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dc.creatorSharry,Sandra
dc.creatorCabrera Ponce,José Luis
dc.creatorHerrera Estrella,Luis
dc.creatorRangel Cano,Rosa María
dc.creatorLede,Silvia
dc.creatorAbedini,Walter
dc.date2006-06-01
dc.date.accessioned2019-05-03T12:44:17Z
dc.date.available2019-05-03T12:44:17Z
dc.identifierhttps://scielo.conicyt.cl/scielo.php?script=sci_arttext&pid=S0717-34582006000300003
dc.identifier.urihttp://revistaschilenas.uchile.cl/handle/2250/84865
dc.descriptionA 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.
dc.formattext/html
dc.languageen
dc.publisherPontificia Universidad Católica de Valparaíso
dc.relation10.4067/S0717-34582006000300003
dc.rightsinfo:eu-repo/semantics/openAccess
dc.sourceElectronic Journal of Biotechnology v.9 n.3 2006
dc.subjectcallus induction
dc.subjectclonal forestry
dc.subjectembryos conversion
dc.subjectmicropropagation
dc.subjectpersian lilac
dc.subjectsomatic embryos
dc.titleAn alternative pathway for plant in vitro regeneration of chinaberry -tree Melia azedarach L. derived from the induction of somatic embryogenesis


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