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Anaize Borges Henriques ; Eliana Schwartz Tavares ; Maria Apparecida Esquibel ; Celso Luiz Salgueiro Lage ;Revista Ciência Agronômica 2010, 41 2

Autor: Cristiane Pimentel Victório

Fuente: http://www.redalyc.org/


Introducción



Revista Ciência Agronômica ISSN: 0045-6888 ccarev@ufc.br Universidade Federal do Ceará Brasil Pimentel Victório, Cristiane; Borges Henriques, Anaize; Schwartz Tavares, Eliana; Esquibel, Maria Apparecida; Salgueiro Lage, Celso Luiz Standardized production of Phyllanthus tenellus Roxb.
by plant tissue culture Revista Ciência Agronômica, vol.
41, núm.
2, abril-junio, 2010, pp.
272-278 Universidade Federal do Ceará Ceará, Brasil Available in: http:--www.redalyc.org-articulo.oa?id=195314926015 How to cite Complete issue More information about this article Journals homepage in redalyc.org Scientific Information System Network of Scientific Journals from Latin America, the Caribbean, Spain and Portugal Non-profit academic project, developed under the open access initiative Revista Ciência Agronômica, v.
41, n.
2, p.
272-278, abr-jun, 2010 Centro de Ciências Agrárias - Universidade Federal do Ceará, Fortaleza, CE www.ccarevista.ufc.br Scientific Article ISSN 1806-6690 Standardized production of Phyllanthus tenellus Roxb.
by plant tissue culture1 Produção padronizada de Phyllanthus tenellus Roxb.
por cultura de tecidos vegetais Cristiane Pimentel Victório2*, Anaize Borges Henriques3, Eliana Schwartz Tavares4, Maria Apparecida Esquibel5 e Celso Luiz Salgueiro Lage6 Abstract - Exigencies as ethic plant raw material are part of the needs of modern phytotherapy.
Micropropagation offers opportunities to obtain mass propagation of superior genotypes in short time.
This study aimed to develop a protocol of direct and indirect organogenesis of Phyllanthus tenellus Roxb.
Nodal segments from plantlets obtained by in vitro germination were subcultured in modified Murashige and Skoog medium added with different plant growth regulators: IAA (indole-3-acetic acid), IBA (indole-3-butyric acid), GA3 (3-giberelic acid) and KIN (kinetin).
The highest proliferation rate was obtained using the combinations: IBA, KIN GA3 (3.5 mg L-1) and IBA KIN (2.4 mg L-1).
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