Embriogénesis somática en soja (Glycine max (L.) Merrill) var. Bragg

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M. Melchiorre
L. M. Casano
D. N. Moriconi

Resumen

Se describe un sistema para la regeneración de plantas de soja (Glycine max (L.) Merr.), variedad Bragg, a través de embriogénesis somática. Se probaron tres fuentes de explanto: cotiledones de semillas inmaduras, hojas cotiledonares y secciones de hipocótilos de plántulas de 25 días. A partir de los primeros se obtuvieron callos embriogénicos y embriones somáticos. Inicialmente, la producción de callos embriogénicos fue inducida cultivando cotiledones de semillas inmaduras en medio MS adicionado con concentraciones de ácido α-naftalenacético (ANA) entre 0 y 20 mg/l, combinados con ácido 2,4-diclorofenoxiacético (2,4-D) entre 0 y 40 mg/l. Treinta mg/l de 2,4-D en ausencia de ANA fue la combinación hormonal más efectiva para la producción de callos embriogénicos a los 30 días de cultivo. Luego de 30 días de subcultivo en iguales condiciones, se formaron embriones somáticos, los cuales desarrollaron en plantas completas cuando fueron cultivados en medio MS adicionado con 0,15 mg/l de ANA, 0,33 mg/l de cinetina y 0,33 mg/l de 6-bencilaminopurina.

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Embriogénesis somática en soja (Glycine max (L.) Merrill) var. Bragg. (1995). AgriScientia, 12, 77-82. https://doi.org/10.31047/1668.298x.v12.n0.2455
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Cómo citar

Embriogénesis somática en soja (Glycine max (L.) Merrill) var. Bragg. (1995). AgriScientia, 12, 77-82. https://doi.org/10.31047/1668.298x.v12.n0.2455

Referencias

Buchheim, J. A., Colburn, S. M., & Ranch, J. P. (1989). Maturation of soybean somatic embryos and the transition to plantlet growth. Plant Physiology, 89, 768–775.

Cleland, R. (1987). Auxin and cell elongation. In P. J. Davies (Ed.), Plant hormones and their role in plant growth and development (pp. 132–148). Martinus Nijhoff Publications, Netherlands.

Davies, P. J. (1987). The plant hormone concept: Transport, concentration, and sensitivity. In P. J. Davies (Ed.), Plant hormones and their role in plant growth and development (pp. 12–22). Martinus Nijhoff Publications, Netherlands.

Finer, J. (1988). Apical proliferation of embryogenic tissue of soybean. Plant Cell Reports, 7, 238–241.

Finer, J., & Nagasawa, A. (1988). Development of an embryogenic suspension culture of soybean (Glycine max (L.) Merrill). Plant Cell, Tissue and Organ Culture, 15, 125–136.

Gamborg, O. L., Miller, R. A., & Ojima, K. (1968). Plant cell cultures. I. Nutrient requirements of suspension cultures of soybean root cells. Experimental Cell Research, 50, 151–158.

George, E., & Sherrington, P. (1984). Plant propagation by tissue culture: Handbook and directory of commercial operations. Exegetics Ltd., Eversley, Basingstoke.

Komatsuda, T. (1990). Ability of soybean (Glycine max (L.) Merr.) genotypes to produce somatic embryos on a medium containing a low concentration of sucrose. Japanese Journal of Breeding, 40, 371–375.

Komatsuda, T., & Ohyama, K. (1988). Genotypes of high competence for somatic embryogenesis and plant regeneration in soybean (Glycine max). Theoretical and Applied Genetics, 75, 695–700.

Komatsuda, T., & Ko, S. W. (1990). Screening of soybean (Glycine max (L.) Merrill) genotypes for somatic embryo production from immature embryos. Japanese Journal of Breeding, 40, 249–251.

Lazzeri, P. A., Hildebrand, D. F., & Collins, G. B. (1985). A procedure for plant regeneration from immature cotyledon tissue of soybean. Plant Molecular Biology Reporter, 3, 160–167.

Lazzeri, P. A., Hildebrand, D. F., & Collins, G. B. (1987a). Soybean somatic embryogenesis: Effects of hormones and culture manipulations. Plant Cell, Tissue and Organ Culture, 10, 197–208.

Lazzeri, P. A., Hildebrand, D. F., & Collins, G. B. (1987b). Soybean somatic embryogenesis: Effects of nutritional, physical, and chemical factors. Plant Cell, Tissue and Organ Culture, 10, 209–220.

Lippmann, B., & Lippmann, G. (1984). Induction of somatic embryos in cotyledonary tissue of soybean (Glycine max (L.) Merr.). Plant Cell Reports, 3, 215–218.

Liu, W., Moore, P., & Collins, G. B. (1992). Somatic embryogenesis in soybean via somatic embryo cycling. In Vitro Cellular and Developmental Biology, 28, 153–160.

Murashige, T., & Skoog, F. (1962). A revised medium for rapid growth and bioassays with tobacco tissue cultures. Physiologia Plantarum, 15, 473–497.

Parrott, W. A., Dryden, G., Vogt, S., Hildebrand, D. F., Collins, G. B., & Williams, G. (1988). Optimization of somatic embryogenesis and embryo germination in soybean. In Vitro Cellular and Developmental Biology, 24, 817–828.

Pierik, R. L. M. (1990). Cultivo in vitro de las plantas superiores. Ed. Mundiprensa, Madrid, pp. 109–115.

Ranch, J. P., Oglesby, L. O., & Zielinski, A. C. (1985). Plant regeneration from embryo-derived tissue cultures of soybean. In Vitro Cellular and Developmental Biology, 21, 623–658.

Ranch, J. P., Oglesby, L. O., & Zielinski, A. C. (1986). Plant regeneration from tissue culture of soybean by somatic embryogenesis. In I. K. Vasil (Ed.), Plant regeneration and genetic variability in cell culture and somatic cell genetics of plants (Vol. 3, pp. 97–109). Academic Press, New York.

Rossi, R., Siciliano, R., Rojas, A., & Ouaine, J. (1992). Variedades. CREA-Soja. Cuaderno de actualización técnica No. 41, pp. 6–8.

Shoemaker, R. C., Amberger, L. A., Palmer, R. G., Oglesby, L., & Ranch, J. P. (1991). Effect of 2,4-dichlorophenoxyacetic acid concentration on somatic embryogenesis and heritable variation in soybean (Glycine max (L.) Merr.). In Vitro Cellular and Developmental Biology, 27, 84–88.

Schussler, J. R., Brenner, M. L., & Brun, W. A. (1984). Concentrations of indole-3-acetic acid and abscisic acid in soybean seeds during development. Plant Physiology, 76, 951–954.

Wright, M. S., Launis, K. L., Novitzky, R., Duesing, J. H., & Harms, C. T. (1991). A simple method for the recovery of multiple fertile plants from individual somatic embryos of soybean (Glycine max (L.) Merrill). In Vitro Cellular and Developmental Biology, 27, 153–157.