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Effect of water stress on lupin stem protein analysed by two-dimensional gel electrophoresis

机译:二维凝胶电泳分析水分胁迫对羽扇豆干蛋白的影响

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Lupinus albus plants can withstand severe drought stress and show signs of recovery 24 h after rewatering (RW). Two-dimensional gel electrophoresis was used to evaluate the effect of water deficit (WD) on the protein composition of the two components of the lupin stem (stele and cortex). This was performed at three distinct stress levels: an early stage, a severe WD, and early recovery. Protein characterisation was performed through mass spectrometric partial sequencing. Modifications in the protein expression were first noticed at 3 days of withholding water, when the plant water status was still unaffected but some decrease in the relative soil water content had already occurred. An increase in serine proteases, possibly associated with WD sensing, was an early alteration induced by WD. When the stress severity increased, a larger number of stem proteins were affected. Immunophilin, serine protease and cysteine protease (well-known components of animal sensing pathways) were some of these proteins. The simultaneous expression of proteases and protease inhibitors that reacted differently to the stress level and to RW was found. Although the level of protease inhibitors was significantly raised, RW did not cause de novo expression of proteins. Many amino acid sequences did not match known sequences of either protein or expressed sequence tag databases. This emphasises the largely unknown nature of stem proteins. Nevertheless, some important clues regarding the way the lupin plant copes with WD were revealed.
机译:羽扇豆植株可以承受严重的干旱胁迫,并且在补水(RW)后24小时显示出恢复的迹象。二维凝胶电泳用于评估缺水(WD)对羽扇豆茎两个成分(硬皮和皮层)蛋白质组成的影响。这是在三个不同的压力水平下进行的:早期,严重WD和早期恢复。通过质谱部分测序进行蛋白质表征。蛋白质的表达发生变化首先是在停水3天后发现的,当时植物的水分状况仍然没有受到影响,但是相对土壤含水量已经出现了一些下降。丝氨酸蛋白酶的增加,可能与WD感应有关,是WD引起的早期改变。当胁迫严重性增加时,大量的干蛋白受到影响。免疫蛋白,丝氨酸蛋白酶和半胱氨酸蛋白酶(动物传感途径的众所周知的成分)就是其中的一些蛋白。发现同时表达与应激水平和RW反应不同的蛋白酶和蛋白酶抑制剂。尽管蛋白酶抑制剂的水平显着提高,但RW并没有引起蛋白质的从头表达。许多氨基酸序列与蛋白质或表达的序列标签数据库的已知序列均不匹配。这强调了干蛋白的本质未知的性质。然而,揭示了有关羽扇豆植物应对WD方式的一些重要线索。

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