Proteomic analysis of Medicago truncatula root plastids |
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Authors: | Zeina Daher Ghislaine Recorbet Benoît Valot Frank Robert Thierry Balliau Sophie Potin Benoît Schoefs Eliane Dumas‐Gaudot |
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Affiliation: | 1. UMR 1088 INRA/CNRS 5184/UB Plante‐Microbe‐Environnement, INRA‐CMSE, Dijon, France;2. UMR de Génétique Végétale, Plate‐forme de Protéomique, Ferme du Moulon, Gif‐sur‐Yvette, France |
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Abstract: | Despite the recognized importance of non‐photosynthetic plastids in a wide array of plant processes, the root plastid proteome of soil‐grown plants still remains to be explored. In this study, we used a protocol allowing the isolation of Medicago truncatula root plastids with sufficient protein recovery and purity for their subsequent in‐depth analysis by nanoscale capillary LC‐MS/MS. Besides providing the first picture of a root plastid proteome, the results obtained highlighted the identification of 266 protein candidates whose functional distribution mainly resembled that of wheat endosperm amyloplasts and tobacco proplastids together with displaying major differences to those reported for chloroplasts. Most of the identified proteins have a role in nucleic acid‐related processes (16%), carbohydrate (15%) and nitrogen/sulphur (12%) metabolisms together with stress response mechanisms (10%). It is noteworthy that BLAST searches performed against the proteins reported in different plastidomes allowed detecting 30 putative root plastid proteins for which homologues were previously unsuspected as plastid‐located, most of them displaying a common putative role in participating in the plant cell responses against abiotic and/or biotic stresses. Taken together, the data obtained provide new insights into the functioning of root plastids and reinforce the emerging idea for an important role of these organelles in sustaining plant defence reactions. |
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Keywords: | Defence‐related proteins GeLC‐MS Membrane proteins MS Plant organelles Plant proteomics |
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