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Article(5)
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Euphytica(1)
Frontiers in Plant Science(1)
Journal of Experimental Botany(1)
Plant Cell, Tissue and Organ Culture(1)
Plant Methods(1)
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Fisiología y materias afines(2)
Temas específicos de la historia natural de las plantas(2)
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Comparison of six different methods to calculate cell densities
ArticleAbstract: Background: For in vitro culture of plant and animal cells, one of the critical steps is to adjust tPalabras claves:Automated cell counter, Cell counting, Flow cytometry, Fluorospheres, Hemacytometer, image analysis, Microscopy, Microspore cultureAutores:A. Rivas-Sendra, Camacho-Fernández C., Hervás D., Marín M., Seguí-Simarro J.M.Fuentes:scopusEmbryogenic competence of microspores is associated with their ability to form a callosic, osmoprotective subintinal layer
ArticleAbstract: Microspore embryogenesis is an experimental morphogenic pathway with important applications in basicPalabras claves:ANDROGÉNESIS, Brassica napus, calcium, cell wall, CELLULOSE, doubled haploids, Eggplant, rapeseedAutores:A. Rivas-Sendra, Calabuig-Serna A., Camacho-Fernández C., Corral-Martínez P., Porcel R., Seguí-Simarro J.M.Fuentes:scopusEffects of growth conditions of donor plants and in vitro culture environment in the viability and the embryogenic response of microspores of different eggplant genotypes
ArticleAbstract: Notwithstanding the importance of eggplant in global horticulture, doubled haploid production in thiPalabras claves:ANDROGÉNESIS, Growth regulators, Microspore culture, Microspore embryogenesis, Solanum melongena LAutores:A. Rivas-Sendra, Camacho-Fernández C., Corral-Martínez P., Porcel R., Seguí-Simarro J.M.Fuentes:scopusImproved regeneration of eggplant doubled haploids from microspore-derived calli through organogenesis
ArticleAbstract: Doubled haploid (DH) technology allows for the production of pure lines, useful for plant breeding,Palabras claves:ANDROGÉNESIS, Microspore culture, Microspore embryogenesis, Solanum MelongenaAutores:A. Rivas-Sendra, Camacho-Fernández C., Corral-Martínez P., Seguí-Simarro J.M.Fuentes:scopusMitochondrial Zea mays brittle1-1 is a major determinant of the metabolic fate of incoming sucrose and mitochondrial function in developing maize endosperms
ArticleAbstract: Zea mays Brittle1-1 (ZmBT1-1) is an essential component of the starch biosynthetic machinery in maizPalabras claves:ADPglucose, Dual targeting, Mitochondrial carrier family, Mitochondrial retrograde signaling, starch, Sucrose synthase, ZEA MAYSAutores:A. Rivas-Sendra, Almagro G., Bahaji A., Baroja-Fernández E., Camacho-Fernández C., Li J., Muñoz F.J., Ovecka M., Parra-Vega V., Pozueta-Romero J., Sánchez-López Á.M., Seguí-Simarro J.M.Fuentes:scopus