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Research Article

Yield, composition and biological activities of Eugenia uniflora L. essential oil according to seasonality

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Pages 406-413 | Received 06 Feb 2022, Accepted 23 Feb 2023, Published online: 30 Mar 2023

References

  • D. Rongai, P. Pulcini, B. Pesce and F. Milano, Antifungal activity of pomegranate peel extract against fusarium wilt of tomato. European Journal of Plant Pathology, 2017, 147(1), 229–238. doi: 10.1007/s10658-016-0994-7.
  • A.A. Mostafa, A.A. Al-Askar, K.S. Almaary, T.M. Dawoud, E.N. Sholkamy and M.M. Bakri, Antimicrobial activity of some plant extracts against bacterial strains causing food poisoning diseases. Saudi Journal of Biology Sciences, 2018, 25(2), 361–366. doi: 10.1016/j.sjbs.2017.02.004.
  • J.R.A. Shazhni, A. Renu and P. Vijayaraghavan, Insights of antidiabetic, anti-inflammatory and hepatoprotective properties of antimicrobial secondary metabolites of corm extract from Caladium x hortulanum. Saudi Journal of Biology Sciences, 2018, 25(8), 1755–1761. doi: 10.1016/j.sjbs.2018.03.013.
  • S. Anese, W.P.T. Gambarra, P.U. Grisi and S.C.J. Gualtieri, Insecticidal action of drimys brasiliensis miers on black citrus. Revista Ciência Agronômica, 2018, 49(3), 484–490. doi: 10.5935/1806-6690.20180055.
  • Z.T. Pinto, J.F. Carneiro, C. Carriço, R.L. Caetano, V.S.B. Ferreira, P.M. Mendonça, A.L.R. Berenger and M.R. Figueiredo, Acaricidal effects of seven Brazilian plant extracts. Revista Colombiaan de Entomología, 2018, 44(1), 44–47. doi: 10.25100/socolen.v44i1.6541.
  • F.Z. Benabdallah, A. Zellagui and I. Demirtas, Chemival composition of essential oils and antioxidant activities of extracts of two endemic plants from Algeria. International Journal of Pharmaceutical Sciences Review and Research, 2017, 8(1), 244–250.
  • M.M. Dit, M. Benyahia, F.T. Benali, M. Rahmani and S. Bouazza, Teneur en composés phénoliques et activité antioxydantes de trois espèces algérienne de Lavandula. Phytothérapie, 2017, 15(6), 367–372. doi: 10.1007/s10298-016-1028-5.
  • M.P. Chaves, K.M. Canuto, R.C.A. Pereira, T.H.S. Rodrigues, A.K.B. Pereira, E.S. Brito and G.J. Zocolo , Caracterização dos óleos essenciais de plantas medicinais e aromáticas cultivadas no horto da Embrapa Agroindústria Tropical. 1 edn. Embrapa Agroindústria Tropical. p. 31, 2017.
  • A.J. Demuner, L.C.A. Barbosa, C.G. Magalhães, C.J. Silva, C.R.A. Maltha and A.L. Pinheiro, Seasonal variation in the chemical composition and antimicrobial activity of volatile oils of three species of Leptospermum (Myrtaceae) grown in Brazil. Molecules, 2011, 16(2), 1181–1191. doi: 10.3390/molecules16021181.
  • G.R. Smitha and V. Tripathy, Seasonal variation in the essential oils extracted from leaves and inflorescence of different Ocimum species grown in Western plains of India. Industrial Crops and Products, 2014, 94, 52–64. doi: 10.1016/j.indcrop.2016.07.041.
  • A. Gasparetto, A.B. Cruz, T.M. Wagner, T.J. BonominI, R. Correa and A. Malheiros, Seasonal variation in the chemical composition, antimicrobial and mutagenic potential of essential oils from Piper cernuum. Industrial Crops and Products, 2017, 95, 256–263. doi: 10.1016/j.indcrop.2016.10.030.
  • J.L.S. Carvalho-Filho, A.F. Blank, P.B. Alves, P.A.D. Ehlert, A.S. Melo, S.C.H. Cavalcanti, M.F. Arrigoni-Blank and R. Siva-Mann, Influence of the harvesting time, temperature and drying period on basil (Ocimum basilicum L.) essential oil. Revista Brasileira de Farmacognosia, 2006, 16(1), 24–30. doi: 10.1590/S0102-695X2006000100007.
  • I.B. Nascimento, R. Innecco, S.H. Matos, N.S.S. Borges and C.A. Marco, Influência do horário de corte na produção de óleo essencial de capim-santo (Andropogum sp). Caatinga, 2006, 19(2), 123–127.
  • L.A.S. Morais, Influência dos fatores abióticos na composição química dos óleos essenciais. Horticultura Brasileira, 2009, 27, 4050–4063.
  • M. Dhouioui, A. Boulila, H. Chaabane, M.S. Zina and H. Casabianca, Seasonal changes in essential oil composition of Aristolochia longa L. ssp. paucinervis Batt. (Aristolochiaceae) roots and its antimicrobial activity. Industrial Crops and Products, 2016, 83, 301–306. doi: 10.1016/j.indcrop.2016.01.025.
  • C.F. Bezerra, F.B. Oliveira Neto, F.F.M. Silva, L.M. Bertini and L.A. Alves, Seasonal effect in essential oil composition and antioxidante activity of Plectranthus amboinicus leaves. Bioscience Journal, 2017, 33(6), 1608–1616. doi: 10.14393/BJ-v33n6a2017-37154.
  • F.N. Victoria, E.J. Lenardão, L. Savegnago, G. Perin, R.G. Jacob, D. Alves, W.P. Silva, A.S. Motta and P.S. Nascente, Essential oil of the leaves of Eugenia uniflora L.: antioxidant and antimicrobial properties. Food and Chemical Toxicology, 2012, 50(8), 2668–2674. doi: 10.1016/j.fct.2012.05.002.
  • M.E.A. Stefanello, A.C.R.F. Pascoal and M.J. Salvador, Essential oils from neotropical myrtaceae: chemical diversity and biological properties. Chemistry Biodiversity, 2011, 8(1), 73–94. doi: 10.1002/cbdv.201000098.
  • R.R. Cipriano, B.H.L.N.S. Maia and C. Deschamps, Chemical variability of essential oils of Eugenia uniflora L. genotypes and their antioxidant activity. Anais da Academia Brasileira de Ciências, 2021, 93(1), 1–12. doi: 10.1590/0001-3765202120181299.
  • D.P. Costa, S.C. Santos, J.C. Seraphin and P.H. Ferri, Seasonal variability of essential oils of Eugenia uniflora leaves. Journal of the Brazilian Chemistry Society, 2009, 20(7), 1287–1293. doi: 10.1590/S0103-50532009000700013.
  • W. Köppen, Grundriss Der Klimakunde. W. Guyter, Berlin (1931).
  • H. Van Den Dool and P.D. Kratz, A generalisation of the retention index system including linear temperature programmed gas⎯liquid chromatography. Journal of Chromatography, 1963, 11, 463–471. doi: 10.1016/S0021-9673(01)80947-X.
  • R.P. Adams, Identification of Essential Oil Components by Gas Chromatography/Mass Spectrometry. 4.1 edn. Allured Publishing Corporation, Carol Stream (2017).
  • W. Brand-Williams, M.E. Cuvelier and C. Berset, Use of a free radical method to evaluate antioxidant activity. Lebensmittel-Wissenschaft Technologie, 1995, 28(1), 25–30. doi: 10.1016/S0023-6438(95)80008-5.
  • CLSI, Methods for Dilution Antimicrobial Susceptibility Tests for Bacteria That Grow Aerobically; Approved Standard—Ninth Edition. CLSI document M07-A9. Clinical and Laboratory Standards Institute, Wayne, PA (2012).
  • F.A.S. Silva and C.A.V. Azevedo, The assistat software version 7.7 and its use in the analysis of experimental data. African Journal of Agricultural Research, 2016, 11(39), 3733–3740. doi: 10.5897/AJAR2016.11522.
  • R.C. Team, R: A Language and Environment for Statistical Computing. R Foundation for Statistical Computing, Vienna, Austria (2014).
  • A.I. Hussain, F. Anwar, P.S. Nigam, M. Ashrafd and A.H. Gilanif, Seasonal variation in content, chemical composition and antimicrobial and cytotoxic activities of essential oils from four mentha species. Journal of the Science of Food and Agriculture, 2010, 90(11), 1827–1836. doi: 10.1002/jsfa.4021.
  • D. Sciarrone, A. Schepis, G. Grazia, A. Rotondo, F. Alibrando, R.R. Cipriano, H. Bizzo, C. Deschamps, L.M. Sidisky and L. Mondello, Collection and identification of an unknown component from Eugenia uniflora essential oil exploiting a multidimensional preparative three-GC system employing apolar, mid-polar and ionic liquid stationary phases. Faraday Discussions, 2019, 218, 101–114. doi: 10.1039/C8FD00234G.
  • N. Salem, S. Kefi, O. Tabben, A. Ayed, S. Jallouli, N. Feres, M. Hammami, S. Khammasi, I. Hrigua, S. Nefisi, A. Sghaier, F. Limam and S. Elkahoui, Variation in chemical composition of Eucalyptus globulus essential oil under phenological stages and evidence synergism with antimicrobial standards. Industrial Crops and Products, 2018, 124, 115–125. doi: 10.1016/j.indcrop.2018.07.051.
  • M.E. Maffei, Sites of synthesis, biochemistry and functional role of plant volatiles. South African Journal of Botany, 2010, 76(4), 612–631. doi: 10.1016/j.sajb.2010.03.003.
  • N.N.S. Bonfim, L.P. Nakassugi, J.F.P. Oliveira, C.Y. Kohiyama, S.A.G. Mossini, R. Grespan, S.B. Nerilo, C.A. Mallmann, B.A. Abreu-Filho and M. Machinski, Antifungal activity and inhibition of fumonisin production by Rosmarinus officinalis L. essential oil in Fusarium verticillioides (Sacc.). Food Chemistry, 2015, 166, 330–336. doi: 10.1016/j.foodchem.2014.06.019.
  • Y. Zhang, X. Liu, Y. Wang, P. Jiang and S.Y. Qwuek, Antibacterial activity and mechanism of cinnamon essential oil against Escherichia coli and Staphylococcus aureus. Food Control, 2016, 59, 282–289. doi: 10.1016/j.foodcont.2015.05.032.
  • O. Theanphong, W. Mingvanish and C. Kirdmanee, Chemical constituents and biological activities of essential oil from Curcuma aeruginosa Roxb. rhizome. Bulletin of Health, Science and Technology, 2015, 13(1), 06–16.
  • N. Aligianis, E. Kalpoutzakis, S. Mitaku and I.B. Chinou, Composition and antimicrobial activity of the essential oils of two origanum species. Journal of Agricultural and Food Chemistry, 2001, 49(9), 4168–4170. doi: 10.1021/jf001494m.
  • W.T. Langeveld, E.J.A. Veldhuizen and S.A. Burt, Synergy between essential oil components and antibiotics: a review. Critical Reviews in Microbiology, 2014, 40(1), 76–94. doi: 10.3109/1040841X.2013.763219.
  • S. Burt, Essential oils: their antibacterial properties and potential applications in foods—a review. International Journal of Food Microbiology, 2004, 94(3), 223–253. doi: 10.1016/j.ijfoodmicro.2004.03.022.
  • J.R. Calo, P.G. Crandall, C.A. O’bryan and S.C. Ricke, Essential oils as antimicrobials in food systems - a review. Food Control, 2015, 54, 111–119. doi: 10.1016/j.foodcont.2014.12.040.
  • M.K. Swamy, M.S. Akhtar and U.R. Sinniah, Anticrobial properties of plant essential oil against human pathogens and their mode of action: an updated review. Evidence-Based Complementary and Alternative Medicine, 2016, 2016, 1–21. doi: 10.1155/2016/3012462.

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