Artículos de revistas
Transcriptome analysis during ripening of table grape berry cv. Thompson Seedless
Fecha
2018-01-10Registro en:
Balic I, Vizoso P, Nilo-Poyanco R, Sanhueza D, Olmedo P, Sepu´lveda P, et al. (2018) Transcriptome analysis during ripening of table grape berry cv. Thompson Seedless. PLoS ONE 13(1): e0190087
1932-6203
WOS:000419689600031
ID de PubMed: 29320527
10.1371/journal.pone.0190087
Autor
Balic, Iván [Chile. Universidad Andrés Bello, Facultad Ciencias Biológicas, Centro de Biotecnología Vegetal]
Vizoso, Paula [Chile. Universidad Mayor. Facultad de Ciencias. Centro de Propagación y Conservación de Plantas - CEPROVEG]
Nilo Poyanco, Ricardo [Chile. FONDAP Centro de Regulación del Genoma]
Sanhueza, Dayan [Chile. Universidad Andrés Bello, Facultad Ciencias Biológicas, Centro de Biotecnología Vegetal]
Olmedo, Patricio [Chile. Universidad Andrés Bello, Facultad Ciencias Biológicas, Centro de Biotecnología Vegetal]
Sepúlveda, Pablo [Chile. Universidad Andrés Bello, Facultad Ciencias Biológicas, Centro de Biotecnología Vegetal]
Arriagada, César [Chile. Universidad de La Frontera. Facultad de Ciencias Agropecuarias y Forestales. Departamento de Ciencias Forestales. Laboratorio Biorremediación]
Defilippi, Bruno G. [Chile. Instituto de Investigaciones Agropecuarias - INIA]
Meneses, Claudio [Chile. Universidad Andrés Bello, Facultad Ciencias Biológicas, Centro de Biotecnología Vegetal]
Campos Vargas, Reinaldo [Chile. Universidad Andrés Bello, Facultad Ciencias Biológicas, Centro de Biotecnología Vegetal]
Institución
Resumen
Ripening is one of the key processes associated with the development of major organoleptic characteristics of the fruit. This process has been extensively characterized in climacteric fruit, in contrast with non-climacteric fruit such as grape, where the process is less understood. With the aim of studying changes in gene expression during ripening of non-climacteric fruit, an Illumina based RNA-Seq transcriptome analysis was performed on four developmental stages, between veraison and harvest, on table grapes berries cv Thompson Seedless. Functional analysis showed a transcriptional increase in genes related with degradation processes of chlorophyll, lipids, macromolecules recycling and nucleosomes organization; accompanied by a decrease in genes related with chloroplasts integrity and amino acid synthesis pathways. It was possible to identify several processes described during leaf senescence, particularly close to harvest. Before this point, the results suggest a high transcriptional activity associated with the regulation of gene expression, cytoskeletal organization and cell wall metabolism, which can be related to growth of berries and firmness loss characteristic to this stage of development. This high metabolic activity could be associated with an increase in the transcription of genes related with glycolysis and respiration, unexpected for a non-climacteric fruit ripening
Materias
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