Acclimatization of micropropagated plants of fox grape cv. Bordô (Vitis labrusca L.) in different substrates
DOI:
https://doi.org/10.20873/jbb.uft.cemaf.v3n4.schuckKeywords:
coconut fiber, micropropagation, seedling production, plantmax, tissue cultureAbstract
The substrate must promote the growth of the plants, being an important component during the acclimatization of micropropagated plants. The aim of this research was to evaluate the effects of different substrates during the acclimatization of fox grape cv. Bordô. The experiment was carried out at the greenhouse during February and March of 2009. Five substrates were tested: Plantmax® HT, Plantmax® HT: Coconut fiber (7,5:2,5 v/v), Plantmax® HT: Coconut fiber (1:1 v/v), Plantmax® HT: Coconut fiber (2,5:7,5 v/v) and Coconut fiber. The process of acclimatization consisted of three phases. After 20 days of in vitro culture, it was removed the PVC film (Polyvinyl chloride) that covered the flasks and after two days, flasks had lids partial opening for two hours at the growth room conditions. The plants were transferred for the different substrates and placed in a greenhouse with intermittent nebulization during 16 days proceeded by 20 days of daily manual irrigation. The best substrate for acclimatization of fox grape cv. Bordô was Plantmax® HT, benefitting the formation of roots and aerial part of the plants. The coconut fiber must not be used alone as substrate or in larger proportions than 25% in the mixture with Plantmax® HT.
References
Abad, M.; Noguera, P.; Puchades, R.; Maquierira, A.; Noguera, V. (2002), Physico-chemical and chemical properties of some coconut coir dusts for use as peat substitute for containerized ornamental plants. Bioresource Technology, 82, 241-245.
Alizadeh, M.; Singh, S. K.; Patel, V. B. (2010), Comparative performance of in vitro multiplication in four grapes (Vitis spp.) rootstock genotypes. International Journal of Plant Production, 4, 41-50.
Banilas, G. e Korkas, E. (2007), Rapid micropropagaton of grapevine cv. Agiorgitiko through lateral bud development. e-Journal of Science and Technology, 2, 31-38.
Beardsell, D. V.; Nichols, D. G.; Jones, D. L. (1979), Physical properfies of nursery potting- mixtures. Scientia Horticulturae, 11, 1-8.
Biasi, L. A.; Passos, I. R. S.; Pommer, C. V. (1998), Micropropagação do porta-enxerto de videira ‘Jales’. Pesquisa Agropecuária Brasileira, 33, 1587-1594.
Borghezan, M.; Moraes, L. K. A.; Moreira, F. M.; Silva, A. L. (2003), Propagação in vitro e avaliação de parâmetros morfofisiológicos de porta-enxertos de videira. Pesquisa Agropecuária Brasileira, 38, 783-789.
Carvalho, D. C.; Lopes Da Silva, A. L.; Tanno, G. Nakao; Purcino, M.; Biasi, L. A. (2011), Organogênese a partir de segmentos foliares e internodais de videira cv. Merlot. Ciência e Agrotecnologia, 35, 108-114.
Costa, C. A.; Ramos, S. J.; Sampaio, R. A.; Guilherme, D. O.; Fernandes, L. A. (2007), Fibra de coco e resíduo de algodão para substrato de mudas de tomateiro. Horticultura Brasileira, 25, 387-391.
Cruz, C. D. Programa Genes: versão Windows; aplicativo computacional em genética e estatística. Viçosa, MG: UFV, Imprensa Universitária, 2001, 648p.
Cutanda, M. C.; Bouquet, A.; Chatelet, P.; Lopez, G.; Botella, O.; Montero, F. J.; Orregrossa. L. (2008), Somatic embryogenesis and plant regeneration of Vitis vinifera cultivars ‘Macabeo’ and ‘Tempranillo’. Vitis, 47, 159-162.
Franco, D.; Cavalcante, I. H. L.; Oliveira, I. V. M.; Martins, A. B. G. (2007), Avaliação de substratos no desenvolvimento inicial de seis porta-enxertos de citros. Laranja, 28, 61-70.
Fretz, T. A; Read, P. E.; Peele, M. C. Plant propagation lab. Manual. Minneapolis: Burgess Publishiny Company. 1979. 317p.
Hoffmann, A.; Pasqual, M.; Chalfun, N. N. J.; Vieira, S. S. N. (2001), Substratos na indução e desenvolvimento in vitro de raízes em dois porta- enxertos de macieira. Pesquisa Agropecuária Brasileira, 36, 1371-1379.
Kämpf, A. N. Produção comercial de mudas ornamentais. Guaíba: Agropecuária, 254p, 2000.
Lopes da Silva, A. L.; Franco, E. T. H.; Walter, J. M.; Bisognin, D. A.; Calgaroto, N. S. (2006), Aclimatização de clones de Dyckia Maritima em diferentes substratos - Bromeliaceae. Revista Brasileira de Agrociência, 12, 495-498.
Lopes da Silva, A. L.; Franco, E. T. H.; Horbach, M. A.; Bisognin, D. A.; Quoirin, M. (2007), Aclimatização de Dyckia maritima Baker em hidroponia (Bromeliaceae). Caderno de Pesquisa Série Biologia, 19, 16-23.
Lopes da Silva, A. L.; Oliveira, Y.; Costa, J. L.; Scheidt, G. N.; Carvalho, D. C.; Santos, J. D.; Guerra, E. P. (2011), Pré-aclimatização e aclimatização em cultivo hidropônico de plantas micropropagadas de Eucalyptus saligna Sm. Revista Acadêmica: Ciências Agrárias e Ambientais, 9, 179-184.
Machado, M. P.; Lopes da Silva, A. L.; Biasi, L. A. (2011), Effect of plant growth regulators on in vitro regeneration of Lavandula dentata L. shoot tips. Journal of Biotechnology and Biodiversity, 2,28-31.
Murashige, T. e Skoog, F. (1962), A revised medium for rapid growth and bio assays with tobacco tissue cultures. Physiologia Plantarum, 15, 473-479.
Rosa, M. F.; Santos, F. J. S.; Montenegro, A. A. T.; Abreu, F. A. P.; Correia, D.; Araújo, F. B. S. 2001. Caracterização do pó da casca de coco verde usado como substrato agrícola. Fortaleza: Embrapa-CNPAT, 6 p. (Comunicado Técnico, 54).
Smiderle, O. S. e Minami, K. (2001), Emergência e vigor de plântulas de goiabeira em diferentes substratos. Revista Científica Rural, 6, 38-45.
Sutter, E. e Langhans, R. W. (1982), Formation of epicuticular wax and its effect on water loss in cabbage plants regenerated from shoot-tip culture. Canadian Journal of Botany, 60, 2896-2902.
Verdonck, O.; Vleeschauwer, D.; Boodt, M. (1981), The influence of the substrate to plant growth. Acta Horticulturae, 126, 251-258.
Villa, F.; Pasqual, M.; Araújo, A. G.; Pio, L. A. S. (2006), Micropropagação da amoreira-preta (Rubus spp.) e efeito de substratos na aclimatização de plântulas. Acta Scientiarum. Agronomy, 28, 47-53.
Zanetti, M.; Fernandes, C.; Cazetta, J. O.; Corá, J. E.; Mattos Jr., D. (2003), Caracterização física de substratos para a produção de mudas e porta- enxertos cítricos sob telado. Laranja, 24, 519-530.
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