehension of the molecular and cellular mechanisms involved in plant tolerance to salinity can help to contrast crop losses due to high salt conditions in soil. In this study, Salicornia brachiata and Suaeda maritima, two plants with capacity to adapt to high salinity levels, were investigated at proteome level to highlight the key processes involved in their tolerance to NaCl. With this purpose, plants were treated with 200 mM NaCl as optimal concentration and 500 mM NaCl as a moderate stressing concentration for 14 days. Indeed, 200 mM NaCl did not result in an evident stress condition for both species, although photosynthesis was affected (with a general up accumulation of photosynthesis-related proteins in S. brachiata under salinity). Our findings indicate a coordinated response to salinity in both the halophytes considered, under NaCl conditions. In addition to photosynthesis, heat shock proteins and peroxidase, expansins, signaling processes, and modulation of transcription/translation were affected by salinity. Interestingly, our results suggested distinct mechanisms of tolerance to salinity between the two species considered, with S. brachiata likely having a more efficient mechanism of response to NaCl.
机译:植物抵抗盐度压力是农业的主要挑战之一。对植物耐受性的分子和细胞机制的理解可以有助于对土壤中的高盐条件产生对比作物损失。在这项研究中,在蛋白质组的水平上研究了Salicornia Brachiata和Suaeda Maritima,一种适应高盐度水平的能力,以突出其对NaCl耐受性涉及的关键过程。为此目的,将植物用200mM NaCl作为最佳浓度和500mM NaCl处理,作为中等应力浓度为14天。实际上,虽然光合作用受到影响,但200mM NaCl并没有导致两种物种的明显应力条件我们的研究结果表明在NaCl条件下考虑的卤素物质中的盐度对盐度的协调反应。除了光合作用,热休克蛋白和过氧化物酶,膨胀素,信号传导过程和转录/翻译的调节还受盐度的影响。有趣的是,我们的结果表明两种所考虑的两种物种之间的盐度差异的明显机制,S.Brachiata可能具有更有效的反应机制对NaCl。

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