dc.creatorRosa Y.B.C.J.
dc.creatorDornelas M.C.
dc.date2012
dc.date2015-06-26T20:29:24Z
dc.date2015-11-26T14:25:57Z
dc.date2015-06-26T20:29:24Z
dc.date2015-11-26T14:25:57Z
dc.date.accessioned2018-03-28T21:28:44Z
dc.date.available2018-03-28T21:28:44Z
dc.identifier
dc.identifierPlant Cell, Tissue And Organ Culture. , v. 108, n. 1, p. 91 - 99, 2012.
dc.identifier1676857
dc.identifier10.1007/s11240-011-0016-6
dc.identifierhttp://www.scopus.com/inward/record.url?eid=2-s2.0-81555195193&partnerID=40&md5=c7bd3e655e913f075f6cf14233f5c8b8
dc.identifierhttp://www.repositorio.unicamp.br/handle/REPOSIP/97019
dc.identifierhttp://repositorio.unicamp.br/jspui/handle/REPOSIP/97019
dc.identifier2-s2.0-81555195193
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/1245910
dc.descriptionThe only species in the genus Passiflora (Passifloraceae) known to produce resin glands is P. foetida. These glands are secretory trichomes mainly present on the floral bracts and leaf stipules. The secretion produced by these glands has received attention recently due to the presence of substances with pharmacological properties. Attempts to apply in vitro cell culture methods for the large scale production of highly valuable metabolites has been rather limited due to the fact that these compounds are produced by highly differentiated secretory cells in trichomes which are seldom obtained or because differentiation is inhibited by in vitro conditions. Here we describe the in vitro plant regeneration of P. foetida obtained via organogenesis, using mature zygotic embryos as explants. Differentiated plantlets and, more important, the de novo differentiation of secretory trichomes in vitro could be observed in less than 30 days. There was a clear effect of the concentration of 2,4-dichlorophenoxyacetic acid in the culture media on the regeneration of plants and on the differentiation of glandular trichomes. Our results should be useful for the micropropagation of P. foetida, as well as for studies of the process of secretory trichome differentiation and the implemention of biotechnological methodologies for in vitro mass production of passifloricin and/or other substances present in the P. foetida resin. © 2011 Springer Science+Business Media B.V.
dc.description108
dc.description1
dc.description91
dc.description99
dc.descriptionAgrawal, A.A., Induced responses to herbivory and increased plant performance (1998) Science, 279, pp. 1201-1202
dc.descriptionBandyopadhyay, T., Gangopadhyay, G., Poddar, R., Mukherjee, K.K., Trichomes: their diversity distribution and density in acclimatization of teak (Tectona grandis L.) plants grown in vitro (2004) Plant Cell Tiss Organ Cult, 78, pp. 113-121
dc.descriptionBecerra, D.C., Forero, A.P., Góngora, G.A., Age and physiological condition of donor plants affect in vitro morphogenesis in leaf explants of Passiflora edulis f. flavicarpa (2004) Plant Cell Tissue Organ Cult, 79, pp. 87-90
dc.descriptionBonfill, M., Mangas, S., Moyano, E., Cusido, R.M., Palazón, J., Production of centellosides and phytosterols in cell suspension cultures of Centella asiatica (2011) Plant Cell Tiss Organ Cult, 104, pp. 61-67
dc.descriptionBraglia, L., de Benedetti, L., Giovannini, A., Nicoletti, F., Bianchini, C., Pepino, L., Mercuri, A., In vitro plant regeneration as a tool to improve ornamental characters in Passiflora species (2010) Acta Hortic, 855, pp. 47-52
dc.descriptionDawan, S., Shasany, A.K., Naqvi, A.A., Kumar, S., Khanuja, S.P.S., Menthol tolerant clones of Mentha arvensis: approach for in vitro selection of menthol rich genotypes (2003) Plant Cell Tiss Organ Cult, 75, pp. 87-94
dc.descriptionDelbarre, A., Muller, P., Imhoff, V., Guern, J., Comparison of mechanisms controlling uptake and accumulation of 2, 4-dichlorophenoxy acetic acid, naphthalene-1-acetic acid, and indole-3-acetic acid in suspension-cultured tobacco cells (1996) Planta, 198, pp. 532-541
dc.descriptionDodsworth, S., A diverse and intricate signalling network regulates stem cell fate in the shoot apical meristem (2009) Dev Biol, 336, pp. 1-9
dc.descriptionDornelas, M.C., Vieira, M.L.C., Plant regeneration from protoplast cultures of Passiflora edulis var. flavicarpa Deg. and P. cincinnata Mast (1993) Plant Cell Rep, 13, pp. 103-106
dc.descriptionDornelas, M.C., Vieira, M.L.C., Tissue culture on species of Passiflora (1994) Plant Cell Tissue Organ Cult, 36, pp. 211-217
dc.descriptionDornelas, M.C., Vieira, M.L.C., Appezzato-da-Gloria, B., Histological analysis of organogenesis and somatic embryogenesis induced in immature tissues of Stylosanthes scabra (1992) Ann Bot, 70, pp. 477-482
dc.descriptionDurkee, L.T., Baird, C.W., Cohen, P.F., Light and electron microscopy of the resin glands of Passiflora foetida (Passifloraceae) (1984) Am J Bot, 71, pp. 596-602
dc.descriptionEcheverri, F., Arango, V., Quiñones, W., Torres, F., Escobar, G., Rosero, Y., Archbold, R., Passifloricins, polyketides alpha-pyrones from Passiflora foetida (2001) Phytochemistry, 56, pp. 881-885
dc.descriptionFernando, J.A., Vieira, M.L., Machado, S.R., Appezzato-da-Glória, B., New insight into the in vitro organogenesis process: the case of Passiflora (2007) Plant Cell Tiss Organ Cult, 91, pp. 37-44
dc.descriptionGamborg, O.L., Miller, R.A., Ojima, K., Nutrient requirements of suspension cultures of soybean root cells (1968) Exp Cell Res, 50, pp. 151-158
dc.descriptionGarcia, R., Pacheco, G., Falcão, E., Borges, G., Mansur, E., Influence of type of explants, plant growth regulators, salt composition of basal medium, and light on callogenesis and regeneration in Passiflora suberosa L. (Passifloraceae) (2011) Plant Cell Tiss Organ Cult, 106, pp. 47-54
dc.descriptionGlover, B.J., Differentiation in plant epidermal cells (2000) J Exp Bot, 51, pp. 497-505
dc.descriptionGöpfert, J.C., Macnevin, G., Ro, D.K., Spring, O., Identification, functional characterization and developmental regulation of sesquiterpene synthases from sunflower capitate glandular trichomes (2009) BMC Plant Biol, 9, p. 86
dc.descriptionGordon, S.P., Heisler, M.G., Reddy, G.V., Ohno, C., Das, P., Meyerowitz, E.M., Pattern formation during de novo assembly of the Arabidopsis shoot meristem (2007) Development, 134, pp. 3539-3548
dc.descriptionGurel, E., Yucesan, B., Aglic, E., Gurel, S., Verma, S., Regeneration and cardiotonic glycoside production in Digitalis davisiana Heywood (Alanya Foxglove) (2011) Plant Cell Tiss Organ Cult, 104, pp. 217-225
dc.descriptionGuzzo, F., Ceoldo, S., Andretta, F., Levi, M., In vitro culture from mature seeds of Passiflora species (2004) Sci Agric, 61, pp. 108-113
dc.descriptionHamant, O., Traas, J., Boudaoud, A., Regulation of shape and patterning in plant development (2010) Curr Opin Genet Dev, 20, pp. 454-459
dc.descriptionHare, J.D., Variation in herbivore and methyl jasmonate-induced volatiles among genetic lines of Datura wrightii (2007) J Chem Ecol, 33, pp. 2028-2043
dc.descriptionJansen, W.A., (1962) Botanical Histochemistry: Principles and Practice, , San Francisco: WR Freeman
dc.descriptionKang, J.H., Liu, G., Shi, F., Jones, A.D., Beaudry, R.M., Howe, G.A., The tomato odorless-2 mutant is defective in trichome-based production of diverse specialized metabolites and broad-spectrum resistance to insect herbivores (2010) Plant Physiol, 154, pp. 262-272
dc.descriptionKim, T.D., Lee, B.S., Kim, T.S., Choi, Y.E., Developmental plasticity of glandular trichomes into somatic embryogenesis in Tilia amurensis (2007) Ann Bot, 100, pp. 177-183
dc.descriptionKiselev, K.V., Tyunin, A.P., Manyakhin, A.Y., Zhuravlev, Y.N., Resveratrol content and expression patterns of stilbene synthase genes in Vitis amurensis cells treated with 5-azacytidine (2011) Plant Cell Tiss Organ Cult, 105, pp. 65-72
dc.descriptionLevin, D.A., The role of trichomes in plant defense (1973) Quart Rev Plant Biol, 48, pp. 3-15
dc.descriptionMakunga, N.P., van Staden, J., An efficient system for the production of clonal plantlets of the medicinally important aromatic plant: Salvia africana-lutea L (2008) Plant Cell Tiss Organ Cult, 92, pp. 63-72
dc.descriptionMohamed, M.E., Hicks, R.G.T., Blakesley, D., Shoot regeneration from mature endosperm of Passiflora foetida (1996) Plant Cell Tiss Organ Cult, 46, pp. 161-164
dc.descriptionMorone-Fortunato, I., Avato, P., Plant development and synthesis of essential oils in micropropagated and mycorrhiza inoculated plants of Origanum vulgare L. ssp. hirtum (Link) Ietswaart (2008) Plant Cell Tiss Organ Cult, 93, pp. 139-149
dc.descriptionMurashige, T., Skoog, F., A revised medium for rapid growth and bioassays with tobacco tissue cultures (1962) Physiol Plant, 15, pp. 473-497
dc.descriptionNgan, A., Conduit, R., A double-blind, placebo-controlled investigation of the effects of Passiflora incarnata (passionflower) herbal tea on subjective sleep quality (2011) Phytoter Res, , doi: 10. 1002/ptr. 3400
dc.descriptionPati, P.K., Kaur, J., Singh, P., A liquid culture system for shoot proliferation and analysis of pharmaceutically active constituents of Catharanthus roseus (L.) G. Don (2011) Plant Cell Tiss Organ Cult, 105, pp. 299-307
dc.descriptionPetrásek, J., Friml, J., Auxin transport routes in plant development (2009) Development, 136, pp. 2675-2688
dc.descriptionPinto, D.L.P., Barros, B.A., Viccini, L.F., Campos, J.M.S., Silva, M.L., Otoni, W.C., Ploidy stability of somatic embryogenesis-derived Passiflora cincinnata Mast. plants as assessed by flow cytometry (2010) Plant Cell Tissue Organ Cult, 103, pp. 71-79
dc.descriptionPipino, L., Braglia, L., Giovannini, A., Fascella, G., Mercuri, A., In vitro regeneration of Passiflora species with ornamental value (2008) Propag Ornam Plants, 8, pp. 47-49
dc.descriptionPuricelli, L., Dellaica, I., Sartor, L., Garbisa, S., Caniato, R., Preliminary evaluation of inhibition of matrix-metalloproteins MMP-2 and MMP-9 by Passiflora edulis and P. foetida aqueous extracts (2003) Fitoterapia, 74, pp. 302-304
dc.descriptionReis, L.B., Silva, M.L., Lima, A.B.P., Oliveira, M.L.P., Pinto, D.L.P., Lani, E.R.G., Otoni, W.C., Agrobacterium rhizogenes-mediated transformation of passionfruit species: Passiflora cincinnata and P. edulis flavicarpa (2007) Acta Hortic, 738, pp. 425-431
dc.descriptionShaik, S., Singh, N., Nicholas, A., HPLC and GC analyses of in vitro-grown leaves of the cancer bush Lessertia (Sutherlandia) frutescens L. reveal higher yields of bioreactive compounds (2011) Plant Cell Tiss Organ Cult, 105, pp. 431-438
dc.descriptionSilva, M.L., Pinto, D.L.P., Guerra, M.P., Floh, E.I.S., Bruckner, C.H., Otoni, W.C., A novel regeneration system for a wild passion fruit species (Passiflora cincinnata Mast.) based on somatic embryogenesis from mature zygotic embryos (2009) Plant Cell Tiss Organ Cult, 99, pp. 47-54
dc.descriptionSingh, S., Kuanar, A., Mohanty, S., Subudhi, E., Nayak, S., Evaluation of phytomedicinal yield potential and molecular profiling of micropropagated and conventionally grown turmeric (Curcuma longa L.) (2011) Plant Cell Tiss Organ Cult, 104, pp. 263-269
dc.descriptionSocorro, O., Tárrega, I., Rivas, F., Essential oils from wild and micropropagated plants of Origanum bastetanum (1998) Phytochemistry, 48, pp. 1347-1349
dc.descriptionStancheva, N., Weber, J., Schulze, J., Alipieva, K., Ludwig-Müller, J., Phytochemical and flow cytometric analyses of Devil′s claw cell cultures (2011) Plant Cell Tiss Organ Cult, 105, pp. 79-84
dc.descriptionSu, Y.H., Zhang, X.S., Auxin gradients trigger de novo formation of stem cells during somatic embryogenesis (2009) Plant Signal Behav, 4, pp. 574-576
dc.descriptionTraw, M.B., Dawson, T.E., Differential induction of trichomes by three herbivores of black mustard (2002) Oecologia, 131, pp. 526-532
dc.descriptionUlmer, T., Macdougal, J.M., (2004) Passiflora, Passion Flowers of the World, , Cambridge: Timber Press
dc.descriptionWagner, G.J., Secreting glandular trichomes: more than just hairs (1991) Plant Physiol, 96, pp. 675-679
dc.descriptionYang, R.H., Shetty, K., Stimulation of rosmarinic acid in shoot cultures of oregano (Origanum vulgare) clonal line in response to proline, proline analogue, and proline precursors (1998) J Agric Food Chem, 46, pp. 2888-2893
dc.languageen
dc.publisher
dc.relationPlant Cell, Tissue and Organ Culture
dc.rightsfechado
dc.sourceScopus
dc.titleIn Vitro Plant Regeneration And De Novo Differentiation Of Secretory Trichomes In Passiflora Foetida L. (passifloraceae)
dc.typeArtículos de revistas


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