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Articles

Effect of the Interaction between Salicylic Acid and Geographical Locations on Grapefruit Essential Oil

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Pages 1594-1603 | Received 16 Mar 2018, Accepted 27 Oct 2018, Published online: 11 Mar 2019

References

  • Schieber, A., Stintzing, F.C. and Carle, R. (2001). By-products of plant food processing as a source of functional compounds recent developments. Tren. Food Sci. Tech. 401–413. doi: 10.1016/S0924-2244(02)00012-2
  • Fernández-Ginés, J.M., Fernández-López, J., Sayas-Barberá, E., Sendra, E. and Pérez-Álvarez, J.A. (2004). Lemon albedo as a new source of dietary fiber: Application to bologna sausages. Meat Sci. 67: 7–13. doi: 10.1016/j.meatsci.2003.08.017
  • Bender, D.A. and Bender, A.E. (2005). A Dictionary of Food and Nutrition. New York, USA: Oxford University Press.
  • Uysal, B., Sozmen, F., Aktas, O., Oksal, B. S. and Kose, O. E. (2011). Essential oil composition and antibacterial activity of the grapefruit (Citrus Paradisi L.) peel essential oils obtained by solvent-free microwave extraction: comparison with hydrodistillation. Int. J. Food Sci. Tech. 46: 1455–1461. doi: 10.1111/j.1365-2621.2011.02640.x
  • Viuda-Martos, M., Ruiz-Navajas, Y., Fernández-López, J. and Pérez-Álvarez, J. A. 2009. Chemical composition of mandarin (C. reticulata L.), grapefruit (C. paradisi L.), Lemon (C. limon L.) and Orange (C. sinensis L.) essential oils. J. Essent. Oil Bearing Plant. 12(2): 236–243. doi: 10.1080/0972060X.2009.10643716
  • Paoli, M., de Rocca Serra, D., Tomi, F., Luro, F. and Bighelli, A. (2016). Chemical composition of the leaf essential oil of grapefruits (Citrus paradisi Macf.) in relation with the genetic origin. J. Essent. Oil Res. 28(4): 265–271. doi: 10.1080/10412905.2016.1140090
  • Bukar, B.B., Dayom, D.W. and Uguru, M.O. (2016). The growing economic importance of medicinal plants and the need for developing countries to harness from it: A Mini Review. IOSR J. Pharm. 6: 42–52.
  • Raskin, I., Skubatz, Z., Tang, W. and Meeuse, B.J.D. (1990). Salicylic acid levels in thermogenic and non-thermo-genic plants. Ann. Bot. 66: 369–373. doi: 10.1093/oxfordjournals.aob.a088037
  • Ward, E.R., Uknes, S.J.J., Williams, S.C., Dincher, S.S., Wiederhold, D.L., Alexander, D.C., Ahlgoy, P., Metraux, J.P. and Ryals, J.A. (1991). Coordinate gene activity in response to agents that induce systemic acquired resistance. Plant Cell. 3: 1085–1094. doi: 10.1105/tpc.3.10.1085
  • Enyedi, A., Yalpini, N., Silverman, P. and Raskin, I. (1992). Localization, conjugation, and function of salicylic acid in tobacco during the hypersensitive reaction to tobacco mosaic virus. Proc. Nat. Acad. Sci. USA. 89: 2480–2484. doi: 10.1073/pnas.89.6.2480
  • Jalal, R.S., Bafeel, S.O. and Moftah, A.E. (2012). Effect of salicylic acid on growth, photo-synthetic pigments and essential oil components of Shara (Plectranthus tenuiflorus) plants grown under drought stress conditions. Int. Res. J. Agric. Soil Sci. 2: 252–260.
  • Rowshan, V. and Bahmanzadegan, A. (2013). Effects of salicylic acid on essential oil components in Yarrow (Achillea millefolium Boiss). Int. J. Bas. Sci. App. Res. 2(4): 453–457.
  • Pirbalouti, A. G., immalek, M. R., Nejhad, L. E. and Hamedi, B. (2016). Essential oil compositions of summer savory under foliar application of jasmonic acid and salicylic acid. J. Essent. Oil Res. 26(5): 342–347. doi: 10.1080/10412905.2014.922508
  • Pirbalouti, A. G., Samani, M. R., Hashemi, M. and Zeinali, H. (2014). Salicylic acid affects growth, essential oil and chemical compositions of thyme (Thymus daenensis Celak.) under reduced irrigation. Plant Growth Reg. 72(3): 289–301. doi: 10.1007/s10725-013-9860-1
  • Saharkhiz, M. J. and Goudarzi, T. (2014). Foliar application of salicylic acid changes essential oil content and chemical compositions of peppermint (Mentha piperita L.). J. Essent. Oil Bearing Plant. 17(3): 435–440. doi: 10.1080/0972060X.2014.892839
  • Goudarzi, T., Saharkhiz, M. J., Rowshan, V. and Taban, A. (2016). Changes in essential oil content and composition of Tansy (Tanacetum vulgare L.) under foliar application of salicylic and ortho-phosphoric acids. J. Essent. Oil Res. 28 (1): 64–70. doi: 10.1080/10412905.2015.1077166
  • Khanam, D. and Mohammad, F. (2017). Effect of structurally different plant growth regulators (PGRs) on the concentration, yield, and constituents of peppermint essential oil. J. Herb. Spic. Med. Plant. 23(1): 26–35. doi: 10.1080/10496475.2016.1254700
  • Talaat, I.M., Khattab, H.I. and Ahmed, A.M. (2014). Changes in growth, hormones levels and essential oil content of Ammi visnaga L. plants treated with some bioregulators. Saudi J. Bio. Sci. 21: 355–365. doi: 10.1016/j.sjbs.2013.10.008
  • Nourafcan, H., Sefidkon, F., Khaligi, A., Mousavi, A. and Sharifi, M. (2014). Effects of sali-cylic acid on quality and quantity of essential oil components in Lippia citriodora H.B.K. Int. J. Biosci. 5(3): 252–25. doi: 10.12692/ijb/5.3.252-259
  • Chialva, F., Ariozzi, A., Decastri, D., Manitto, P., Clementi, S. and Bonelli, D. (1993). Chemo metric investigation on Italian peppermint oils. J. Agric. Food Chem. 41: 2028–2033. doi: 10.1021/jf00035a041
  • Ciobanu, Y., Peleah, E., Pisova, M. and Zueva, A., (2002). Comparison of essential oil composition of Mentha arvenses L. from different geographical regions. Koer. Yos. 46(91): 23–29.
  • Teles, S., Pereira, J.A., Santos, C.H.B., Menezes, R.V., Malheiro, R., Lucchese, A.M. and Silva, F. (2012). Geographical origin and drying methodology may affect the essential oil of Lippia alba (Mill). Ind. Crop. Prod. 37: 247–252. doi: 10.1016/j.indcrop.2011.12.029
  • Omidbaigi, R. and Arvin. M.J. (2009). Effect of growing locations on the essential oil content and chemical compositions of Bunium persicum Boiss wild growing in Iran. J. Essent. Oil Bearing Plant. 12(1): 34–40. doi: 10.1080/0972060X.2009.10643688
  • Teles, S., Pereira, J. A., Santos, C.H.B., Meneze, R.V., Malheiro, R., Lucches, A.M. and Silva, F. (2013). Effect of geographical origin on the essential oil content and composition of fresh and dried Mentha × villosa Hudson leaves. Ind. Crop. Prod. 46: 1–7. doi: 10.1016/j.indcrop.2012.12.009
  • Ibrahim, M.E., Mohamed, M.A. and Khalid, K.A. (2014). Effect of growing locations on the essential oil content and compositions of lemon verbena shrubs under the conditions of Egypt. J. Essent. Oil Bearing Plant. 17(2): 288–294. doi: 10.1080/0972060X.2014.895153
  • Khalid, A.K. and da Silva, J.T. (2010). Yield, essential oil and pigment content of Calendula officinalis L. flower heads cultivated under salt stress conditions. Scient. Hort. 126: 297–305. doi: 10.1016/j.scienta.2010.07.023
  • Jackson, M.L. (1973). Soil chemical analysis. Published by prentice Hall Indian Private Limited. M. 97, Connght Citrus, New Delhi; India
  • Cottenie, A., Verloo, M., Kiekens, L., Velghe, G. and Camerlynck, R. (1982). Chemical Analysis of Plant and Soil, Laboratory of Analytical and Agro chemistry,State Univ. Ghent; Belgium. Kalyani Publisher. Pp: 100–129.
  • Clevenger, J.F. (1928). Apparatus for determination of essential oil. J. Amer. Pharm. Ass. 17: 346–349.
  • Adams, R.P. (1995). Identification of Essential Oil Components by Gas Chromatography/Mass Spectrometry. Allured Publ. Corp., Carol Stream, IL.
  • Snedecor, G.W. and Cochran, W.G. (1990). Statistical Methods. 11th Ed. Iowa State Univ, Press. Ames, Iowa, USA.
  • Foucart, T. (1982). Analyse Factorielle, Programmatiol Sur Micro-ordinateur. Masson, ITCF, Paris.
  • Rowshan, V., Khosh, M.K. and Javidnia, K. (2010). Effects of Salicylic Acid on quality and quantity of essential oil components in Salvia macrosiphon. J. Boi. Eenv. Sci. 4(11): 77–82.
  • Abdou, M. and Mohamed, M.A.H. (2014). Effect of plant compost, salicylic and ascorbic acids on Mentha piperita L. plants. Bio. Agric. Hort. 30(2): 131–143. doi: 10.1080/01448765.2014.882796
  • Heywood, V.H. (2002). The Conservation of Genetic and Chemical Diversity in Medicinal and Aromatic Plants (in Biodiversity): Biomolecular Aspects of Biodiversity and Innovative Utilization, Ed. B. Sener, Springer, New York, 13–22.
  • Figueiredo, A.C., Barroso, J.G., Pedro, L.G. and Scheffer, J.C. (2008). Factors affecting secondary metabolite production in plants: volatile components and essential oils. Flav. Frag. J. 23: 213–226. doi: 10.1002/ffj.1875
  • Stefanaki, A., Cook, C.M., Lanaras, T. and Kokkini, S. (2016). The Oregano plants of Chios island (Greece): Essential oils of Origanum onites L. growing wild in different habitats. Ind. Crops Prod. 82: 107–113. doi: 10.1016/j.indcrop.2015.11.086
  • Formisano, C., Del Fine Oliviero, S.F., Tenore, G.C., Rigano, D. and Senatore, F. (2015). Correlation among environmental factors, chemical composition and antioxidative properties of essential oil and extracts of chamomile (Matricaria chamomilla L.) collected in Molise (South Central Italy). Ind. Crop. Prod. 63: 256–263. doi: 10.1016/j.indcrop.2014.09.042
  • Robson, A.D. (1989). Soil Acidity and Plant Growth’, Academic Press, Sydney, Australia.
  • Edreva, A., Velikova, V., Tsonev, T., Dagnon, S., Geurel, A., Aktas, L. and Gesheva, E. (2008). Stress protective role of secondary metabolites: Diversity of functions and mechanisms. Gen. App. Plant Phys. 34: 67–78.
  • Ko, G. and Fidis, A.M. (2008). Effects of altitude and season on glandular hairs and leaf structural traits of Nepeta nuda L. Bot. Stud. 49: 363–372.
  • Aissi, O., Boussaid, M. and Messaoud, C. (2016). Essential oil composition in natural populations of Pistacia lentiscus L. from Tunisia: Effect of ecological factors and incidence on anti-oxidant and antiacetylchol inesterase activities. Ind. Crops Prod. 91: 56–65. doi: 10.1016/j.indcrop.2016.06.025
  • Aboukhalid, K., Alfaiz, C.A., Douaik, Bakha M., Kursa, K., Agacka-Mo³doch, M., Machon, N., Tomi, F. and Lamiri, A. (2017). Influence of environmental factors on essential oil variability in Origanum compactum BENTH. growing wild in Morocco. Chem. Biodiv. 1–17, e17 00158.

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