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Gene atlas of iron-containing proteins in Arabidopsis thaliana
Authors:Jonathan Przybyla-Toscano  Clément Boussardon  Simon R. Law  Nicolas Rouhier  Olivier Keech
Affiliation:1. Department of Plant Physiology, Umeå Plant Science Centre, Umeå University, Umeå, S-90187 Sweden;2. Université de Lorraine, INRAE, IAM, Nancy, F-54000 France
Abstract:Iron (Fe) is an essential element for the development and physiology of plants, owing to its presence in numerous proteins involved in central biological processes. Here, we established an exhaustive, manually curated inventory of genes encoding Fe-containing proteins in Arabidopsis thaliana, and summarized their subcellular localization, spatiotemporal expression and evolutionary age. We have currently identified 1068 genes encoding potential Fe-containing proteins, including 204 iron-sulfur (Fe-S) proteins, 446 haem proteins and 330 non-Fe-S/non-haem Fe proteins (updates of this atlas are available at https://conf.arabidopsis.org/display/COM/Atlas+of+Fe+containing+proteins ). A fourth class, containing 88 genes for which iron binding is uncertain, is indexed as ‘unclear’. The proteins are distributed in diverse subcellular compartments with strong differences per category. Interestingly, analysis of the gene age index showed that most genes were acquired early in plant evolutionary history and have progressively gained regulatory elements, to support the complex organ-specific and development-specific functions necessitated by the emergence of terrestrial plants. With this gene atlas, we provide a valuable and updateable tool for the research community that supports the characterization of the molecular actors and mechanisms important for Fe metabolism in plants. This will also help in selecting relevant targets for breeding or biotechnological approaches aiming at Fe biofortification in crops.
Keywords:biofortification  Fe-containing protein  haem  iron-sulfur  subcellular compartments  transcriptomic
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