Vegetative Propagation of hibiscus with different types of cuttings and IBA concentrations

Authors

  • Sra. Rafaela Souza Universidade Federal do Piauí
  • Márkilla Zunete Beckmann Cavalcante Universidade Federal do vale de São Francisco
  • Marluce Pereira Damasceno Lima Universidade Federal do Piauí
  • Tamnata Ferreira Alixandre Universidade Federal do Piauí
  • Rejane Teixeira Nascimento Universidade Federal do Piauí

DOI:

https://doi.org/10.14295/cs.v6i3.679

Keywords:

auxins, rooting, Hibiscus rosa-sinensis L.

Abstract

The propagation of the hibiscus is done preferably by cutting. However, the success of this technique depends on the internal and external conditions cuttings, that will influence directly into your rooting capacity. In this sense, the objective was to evaluate the effect of three types of cuttings (apical, middle and basal) and four concentrations of IBA (0, 1000, 3000 and 5000 mg L- 1) in the propagation through cuttings of Hibiscus rosa-sinensisL. cv. Snow Queen. The experiment was conducted in a greenhouse under intermittent mist at the Federal University of Piauí (UFPI), Campus Profa. CinobelinaElvas, Bom Jesus-PI for the period from May 23 to July 7, 2012. The experimental design was completely randomized in a factorial arrangement 3x4 (Type of cuttings x Concentration IBA) with four replications. At 45 days after implantation of the experiment were evaluated: percentage of rooting, survival rate, number of shoots, number of leaves, average root length, dry weight of shoot and root dry weight. There was no significant interaction between the factors studied. There is effective for cutting type. The technique of propagation by cuttings of Hibiscus rosa-sinensis L. cv. Snow Queen is efficient through the use of basal cuttings.

Downloads

Download data is not yet available.

References

Amaral, C.G., Brito, L.P.S., Avelino, R.C., Júnior, J.V.S., Beckmann-Cavalcante, M.Z., Cavalcante, I.H.L. 2012. Produção de mudas de Duranta repens L. Revista de Ciências Agrárias 35: 134-142.

Butola, J.S., Badola, H.K. 2007. Vegetative propagation of Angelica glauca and Heracleum candicans. Journal Tropical Medicinal Plants 8: 85-91.

De Klerk, G.J., Van Der Krieken, W., De Jong, J.C. 1999. the formation of adventitious roots, new concepts, new possibilities. In Vitro Cellular and Developmental Biology-Plant 35: 188–189.

Ehlert, P.A.D., Luz, J.M.Q., Innecco, R. 2004. Propagação vegetativa de alfavaca-cravo utilizando diferentes tipos de estacas e substratos. Horticultura Brasileira 22: 10-13.

Fachinello, J.C., Hoffmann, A.; Nachtigal, J.C. 2005. Propagação de plantas fru-tíferas. Brasília, EMBRAPA, 221p.

Ferreira, D.F. 2008. SISVAR: Um programa para análises e ensino de estatística. Revista Symposium 6: 36-41.

Hartmann, H.T., Kester, D.E., Davies JR, F.T., Geneve, R.L. 2002. Plant propagation: principles and practices. Prentice Hall International, New Jersey, 770p.

Kathiravan, A.S.; Ponnuswamy, A. S., Vanitha, C. 2009. Determination of suitable cutting size for vegetative propagation and comparison of propagules to evaluate the seed quality attributes in Jatropha curcas Linm. Indian Jornal of Natural Product Resource 8: 162–166.

Lone, A.B., Unemoto, L.K., Yamamoto, L.Y., Costa,L., Schnitzer, J. A., Sato, A.J., Ricce, W.S., Assis, A.M., Roberto, S.R. 2010. Enraizamento de estacas de azaleia (Rhododendron simsii Planch.) no outono em AIB e diferentes substratos. Ciência Rural 40: 1720 -1725.

Lorenzi, H. 2008. Plantas ornamentais no Brasil: arbustivas, herbáceas e trepadeiras. Instituto Plantarum, Nova Odessa.1130 p.

Loss, A., Teixeira, M.B., Santos, T.J., Gomes, V.M., Queiroz, L.H. 2009. Indução do enraizamento em estacas de Malvaviscus arboreus Cav. com diferentes concentrações de ácido indol–butírico (AIB). Acta Scientiarum. Agronomy 31: 269-273.

Luwig-Müller, J. 2011. Auxin conjugates: their role for plant development and in the evolution of land plants. Journal of Experimental Botany 62: 1757-1773.

Maia, S.S.S., Pinto, J.E.B.P., Silva, F.N., Oliveira, C. 2008. Enraizamento de Hyptis suaveolens (L.) Poit. (Lamiaceae) em função da posição da estaca no ramo. Revista Brasileira de ciências Agrárias 3: 317-320.

Pereira, G.H.A., Coutinho, F.S., Costa e Silva, R.A., Loss, A. 2012. Desenvolvimento de estacas de alamanda amarela sob diferentes concentrações de ácido indolbutírico. Comunicata Scientiae 3: 6-22.

Pizzato, M., Júnior, A.W., Luckmann, D., Pirola, K., Cassol, D.A., Mazaro, S.M. 2011. Influência do uso de AIB, época de coleta e tamanho de estaca na propagação vegetativa de hibisco por estaquia. Revista Ceres 58: 487-492.

Taiz, L., Zeiger, E. 2008. Fisiologia Vegetal. Artmed, Porto Alegre, Brasil. 720p.

Zuffelato-Ribas, K. C., Rodrigues, J. D. 2001. Estaquia: uma abordagem dos principais aspectos fisiológicos. Curitiba, 2001. 39 p.

Published

2015-12-29

How to Cite

Souza, S. R., Beckmann Cavalcante, M. Z., Damasceno Lima, M. P., Alixandre, T. F., & Nascimento, R. T. (2015). Vegetative Propagation of hibiscus with different types of cuttings and IBA concentrations. Comunicata Scientiae, 6(3), 291–296. https://doi.org/10.14295/cs.v6i3.679

Issue

Section

Original Article