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Multivariate analysis of protein profiles of metal hyperaccumulator Thlaspi caerulescens accessions

机译:金属超蓄积拟南芥种质蛋白谱的多元分析

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摘要

Thlaspi caerulescens is increasingly acknowledged as one of the best models for studying metal hyperaccumulation in plants. In order to study the mechanisms underlying metal hyperaccumulation, we used proteomic profiling to identify differences in protein intensities among three T. caerulescens accessions with pronounced differences in tolerance, uptake and root to shoot translocation of Zn and Cd. Proteins were separated using two-dimensional electrophoresis and stained with SYPRO Orange. Intensity values and quality scores were obtained for each spot by using PDQuest software. Principal component analysis was used to test the separation of the protein profiles of the three plant accessions at various metal exposures, and to detect groups of proteins responsible for the differences. Spot sets representing individual proteins were analysed with the analysis of variance and non-parametric Kruskal-Wallis test. Clearest differences were seen among the Thlaspi accessions, while the effects of metal exposures were less pronounced. The 48 tentatively identified spots represent core metabolic functions (e.g. photosynthesis, nitrogen assimilation, carbohydrate metabolism) as well as putative signalling and regulatory functions. The possible roles of some of the proteins in heavy metal accumulation and tolerance are discussed.
机译:拟南芥(Thlaspi caerulescens)被公认为研究植物中金属超富集的最佳模型之一。为了研究金属过度富集的潜在机制,我们使用蛋白质组学分析来鉴定三种拟南芥(Ta。caerulescens)品种之间蛋白质强度的差异,其中锌,镉的耐受性,吸收性和根系易位。使用二维电泳分离蛋白质,并用SYPRO Orange染色。使用PDQuest软件获得每个斑点的强度值和质量得分。主成分分析用于测试在不同金属暴露下三种植物种质的蛋白质谱的分离,并检测引起差异的蛋白质组。用方差分析和非参数Kruskal-Wallis检验分析了代表单个蛋白质的斑点集。在Thlaspi品种之间观察到最明显的差异,而金属暴露的影响不太明显。初步确定的48个斑点代表了核心代谢功能(例如光合作用,氮同化,碳水化合物代谢)以及假定的信号传导和调节功能。讨论了某些蛋白质在重金属积累和耐受中的可能作用。

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