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Identification of Leaf Proteins Differentially Accumulated between Wheat Cultivars Distinct in Their Levels of Drought Tolerance

机译:不同小麦品种在耐旱水平上差异积累的叶片蛋白的鉴定

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摘要

The drought-tolerant ‘Ningchun 47’ (NC47) and drought-sensitive ‘Chinese Spring’ (CS) wheat (Triticum aestivum L.) cultivars were treated with different PEG6000 concentrations at the three-leaf stage. An analysis on the physiological and proteomic changes of wheat seedling in response to drought stress was performed. In total, 146 differentially accumulated protein (DAP) spots were separated and recognised using two-dimensional gel electrophoresis. In total, 101 DAP spots representing 77 unique proteins were identified by matrix-assisted laser desorption/ionisation time-of-flight mass spectrometry. These proteins were allocated to 10 groups according to putative functions, which were mainly involved in carbon metabolism (23.4%), photosynthesis/respiration (22.1%) and stress/defence/detoxification (18.2%). Some drought stress-related proteins in NC47, such as enolase, 6-phosphogluconate dehydrogenase, Oxygen-evolving enhancer protein 2, fibrillin-like protein, 2-Cys peroxiredoxin BAS1 and 70-kDa heat shock protein, were more upregulated than those in CS. Multivariate principal components analysis revealed obvious differences between the control and treatments in both NC47 and CS, while cluster analysis showed that the DAPs displayed five and six accumulation patterns in NC47 and CS, respectively. Protein–protein interaction network analysis showed that some key DAPs, such as 2-Cys peroxiredoxin BAS1, RuBisCO large subunit-binding protein, 50S ribosomal protein L1, 6-phosphogluconate dehydrogenase, glyceraldehyde 3-phosphate dehydrogenase isoenzyme and 70-kDa heat shock protein, with upregulated accumulation in NC47, had complex interactions with other proteins related to amino acid metabolism, carbon metabolism, energy pathway, signal transduction, stress/defence/detoxification, protein folding and nucleotide metabolism. These proteins could play important roles in drought-stress tolerance and contribute to the relatively stronger drought tolerance of NC47.
机译:在三叶期分别用不同浓度的PEG6000处理耐旱的'宁春47'(NC47)和干旱敏感的'中国春'(CS)小麦(Triticum aestivum L.)品种。分析了小麦幼苗对干旱胁迫的生理和蛋白质组学变化。总共,使用二维凝胶电泳分离并识别了146个差异累积蛋白(DAP)点。总共,通过基质辅助激光解吸/电离飞行时间质谱鉴定了代表77个独特蛋白质的101个DAP斑点。这些蛋白质按推定功能分为10个组,主要参与碳代谢(23.4%),光合作用/呼吸作用(22.1%)和应激/防御/解毒(18.2%)。与CS中的蛋白质相比,NC47中一些与干旱胁迫有关的蛋白质,例如烯醇酶,6-磷酸葡萄糖酸脱氢酶,产氧增强子蛋白质2,原纤维蛋白样蛋白质,2-Cys过氧化物类毒素BAS1和70 kDa热休克蛋白质的上调程度更高。 。多元主成分分析显示,NC47和CS中对照和处理之间存在明显差异,而聚类分析显示DAP在NC47和CS中分别显示5种和6种积累模式。蛋白质-蛋白质相互作用网络分析表明,一些关键的DAP,例如2-Cys过氧化物酶BAS1,RuBisCO大亚基结合蛋白,50S核糖体蛋白L1、6-磷酸葡萄糖酸脱氢酶,3-磷酸甘油醛脱氢酶同工酶和70 kDa热激蛋白。在NC47中具有上调的积累,与其他蛋白质的复杂相互作用与氨基酸代谢,碳代谢,能量途径,信号转导,应激/防御/解毒,蛋白质折叠和核苷酸代谢有关。这些蛋白质可能在耐旱性中发挥重要作用,并有助于NC47相对较强的耐旱性。

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