Two-dimensional liquid chromatography technique coupled with mass spectrometry analysis to compare the proteomic response to cadmium stress in plants.

Plants are useful in studies of metal toxicity, because their physiological responses to different metals are correlated with the metal exposure dose and chemical state. Moreover a network of proteins and biochemical cascades that may lead to a controlled homeostasis of metals has been identified in...

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Publicado en:Journal of Biomedicine & Biotechnology pp. 567510 - 567511
Autores principales: Visioli G, Marmiroli M, Marmiroli N
Formato: research Journal Article
Publicado: Wiley-Blackwell 2010
Acceso en línea:Ver este registro en EBSCOhost
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      pub: Wiley-Blackwell
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        atl: Two-dimensional liquid chromatography technique coupled with mass spectrometry analysis to compare the proteomic response to cadmium stress in plants.
      aug:
        au:
          Visioli G
          Marmiroli M
          Marmiroli N
        affil: Division of Genetics and Environmental Biotechnologies, Department of Environmental Sciences, University of Parma, Viale G.P. Usberti 11/A, 43100 Parma, Italy.
      sug:
        subj:
          Cadmium
          Chromatography, Liquid Methods
          Plants Drug Effects
          Proteomics
          Mass Spectrometry Methods
          Stress, Physiological Drug Effects
          Proteins
          Proteins Metabolism
          Plant Leaves
          Plant Leaves Drug Effects
          Plant Proteins
          Plant Proteins Metabolism
          Plants
          Plants Metabolism
          Reproducibility of Results
      ab: Plants are useful in studies of metal toxicity, because their physiological responses to different metals are correlated with the metal exposure dose and chemical state. Moreover a network of proteins and biochemical cascades that may lead to a controlled homeostasis of metals has been identified in many plant species. This paper focuses on the global protein variations that occur in a Populus nigra spp. clone (Poli) that has an exceptional tolerance to the presence of cadmium. Protein separation was based on a two-dimensional liquid chromatography technique. A subset of 20 out of 126 peaks were identified as being regulated differently under cadmium stress and were fingerprinted by MALDI-TOF. Proteins that were more abundant in the treated samples were located in the chloroplast and in the mitochondrion, suggesting the importance of these organelles in the response and adaptation to metal stress.
      pubtype: Academic Journal
      doctype:
        research
        Journal Article
      ougenre: Article
    language: English
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