INSTITUTO DE INVESTIGACIONES EN ELECTRONICA, CONTROL Y PROCESAMIENTO DE SEÑALES
Unidad Ejecutora - UE
Comprehensive analysis of a metabolic model for lipid production in Rhodosporidium toruloides
GARELLI, FABRICIO; NUÑEZ, SEBASTIÁN; CASTAÑEDA, MARÍA TERESITA; DE BATTISTA, HERNÁN; VOGET, CLAUDIO; GARELLI, FABRICIO; CASTAÑEDA, MARÍA TERESITA; VOGET, CLAUDIO; NUÑEZ, SEBASTIÁN; DE BATTISTA, HERNÁN
JOURNAL OF BIOTECHNOLOGY
ELSEVIER SCIENCE BV
Año: 2018 vol. 280 p. 11 - 18
The yeast Rhodosporidium toruloides has been extensively studied for its application in biolipid production. The knowledge of its metabolism capabilities and the application of constraint-based flux analysis methodology provide useful information for process prediction and optimization. The accuracy of the resulting predictions is highly dependent on metabolic models. A metabolic reconstruction for R. toruloides metabolism has been recently published. On the basis of this model, we developed a curated version that unblocks the central nitrogen metabolism and, in addition, completes charge and mass balances in some reactions neglected in the former model. Then, a comprehensive analysis of network capability was performed with the curated model and compared with the published metabolic reconstruction. The flux distribution obtained by lipid optimization with flux balance analysis was able to replicate the internal biochemical changes that lead to lipogenesis in oleaginous microorganisms. These results motivate the development of a genome-scale model for complete elucidation of R. toruloides metabolism.