Antioxidants (Nov 2019)

Genome–Scale Metabolic Networks Shed Light on the Carotenoid Biosynthesis Pathway in the Brown Algae <i>Saccharina japonica</i> and <i>Cladosiphon okamuranus</i>

  • Delphine Nègre,
  • Méziane Aite,
  • Arnaud Belcour,
  • Clémence Frioux,
  • Loraine Brillet-Guéguen,
  • Xi Liu,
  • Philippe Bordron,
  • Olivier Godfroy,
  • Agnieszka P. Lipinska,
  • Catherine Leblanc,
  • Anne Siegel,
  • Simon M. Dittami,
  • Erwan Corre,
  • Gabriel V. Markov

DOI
https://doi.org/10.3390/antiox8110564
Journal volume & issue
Vol. 8, no. 11
p. 564

Abstract

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Understanding growth mechanisms in brown algae is a current scientific and economic challenge that can benefit from the modeling of their metabolic networks. The sequencing of the genomes of Saccharina japonica and Cladosiphon okamuranus has provided the necessary data for the reconstruction of Genome−Scale Metabolic Networks (GSMNs). The same in silico method deployed for the GSMN reconstruction of Ectocarpus siliculosus to investigate the metabolic capabilities of these two algae, was used. Integrating metabolic profiling data from the literature, we provided functional GSMNs composed of an average of 2230 metabolites and 3370 reactions. Based on these GSMNs and previously published work, we propose a model for the biosynthetic pathways of the main carotenoids in these two algae. We highlight, on the one hand, the reactions and enzymes that have been preserved through evolution and, on the other hand, the specificities related to brown algae. Our data further indicate that, if abscisic acid is produced by Saccharina japonica, its biosynthesis pathway seems to be different in its final steps from that described in land plants. Thus, our work illustrates the potential of GSMNs reconstructions for formalizing hypotheses that can be further tested using targeted biochemical approaches.

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