An alternative pathway for plant in vitro regeneration of chinaberry -tree Melia azedarach L. derived from the induction of somatic embryogenesis

A highly efficient somatic embryogenesis system and subsequent plant regeneration of chinaberry (Melia azedarach L.) was developed. Plants were regenerated from indirect somatic embryogenesis induction. Novel features of this improved protocol, include: a) Embryogenic callus induction with no additi...

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Autores principales: Sharry, Sandra Elizabeth, Cabrera Ponce, José Luis, Herrera Estrella, Luis, Rangel Cano, Rosa María, Lede, Silvia, Abedini, Walter
Formato: Articulo
Lenguaje:Inglés
Publicado: 2006
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Acceso en línea:http://sedici.unlp.edu.ar/handle/10915/108589
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id I19-R120-10915-108589
record_format dspace
institution Universidad Nacional de La Plata
institution_str I-19
repository_str R-120
collection SEDICI (UNLP)
language Inglés
topic Ciencias Agrarias
Melia azedarach L.
Somatic embryogenesis system
spellingShingle Ciencias Agrarias
Melia azedarach L.
Somatic embryogenesis system
Sharry, Sandra Elizabeth
Cabrera Ponce, José Luis
Herrera Estrella, Luis
Rangel Cano, Rosa María
Lede, Silvia
Abedini, Walter
An alternative pathway for plant in vitro regeneration of chinaberry -tree Melia azedarach L. derived from the induction of somatic embryogenesis
topic_facet Ciencias Agrarias
Melia azedarach L.
Somatic embryogenesis system
description A highly efficient somatic embryogenesis system and subsequent plant regeneration of chinaberry (Melia azedarach L.) was developed. Plants were regenerated from indirect somatic embryogenesis induction. Novel features of this improved protocol, include: a) Embryogenic callus induction with no addition of 2, 4-D in the culture media; b) Somatic embryos differentiation was achieved by using high concentration of cytokinins (BAP 10 mg/L) and adenine; c) 100% conversion of somatic embryos to plants was practically obtained and 100% of plants survived under greenhouse conditions; d) Addition of putrescine improved somatic embryos germination. The amount of somatic embryos produced by the pathway of indirect somatic embryogenesis was 447 per gram of fresh weight callus. Regenerated plants were phenotypically normal. The developed protocol established the potential to produce plantlets from cotyledon explants through somatic embryogenesis. It also presents itself as a highly efficient method for mass clonal propagation and conservation of Melia azedarach.
format Articulo
Articulo
author Sharry, Sandra Elizabeth
Cabrera Ponce, José Luis
Herrera Estrella, Luis
Rangel Cano, Rosa María
Lede, Silvia
Abedini, Walter
author_facet Sharry, Sandra Elizabeth
Cabrera Ponce, José Luis
Herrera Estrella, Luis
Rangel Cano, Rosa María
Lede, Silvia
Abedini, Walter
author_sort Sharry, Sandra Elizabeth
title An alternative pathway for plant in vitro regeneration of chinaberry -tree Melia azedarach L. derived from the induction of somatic embryogenesis
title_short An alternative pathway for plant in vitro regeneration of chinaberry -tree Melia azedarach L. derived from the induction of somatic embryogenesis
title_full An alternative pathway for plant in vitro regeneration of chinaberry -tree Melia azedarach L. derived from the induction of somatic embryogenesis
title_fullStr An alternative pathway for plant in vitro regeneration of chinaberry -tree Melia azedarach L. derived from the induction of somatic embryogenesis
title_full_unstemmed An alternative pathway for plant in vitro regeneration of chinaberry -tree Melia azedarach L. derived from the induction of somatic embryogenesis
title_sort alternative pathway for plant in vitro regeneration of chinaberry -tree melia azedarach l. derived from the induction of somatic embryogenesis
publishDate 2006
url http://sedici.unlp.edu.ar/handle/10915/108589
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