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Articles

Chemical composition and biological activities of essential oils of Salvia officinalis aerial parts as affected by diurnal variations

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Pages 264-272 | Received 22 Dec 2017, Accepted 02 May 2018, Published online: 17 May 2018

References

  • Adams RP. 2007. Identification of essential oil components by gas chromatography/mass spectroscopy. 4th ed. Carol Stream (IL): Allured Publishing.
  • Bachrouch O, Ben Jemaa J, Wissem AW, Talou T, Marzouk B, Abderraba M. 2010. Composition and insecticide activities of essential oil of Pistacia Lentiscus L. against Ectomyelois ceratoniae Zeller and Ephestia Kuchniella Zeller (Lepidoptera; Pyralidae). J Stor Prod Res. 46:242–247.10.1016/j.jspr.2010.07.001
  • Bahramikia S, Yazdanparast R. 2001. Phytochemistry and medicinal properties of Teucrium polium L. (Lamiaceae). Phytoth Res 26:1581–1593.
  • Baricevic D, Sosa S, Della Loggia R, Tubaro A, Simonovska B, Krasna A, Zupancic A. 2001. Topical anti-inflammatory activity of Salvia officinalis L. leaves: the relevance of ursolic acid. J Ethnopharm. 75:125–132.10.1016/S0378-8741(00)00396-2
  • Ben Taarit M, Msaada K, Hosni K, Chahed T, Marzouk B. 2010. Essential oil composition of Salvia verbenaca L. growing wild in Tunisia. J Food Biochem. 34:142–151.10.1111/jfbc.2010.34.issue-1
  • Ben Taarit M, Msaada K, Hosni K, Hammami M, Kchouk ME, Marzouk B. 2009. Plant growth, essential oil yield and composition of sage (Salvia officinalis L.) fruits cultivated under salt stress conditions. Ind Crops Prod. 30:333–337.10.1016/j.indcrop.2009.06.001
  • Benhammou N, Bekkara AF. 2005. Contribution à l’étude du pouvoir antifongique de l’huile essentielle d’Inula viscosa. Laboratoire de produits naturels.
  • Bouaziz M, Yangui T, Saya S, Dhouib A. 2009. Disinfectant activities of essential oils from Salvia officinalis L cultivated in Tunisia. Food Chem Toxicol. 47:2755–2760.10.1016/j.fct.2009.08.005
  • Cavalcante GM, Moreira AF, Vasconcelos SD. 2006. Potencialidade inseticida de extratos aquosos de essências florestais sobre mosca-branca. Pesq Agrop Brasil. 41:9–14.10.1590/S0100-204X2006000100002
  • Çirak C, Sağlam B, Ayan AK, Kevseroğlu K. 2006. Morphogenetic and diurnal variation of hypericin in some Hypericum species from Turkey during the course of ontogenesis. Biochem Syst Ecol. 34:1–13.
  • Cowan M. 1999. Plant products as antimicrobial agents. Clinic Microbiol. 12:564–582.
  • De Vasconcelos SMG, Craveiro AA, Abreu Matos FJ, Machado MIL, Alencar JW. 1999. Chemical variation during daytime of constituents of the essential oil of Ocimum gratissimum leaves. Fitoterap. 70:32–34.10.1016/S0367-326X(98)00020-3
  • Dorman HJD, Deans SG. 2000. Antimicrobial agents from plants: antibacterial activity of plant volatile oils. J Appl Microbiol. 88:308–316.10.1046/j.1365-2672.2000.00969.x
  • Eidi A, Eidi M. 2009. Antidiabetic effects of sage (Salvia officinalis L.) leaves in normal and streptozotocin-induced diabetic rats. Diabetes and metabolic syndrome. Clin Res Rev. 3:40–44.
  • Eugénia P, Salgueiro L, Cavaleiro C, Pameira A, Conçalves M. 2007. In vitro susceptibility of certain species of yeast and filamentous fungi with essential oil. Ind Crops Prod. 26:135–141.
  • Filiz A, Mehmet A, Avril H. 2005. Effect of harvesting harvesting hours and drying methods on essential oil content of Lemon balm crown in Eastern mediterranean. Int J Bot. 1: 138–143.
  • Finney DJ. 1971. Probit analysis. London: Cambridge University.
  • Gomes P, Ferreira M. 2001. Organ- and season-dependent variation in the essential oil composition of salvia officinalis L. cultivated at two different sites. J Agric Food Chem. 49:2908–2916.10.1021/jf001102b
  • Gumuscu A, Ipek A, Sarihan EO, Gurbuz B, Kaya MD, Arslan N. 2008. Effects of diurnal and ontogenetic variability on essential oil composition of oregano (Origanum vulgare var. hirtum). Asian J Chem. 20:1290–1294.
  • Hanato T, Kagawa H, Yasuhara T, Okuda T. 1988. Two new flavonoids and other constituents in licorice root: their relative astringency and radical scavenging effect. Chem Pharmac Bull. 36:1090–1097.
  • Hayouni EA, Chraief I, Abedrabba M, Bouix M, Leveau JY, Mohammed, H, Hamdi M. 2008. Tunisian Salvia officinalis L. and Schinus molle L. essential oils: their chemical compositions and their preservative effects against Salmonella inoculated in minced beef meat. Int J Food Microbiol. 125:242–251.10.1016/j.ijfoodmicro.2008.04.005
  • Isman MB, Wan AI, Passreiter CM. 2001. Insecticidal activity of essential oils to the tobacco cutworm, Spodoptera litura. Fitoterap. 72:65–68.10.1016/S0367-326X(00)00253-7
  • Kevseroğlu K, Çlrak C, Özyazlcl GA. 2003. Study on ontogenetic and diurnal variability of Laurel (Laurus nobilis L.) leaves. Turkish J Field Crop 8:29–33.
  • Kintzios SE. 2000. Medicinal and aromatic plants-industrial profiles, Sage, the genus Salvia, 14. The Netherlands: Harwood Academic Publishers.
  • Kizil SA, Ipek N, Arslan K, Khawar M. 2008. Effect of different developing stages on some agronomical characteristics and essential oil composition of oregano (Origanum onites). New Zealand J Crop Hort Sci. 36:71–76.10.1080/01140670809510222
  • Kordali SA, Cakir H, Ozer R, Cakmakci M, Kesdek E. 2008. Antifungal, phytotoxic and insecticidal properties of essential oil isolated fromTurkish Origanum acutidens and its three components, carvacol, thymol and p-cymene. Bio Tech. 99:8788–8795.10.1016/j.biortech.2008.04.048
  • Kotan R, Kordali S, Cakir A, Kesdek M, Kayay H. 2005. Insecticides and antimicrobial activities of essential oil isolated from Turkish Salvia hydrangea DC. Ex Benth. 96:1235–1240.
  • Koul O, Walia S, Dliwal GS. 2008. Essential oil as green pesticides: potential and constraints. Biopest. 4:63–84.
  • Laborda R, Manzano I, Gamόn M, Gavidia I, Pérez-Bermúdez P, Boluda R. 2013. Effects of Rosmarinus officinalis and Salvia officinalis essential oils on Tetranychus urticae Koch (Acari: Tetranychidae). Ind Crops Prod. 48:106–110.10.1016/j.indcrop.2013.04.011
  • Lee B, Anni PC, Tumaalii F, Choi W. 2004. Fumigant toxicity of essential oils from the Myrtaceae family and 1,8-cineole against 3 major stored-grain insects. J Stor Prod Res. 40:553–564.10.1016/j.jspr.2003.09.001
  • Loizzo MR, Saab AM, Tundis R, Statti GA, Menichini F, Lampronti I, Gambari R, Cinatl J, Doerr HW. 2008. Phytochemical analysis and in vitro antiviral activities of the essential oils of seven Lebanon species. Chem Biod. 5:461–470.10.1002/(ISSN)1612-1880
  • Loizzo MR, Tundis R, Menichini F, Saab AM, Statti GA, Menichini F. 2007. Cytotoxic activity of essential oils from Labiatae and Lauraceae families against in vitro human tumor models. Anticanc Res. 27:3293–3299.
  • Lopez-Malo A, Alzamora SM, Palou E. 2006. Aspergillus flavus growth in the presence of chemical preservatives and naturally occurring antimicrobial compounds. Int J Microb. 99:119–128.
  • Lu Y, Foo LY. 2001. Antioxidant activities of polyphenols from sage (Salvia officinalis). Food Chem. 75:197–202.10.1016/S0308-8146(01)00198-4
  • Maksimovic MD, Anijela V, Mladen M, Marija ES, Sabaheta A, Sonja SY. 2007. Effet of the environmental condition on essential oil profile in two dinaric Salvia species: Salvia brachydon vandas and Salvia officinalis L. Biochem Syst Ecol. 35:473–478.10.1016/j.bse.2007.02.005
  • McDonald LL, Guy RH, Speirs RD. 1970. Preliminary evaluation of new candidate materials as toxicants, repellents and attractants against stored product insects. Marketing Res. Rep. No. 882, Agric. Res. Serv., USDA Washington, 8.
  • Mester T, Tien M. 2000. Oxidation mechanism ofligninolytic enzymes involved in the degradation of environmental pollutants. Int Biodet Biodeg. 46:51–59.10.1016/S0964-8305(00)00071-8
  • Miguel MG, Guerrero C, Rodrigues H, Brito JC, Duarte F, Venancio F, Tavares R. 2004. Main components of the essential oils from wild Portuguese Thymus mastichina (L.) L. ssp. mastichina in different developmental stages or under culture conditions. J Essential Oil Res. 16:111–114.10.1080/10412905.2004.9698665
  • Ngamo TSL, Noudjou WF, Ngassoum MB, Mapongmestsem PM, Boubakary ABA, Malaisse F, Haubruge E, Lognay G, Hance T. 2007. Investigations on both chemical composition and insecticidal activities of essential oils of Vepris heterophylla (Rutaceae) from two localities of Northen Cameroon towards Tribolium castaneum (Herbst) (Coleoptera: Tenebrionidae). Int J Biol Sci. 2:57–61.
  • Papachristos DP, Stamopoulos DC. 2002. Repellent, toxic and reproduction inhibitory effects of essential oil vapours on Acanthoscelides obtectus (Say) (Coleoptera: Bruchidae). J Stor Prod Res. 38:117–128.10.1016/S0022-474X(01)00007-8
  • Pavela R. 2004. Insecticidal activity of certain medicinal plants. Fitoterapia. 75:745–749.10.1016/j.fitote.2004.08.005
  • Poitout S, Boes R. 1974. Elevage de plusieurs espèces de lépidoptères Noctuidae sur milieu artificiel riche et sur milieu artificiel simplifié. Annal Zool Ecol Animal. 2: 79–91.
  • Priestley CM, Williamson EM, Wafford KA, Sattelle DB. 2003. Thymol, a constituent of thyme essential oil, is a positive allosteric modulator of human GABA A receptors and a homo-oligomeric GABA receptor from Drosophila melanogaster. Brit J Pharmacol. 140:1363–1372.10.1038/sj.bjp.0705542
  • Radulescu V, Chiliment S, Oprea E. 2004. Capillary gas chromatography–mass spectrometry of volatile and semi-volatile compounds of Salvia officinalis. J of Chrom. 1027:121–126.10.1016/j.chroma.2003.11.046
  • Ramezani S, Rahmanian M, Jahanbin R, Mohajeri F, Rezaei MR, Behnaz Solaimani B. 2009. Diurnal changes in essential oil content of coriander (Coriandrum sativum L.) aerial parts from Iran. Res J Biol Sc. 4:277–281.
  • Russo A, Formisano C, Rigano D, Senatore F, Delfine S, Cardile V, Rosselli S, Bruno M. 2013. Chemical composition and anticancer activity of essential oils of Mediterranean sage (Salvia officinalis L.) grown in different environmental conditions. Food Chem Toxicol. 55:42–47.10.1016/j.fct.2012.12.036
  • Semple RL. 1992. Insect growth regulators. In: Semple RL, Hicks PA, Lozare JV, Castermans A, editors. Towards integrated commodity and pest management in grain storage. A training manual for application in humid tropical storage systems. A REGNET (RAS/86/189) publication in collaboration with NAPHIRE, May 526.
  • Sharma VP. 2003. DDT: the fallen angel. Curr Sci. 85:1532–1537.
  • Simas NK, Lima CE, Conceição SR, Kuster RM, Oliveira AM, Filho AM. 2004. Produtos naturais parancontrole da da transmissão dengue-atividade larvicida de Myroxylon balsamum (Oleo vermelho) e de terpenóides fenilpropanóides. Quimica Novo. 27:46–49.
  • Soylu EM, Soylu S, Kurt S. 2006. Antimicrobial activities of the essential oils of various plants against tomato late blight disease agent. Phytopht Infest Mycopath. 161:119–128.10.1007/s11046-005-0206-z
  • Stamopoulos DC, Damos D, Karagianidou G. 2007. Bioactivité de cinq vapeurs monoterpénoïde à Tribolium confusum (du Val) (Coleoptera: Tenebrionidae). J Stor Prod Res. 43:571–577.10.1016/j.jspr.2007.03.007
  • Statsoft. 1998. STATISTICA, windows (computer program electronic manual). Tulsa (OK): StatSoft Inc.
  • Toncer O, Karaman S, Suleimen K, Emel D. 2009. Changes in essential oil composition of oregano (Origanum onites L.) due to diurnal variations at different development stages. Not Bote Hort Agrobot Cluj-Napoca. 37:177–181.
  • Tripathi AK, Prajapathi V, Verma N, Bhal JR, Bansal RP, Khanuja SPS, Kumar S. 2002. Bioactivities of the leaf essential oils of Curcuma longa (Var. Ch.66) on three species of stored product beetles (Coleoptera). J Ecol Ent. 95:183–189.10.1603/0022-0493-95.1.183
  • Tripathi M, Dubey NK, Shukla AK. 2008. Use of some essential oils as post-harvest botanical fungicides in the management of grey mould of grapes caused by Botrytis cinerea. World J Microbiol Biotech. 24:39–46.10.1007/s11274-007-9435-2
  • Vrushali T, Tare V, Shushil K. 2001. Bioactivity of some medicinal plants against chosen insect pests/vectors. Proceedings of the National Seminar on the Frontiers of Res and Dev in Med Plants, CIMAP, Lucknow, 22p.
  • Vuković-Gacić B, Nikcević S, Berić-Bjedov T, Knezević-Vukcević T, Simić D. 2006. Antimutagenic effect of essential oil of sage (Salvia officinalis L.) and its monoterpenes against UV-induced mutations in Escherichia coli and Saccharomyces cerevisiae. Food Chem Toxicol. 44:1730–1738.10.1016/j.fct.2006.05.011
  • Yaldiz G, Sekeroglu N, Ozgüven M, Kirpik M. 2005. Seasonal and diurnal variability of essential oil and its components in Origanum onites L. grown in the ecological conditions of Cukurova. Grasas y Aceites. 56:254–258.

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