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Recent advances in the analysis of metal hyperaccumulation and hypertolerance in plants using proteomics

机译:蛋白质组学在植物金属超富集和超耐受性分析中的最新进展

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摘要

Hyperaccumulator/hypertolerant plant species have evolved strategies allowing them to grow in metal-contaminated soils, where they accumulate high concentrations of heavy metals in their shoots without signs of toxicity. The mechanisms that allow enhanced metal uptake, root-to-shoot translocation and detoxification in these species are not fully understood. Complementary approaches such as transcriptomic-based DNA microarrays and proteomics have recently been used to gain insight into the molecular pathways evolved by metal hyperaccumulator/hypertolerant species. Proteomics has the advantage of focusing on the translated portion of the genome and it allows to analyze complex networks of proteins. This review discusses the recent analysis of metal hyperaccumulator/hypertolerant plant species using proteomics. Changes in photosynthetic proteins, sulfur, and glutathione metabolism, transport, biotic and xenobiotic defenses as well as the differential regulation of proteins involved in signaling and secondary metabolism are discussed in relation to metal hyperaccumulation. We also consider the potential contribution of several proteins to the hyperaccumulation phenotype.
机译:高蓄积性/高耐性植物物种已经进化出策略,使它们能够在金属污染的土壤中生长,在那里它们在芽中积累高浓度的重金属而没有毒性迹象。这些物种中增强金属吸收,从根到茎的转运和排毒的机制尚未完全了解。互补方法,例如基于转录组的DNA芯片和蛋白质组学,近来已被用于深入了解金属超富集性/高耐性物种进化的分子途径。蛋白质组学的优势是专注于基因组的翻译部分,它可以分析复杂的蛋白质网络。这篇综述讨论了使用蛋白质组学对金属超富集/高耐性植物物种的最新分析。讨论了光合蛋白,硫和谷胱甘肽代谢,运输,生物和异种生物防御的变化以及与金属过度富集有关的信号和次级代谢中蛋白质的差异调节。我们还考虑了几种蛋白质对超积累表型的潜在贡献。

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