De novo RNA-Seq analysis of the oleauginous microalgae Ankistrodesmus sp. UCP0001: Gene identification and metabolic pathways reconstruction for the biosynthesis of fatty acids and triacylglycerols

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dc.contributor.author Castro, Juan C.
dc.contributor.author Maddox, J. Dylan
dc.contributor.author Paredes, Jae D.
dc.contributor.author Rodríguez, Hicler N.
dc.contributor.author Aguilar, Carla P.
dc.contributor.author Marapara, Jorge L.
dc.contributor.author Castro, Carlos G.
dc.contributor.author Casuso, María Z.
dc.contributor.author Cobos, Marianela
dc.date.issued 2017-05-15
dc.identifier.citation CASTRO, J., MADDOX, J., PAREDES, J., RODRIGUEZ, H., AGUILAR, C., MARAPARA, J., CASTRO, C., CASUSO, M., & COBOS, M. (2017). DE NOVO RNA-SEQ ANALYSIS OF THE OLEAGINOUS MICROALGAE Ankistrodesmus sp. UCP0001: GENE IDENTIFICATION AND METABOLIC PATHWAYS RECONSTRUCTION FOR THE BIOSYNTHESIS OF FATTY ACIDS AND TRIACYLGLYCEROLS es_ES
dc.identifier.issn 0972-2025
dc.identifier.uri http://repositorio.ucp.edu.pe/handle/UCP/883
dc.description.abstract Microalgae have great potential as feedstock to produce next-generation biofuels. The scarceness of genomic level information, however, prevents the rational de novo microalgae strain design. In this research, we describe the next-generation sequencing, de novo assembly, and functional annotation of the transcriptome of Ankistrodesmus sp. UCP0001. In total 48,867,830 high-quality sequence reads were de novo assembled into 38,414 unigenes (mean length = 508 bp, N50 = 1038 bp). Seventy-two percent of unigenes presented mapping information. Based on the KEGG pathway assignment, the fatty acids and the triacylglycerol biosynthesis pathways were reconstructed. Our results demonstrate that the synergy among high-throughput sequencing technologies and appropriate bioinformatics tools provides a fast, low-cost, and effective approach to generate invaluable functional genomic information in non-model microalgae species (e.g., Ankistrodesmus sp.). With the de novo assembled and annotated transcriptome we have successfully identified genes encoding enzymes and reconstructed metabolic pathways for the biosynthesis of fatty acids and triacylglycerols in this microalgae species. This genetic information could be used for the de novo microalgae strain design with desirable characteristics to produce biodiesel and capabilities for the biosynthesis of others valuable bioactive compounds of interest to the pharmacological, food, and cosmetic industries. es_ES
dc.format application/pdf es_ES
dc.language.iso eng es_ES
dc.publisher Plant Cell Biotechnology and Molecular Biology 18(5-6): 219-230 es_ES
dc.rights info:eu-repo/semantics/restrictedAccess es_ES
dc.source Plant Cell Biotechnology and Molecular Biology es_ES
dc.subject biodiesel es_ES
dc.subject high-throughput sequencing es_ES
dc.subject lipid biosynthesis es_ES
dc.subject oleaginous microalgae es_ES
dc.subject transcriptome analysis es_ES
dc.title De novo RNA-Seq analysis of the oleauginous microalgae Ankistrodesmus sp. UCP0001: Gene identification and metabolic pathways reconstruction for the biosynthesis of fatty acids and triacylglycerols es_ES
dc.type info:eu-repo/semantics/article es_ES


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