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Addition of ionophore A23187 increases the efficiency of Cocos nucifera somatic embryogenesis

Tipo de material: TextoTextoSeries ; 3 Biotech, 8(8), p.366, 2018Trabajos contenidos:
  • Rivera-Solís, G
  • Sáenz-Carbonell, L
  • Narváez, M
  • Rodríguez, G
  • Oropeza, C
Tema(s): Recursos en línea: Resumen: The present study reports the effect of treatment of coconut embryogenic structure explants (derived from embryogenic callus)with the calcium ionophore A23187 (0, 1, 5, 10 µM)to promote somatic embryogenesis under in vitro conditions. The results showed no significant increase in the percentage of explants forming embryogenic callus, but with 1 µM ionophore there were significant increases in the formation of embryogenic structures per callus (2.8-fold), of somatic embryos per callus (1.5-fold)and also a greater absolute number (1.5-fold)of developing plantlets per callus. The ionophore treatment also promoted a change of pattern of the expression of the CnSERK gene during embryogenic callus formation. It is proposed that if the use of ionophore A23187 treatment is coupled with an embryogenic callus multiplication process there could be a potentially greater increase in the efficiency of the formation of somatic embryos and plantlets of coconut.
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The present study reports the effect of treatment of coconut embryogenic structure explants (derived from embryogenic callus)with the calcium ionophore A23187 (0, 1, 5, 10 µM)to promote somatic embryogenesis under in vitro conditions. The results showed no significant increase in the percentage of explants forming embryogenic callus, but with 1 µM ionophore there were significant increases in the formation of embryogenic structures per callus (2.8-fold), of somatic embryos per callus (1.5-fold)and also a greater absolute number (1.5-fold)of developing plantlets per callus. The ionophore treatment also promoted a change of pattern of the expression of the CnSERK gene during embryogenic callus formation. It is proposed that if the use of ionophore A23187 treatment is coupled with an embryogenic callus multiplication process there could be a potentially greater increase in the efficiency of the formation of somatic embryos and plantlets of coconut.

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