Callogénesis in vitro para la inducción de embriogénesis somática y producción de antioxidantes en Eugenia uniflora
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Ali M, Abbase BH, Ihsan-Ul-Haq (2013) Production of commercially important metabolites and antioxidant activity in cell suspension cultures of Artemisia absinthium L. Industrial Crops and Products 49: 400-406
Arvouet-Grand A, Vennat B, Pourrat A, Legret P (1994) Standardization of a propolis extract and identification of the main constituents. Journal de Pharmacie de Belgique 49: 462-468
Auricchio MT, Bacchi EM (2003) Folhas de Eugenia uniflora L. (pitanga): Revisão. Rev Inst Adolfo Lutz 62: 55-61
Baltrušaitytė V, Venskutonis PR, Ceksteryté V (2007) Radical scavenging activity of different floral origin honey and beebread phenolic extracts. Food Chemistry 101: 502-514
Benzie IFF, Strain JT (1996) The ferric reducing ability of Plasma (FRAP) as a measure of antioxidant power: the FRAP assay. Anal Biochem 239: 70–76
Beraud MMR, Vidal MIL, Fuentes MAC, Brevis PKA (2014) In vitro induction of callogenesis and indirect organogenesis from explants of cotyledon, hypocotyl and leaf in Ugni molinae. Bosque 35: 111-118
Cangahuala-Inocente GC, Steiner N, Santos M, Guerra MP (2004) Morphohistological analysis and histochemistry of Feijoa sellowiana somatic embryogenesis. Protoplasma 224: 33-40
Cangahuala-Inocente GC, Villarino A, Seixas D, Dumas-Gaudot E, Terenzi H, Guerra MP (2009). Differential proteomic analysis of developmental stages of A. sellowiana somatic embryos. Acta Physiol Plant 31: 501-514
Canhoto JM, Mesquita JF, Cruz GS (1996) Ultrastructural Changes in Cotyledons of Pineapple Guava (Myrtaceae) During Somatic Embryogenesis. Annals of Botany 78: 513-521, 1996
Canhoto JM, Lopes ML, Cruz GS (1999a) Somatic embryogenesis and plant regeneration in myrtle (Myrtaceae). PCTOC 57: 13–21
Canhoto JM, Lopes ML, Cruz GS (1999b) Somatic embryogenesis in myrtaceous plants. In: Jain SM, Gupta PK, Newton RJ (eds). Somatic Embryogenesis in Woody Plants, pp. 293-340. Kluwer Academic Publishers, New York
Costa P, Filho EG, Silva LM, Santhos SC, Passos CS (2010) Influence of fruit biotypes on the chemical composition and antifungal activity of the essential oils of Eugenia uniflora leaves. J Braz Chem Soc 21: 851-858
Costella E, Garcia BA, Costa LS, Corneleo NS, Schünemann AL, Stefenon VM (2013) Anthropogenic use of gallery forests in the Brazilian Pampa. Acta Scientiarum Biological Sciences 35: 211-217
Cunha FAB, Waczuk EP, Duarte AE, Barros LM, Elekofehinti OO, da Costa JGM, Sanmi AA, da Rocha JBT, Souza DO, Posser T, Coutinho HDM, Franco JL, Kamdem JP (2016) Cytotoxic and antioxidative potentials of ethanolic extract of Eugenia uniflora L. (Myrtaceae) leaves on human blood cells. Biomedicine & Pharmacotherapy 84: 614–621
Cunha FAB, Walau GL, Pinho AI, Nunes MEM, Leite NF, Tintino SR, da Costa GM, Athayde ML, Boligon AA, Coutinho HDM, Pereira AB, Posser T, Franco JL (2015) Eugenia uniflora leaves essential oil induces toxicity in Drosophila melanogaster: involvement of oxidative stress mechanisms. Toxicology Research 4: 634-644
Diniz da Silva PR, Rispoli RG, Minozzo MM, Junges M, Stefenon VM (2014) A regenerative route for Eugenia uniflora L. (Myrtaceae) through in vitro germination and micropropagation. Ann For Res 57: 39-45
Fehér A (2019) Callus, Dedifferentiation, Totipotency, Somatic Embryogenesis: What These Terms Mean in the Era of Molecular Plant Biology? Front. Plant Sci. 10: 536; doi: 10.3389/fpls.2019.00536
Golle DP, Reiniger LRS, Ritter AC, León AB (2012) In vitro establishment and development of Eugenia involucrata DC.: influence of explant source and nutritional medium. Ciência Florestal 22: 207-214
Golle DP, Reiniger LRS (2013) Phytoregulators and leaf explants position on callus induction in cerejeira-do-mato. Ciência Rural 43: 1759-1762
Gueye B, Morcillo F, Collin M, Gargani D, Overvoorde P, Aberlenc-Bertossi F, Tranbarger TJ, Sane D, Tregear JW, Borgel A, Verdeil J-L (2009) Acquisition of callogenic capacity in date palm leaf tissues in response to 2,4-D treatment. PCTOC 99: 35-45
Hammer Ø, Harper DT, Ryan PD (2001) Past: Paleontological Statistics Software Package for Education and Data Analysis. Palaeontol Electron 4: 1-4
Lattuada DS, Spier M, Dutra de Souza PV (2011) Pre-treatments with water and indole butyric acid dosis for herbaceous cuttings of Surinam cherry. Ciência Rural 41: 2073-2079
Litz RE (1984) In vitro responses of adventitious embryos of two polyembryonic Eugenia species. HortSci 19: 720-722
Morel GM, Wetmore RH (1951) Tissue culture of monocotyledons. Am J Bot 38: 138–140
Motoike SY, Saraiva ES, Ventrella MC, Silva CV, Salomão LCC (2007) Somatic embryogenesis of Myrciaria aureana (Brazilian grape tree). PCTOC 89: 75-81
Murashige T, Skoog FA (1962) Revised medium for rapid growth and bioassays with tobacco tissue cultures. Physiologia Plantarum 15: 473-497
Naaz A, Hussain SA, Naz R, Anis M, Alatar AA (2019) Successful plant regeneration system via de novo organogenesis in Syzygium cumini (L.) Skeels: an important medicinal tree. Agroforest Syst 93: 1285-1295
Pacheco G, Garcia R, Lugato D, Vianna M, Mansur E (2012) Plant regeneration, callus induction and establishment of cell suspension cultures of Passiflora alata Curtis. Scientia Horticulturae 144: 42-47
Pavei AF, Fraga HPF, Vieira LN, Guerra MP (2018) Effects of glutathione supplementation and carbon source during SE of A. sellowiana (O. Berg) Burret (Myrtaceae). Acta Scientiarum. Biological Sciences 39(4): 497-505
Pilatti FK, Aguiar T, Simões T, Benson EE, Viana AM (2011) In vitro and cryogenic preservation of plant biodiversity in Brazil. In Vitro Cell and Developmental Biology – Plant 47: 82-98
Rai MK, Akhtar N, Jaiswal VS (2007) Somatic embryogenesis and plant regeneration in Psidium guajava L. cv. Banarasi local. Scientia Horticulturae 113: 129-133
Reis E, Batista MT, Canhoto JM (2008) Effect and analysis of phenolic compounds during somatic embryogenesis induction in Feijoa sellowiana Berg. Protoplasma 232: 193-202
Rossato M, Schumacher PV, Costa Netto AP, Stein VC, Reis EF, Vilela MSP, Paiva LV (2019) Embryogenic potential of the callus of gabirobeira, Campomanesia adamantium (Cambess) O. Berg. Acta Scientiarum. Biological Sciences 41: e46358
Salma U, Kundu S, Ali MN, Mandal N (2019) Somatic embryogenesis‑mediated plant regeneration of Eclipta alba (L.) Hassk. and its conservation through synthetic seed technology. Acta Physiologiae Plantarum 41: 103
Singleton VL, Orthofer R, Lamuela-Raventós RM (1998) Analysis of total phenols and other oxidation substrates and antioxidants by means of folin-ciocalteu reagent. Methods in Enzymology 299: 152-178
Stefanello S, dal Vesco LL, Ducroquet JPHJ, Nodari RO, Guerra MP (2005) SE from floral tissues of feijoa (Feijoa sellowiana Berg). Sci Hortic 105: 117-126
Teixeira MP, Cruz L, Franco JL, Vieira RB, Stefenon VM (2016) Ethnobotany and antioxidant evaluation of commercialized medicinal plants from the Brazilian Pampa. Acta Botanica Brasilica 30: 47-59
Uematsu C, Tsujimoto M, Sugimoto M (1999) In vitro propagation of Eugenia uniflora L. Plant Biotechnology 16: 159-162
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