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Proteomic profiling of vetiver grass (Chrysopogon zizanioides) under 2,4,6‐trinitrotoluene (TNT) stress

机译:2,4,6-三硝基甲苯(TNT)胁迫下香根草(Chrysopogon zizanioides)的蛋白质组学分析

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Vetiver grass is an ideal plant for 2,4,6‐trinitrotoluene (TNT) phytoremediation, due to its ability to tolerate and metabolize TNT as previously reported. The current study is the first attempt to investigate the changes in the proteomic profile of a plant under TNT stress. Vetiver plants were grown in nutrient media with varying concentrations of TNT (0, 25, 50, and 100 mg L?1) for 10 days. Although the plants appeared healthy, significant biomass reductions (p = 0.0008) were observed in treated plants. Total proteins in the root decreased significantly (p = 0.0003). Proteomic analysis of root proteins revealed the downregulation of functional proteins involved in key cellular mechanisms such as transcription, ribosome biogenesis, nucleo‐cytoplasmic transport of proteins, protein glycosylation, and translation. Growth‐related proteins were downregulated; plant defense proteins were upregulated at lower TNT concentrations but downregulated at higher concentrations. Comprehensive understanding of changes in the proteomic profile provides important clues to the mechanism of TNT stress response and tolerance in vetiver.
机译:香根草是2,4,6-三硝基甲苯(TNT)植物修复的理想植物,因为它具有耐受和代谢TNT的能力,如先前报道。目前的研究是首次尝试研究TNT胁迫下植物蛋白质组学特征的变化。香根草植物在具有不同浓度TNT(0、25、50和100 mg L?1)的营养培养基中生长10天。尽管这些植物看起来很健康,但在处理过的植物中却观察到生物量显着减少(p = 0.0008)。根中的总蛋白质显着下降(p = 0.0003)。蛋白质组学分析的根蛋白揭示了参与关键细胞机制的功能蛋白的下调,例如转录,核糖体生物发生,蛋白的核胞质运输,蛋白糖基化和翻译。与生长相关的蛋白质被下调;植物防御蛋白在较低的TNT浓度上调,但在较高的TNT浓度下调。全面了解蛋白质组学特征的变化为香根草的TNT应激反应和耐受机制提供了重要线索。

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