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Dive into the research topics where Francisco Miguel Canovas-Ramos is active.

Publication


Featured researches published by Francisco Miguel Canovas-Ramos.


Plant and Cell Physiology | 2018

The arogenate dehydratase ADT2 is essential for seed development in Arabidopsis

Jorge El-Azaz Ciudad; Francisco Miguel Canovas-Ramos; Concepción Ávila; Fernando De la Torre Fazio

Phenylalanine (Phe) biosynthesis in plants is a key process, as Phe serves as a precursor of proteins and phenylpropanoids. The prephenate pathway connects chorismate, the final product of the shikimate pathway, with the biosynthesis of Phe and tyrosine. Two alternative routes of Phe biosynthesis have been reported: one depending on arogenate, and the other on phenylpyruvate. Whereas the arogenate pathway is considered the main route, the role of the phenylpyruvate pathway remains unclear. Here, we report that a deficiency in ADT2, a bifunctional arogenate dehydratase (ADT)/prephenate dehydratase (PDT) enzyme, causes embryo arrest and seed abortion. This result makes a clear distinction between the essential role of ADT2 and the five remaining ADT genes from Arabidopsis, which display mostly overlapping functions. We have found that PHA2, a monofunctional PDT from yeast, restores the adt2 phenotype when it is targeted within the plastids, but not when is expressed in the cytosol. Similar results can be obtained by expressing ADT3, a monofunctional ADT. These results suggest that Phe can be synthesized from phenylpyruvate or arogenate when the bifunctional ADT2 is replaced by other ADT or PDT enzymes during seed formation, highlighting the importance of Phe biosynthesis for embryo development, and providing further insights into the plasticity of Phe biosynthesis.


Archive | 2018

Análisis transcriptómico de la eficiencia en la captación de nitrógeno y la producción de biomasa en pino marítimo (Pinus pinaster)

Francisco Ortigosa; José Miguel Valderrama-Martín; Concepción Ávila; Francisco Miguel Canovas-Ramos; Rafael A. Cañas


Archive | 2018

Maritime pine PpMYB8 directly co-regulates secondary cell wall architecture and the associated Phe-biosynthesis pathway

Fernando De la Torre Fazio; Jorge El-Azaz Ciudad; Mª Belén Pascual; Jean-François Trontin; Sandrine Debille; Francis Canlet; Concepción Ávila; Francisco Miguel Canovas-Ramos


Archive | 2018

Identificación y regulación transcripcional de genes arogenato deshidratasa implicados en la biosíntesis de kignina en pino marítimo

Jorge El-Azaz; Fernando de la Torre; María Belén Pascual; Sandrine Debille; Francis Canlet; Luc Harvengt; Jean-François Trontin; Concepción Ávila; Francisco Miguel Canovas-Ramos


Archive | 2018

PpNAC1, un regulador principal de la biosíntesis y utilización de fenilalanina en pino

María Belén Pascual; Maria Teresa Llebrés; Blanca Craven-Bartle; Rafael A. Cañas; Francisco Miguel Canovas-Ramos; Concepción Ávila


Archive | 2018

Determinación de parámetros cinéticos de una nueva glutamina sintetasa en Pinus pinaster

José Miguel Valderrama-Martín; Francisco Ortigosa; Concepción Ávila; Francisco Miguel Canovas-Ramos; Rafael A. Cañas


Archive | 2018

Nuevas aproximaciones a la asimilación del amonio en la conífera Pinus pinaster

Rafael A. Cañas; Francisco Ortigosa; José Miguel Valderrama-Martín; Concepción Ávila; Francisco Miguel Canovas-Ramos


Archive | 2018

Glutamato Sintasas de coníferas: estructura génica y estudios filogenéticos

Angel García-Gutiérrez; Francisco Miguel Canovas-Ramos; Concepción Ávila


Archive | 2017

PpNAC1, a main regulator of phenylalanine biosynthesis in p. Pinaster

Belen M Pascual; Maria Teresa Llebrés; Rafael A. Cañas; Francisco Miguel Canovas-Ramos; Concepción Ávila


Archive | 2017

Nitrogen metabolism and gene expression landscape in maritime pine

Rafael A. Cañas; Concepción Ávila; Francisco Miguel Canovas-Ramos

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