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镉暴露杨树植株蛋白质表达的定量变化。

Quantitative changes in protein expression of cadmium-exposed poplar plants.

作者信息

Kieffer Pol, Dommes Jacques, Hoffmann Lucien, Hausman Jean-François, Renaut Jenny

机构信息

Department Environment and Agrobiotechnologies, Centre de Recherche Public-Gabriel Lippmann, Belvaux, Luxembourg.

出版信息

Proteomics. 2008 Jun;8(12):2514-30. doi: 10.1002/pmic.200701110.

Abstract

Cadmium (Cd) pollution is a worldwide major concern having, among others, deleterious effects on plants. In the present work, the effects of a 20 microM Cd exposure in hydroponics culture during 14 days were evaluated in young poplar leaves. Proteins were analysed by 2-D DIGE, followed by MALDI-TOF-TOF identification. Additionally, growth and other physiological parameters were monitored during the experiment. Treated plants exhibited an inhibition of growth and visual symptoms appeared after 7 days. A significant accumulation of Cd in all organs was recorded by ICP-MS analysis. A number of changes in the expression of proteins with various functions were identified; in particular a decreased abundance of oxidative stress regulating proteins, whereas pathogenesis-related proteins showed a drastic increase in abundance. Furthermore, a large number of proteins involved in carbon metabolism showed a decrease in abundance, while proteins involved in remobilizing carbon from other energy sources were upregulated. In conclusion, the negative effect of Cd could be explained by a deleterious effect on protein expression from the primary carbon metabolism and from the oxidative stress response mechanism. Accumulation of Cd in stems of poplar, coupled with a low impact of Cd on physiological parameters, promotes the use of poplar trees for phytoremediation purposes.

摘要

镉(Cd)污染是一个全球主要关注的问题,对植物有诸多有害影响。在本研究中,评估了在水培条件下20微摩尔镉暴露14天对杨树幼叶的影响。通过二维差异凝胶电泳(2-D DIGE)分析蛋白质,随后进行基质辅助激光解吸电离飞行时间串联质谱(MALDI-TOF-TOF)鉴定。此外,在实验过程中监测生长和其他生理参数。处理后的植株生长受到抑制,7天后出现明显症状。通过电感耦合等离子体质谱(ICP-MS)分析记录到所有器官中镉的显著积累。鉴定出多种具有不同功能的蛋白质表达发生了变化;特别是氧化应激调节蛋白丰度降低,而病程相关蛋白丰度急剧增加。此外,大量参与碳代谢的蛋白质丰度下降,而参与从其他能量来源重新调动碳的蛋白质上调。总之,镉的负面影响可以通过对初级碳代谢和氧化应激反应机制中蛋白质表达的有害作用来解释。杨树茎中镉的积累,以及镉对生理参数的低影响,促进了杨树在植物修复中的应用。

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