63
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Seasonal variation of yield, chemical composition and antimicrobial activity of Teucrium polium L. essential oil growing in the south of Algeria

, , &
Pages 1208-1219 | Received 15 May 2023, Accepted 24 Aug 2023, Published online: 31 Oct 2023

References

  • Toba, S., Adebayo, E. and Anthony. H. (2013). Control of Toxigenic Fungi an Mycotoxins with Phytochemicals: Potentials and Challenges. Mycotoxin and Food Safety in Developing Countries, Chapter 8: 181-202. In Tech. doi: 10.5772/53477.
  • Paster, N. and Barkai-Golan, R. (2008). Mouldy fruits and vegetables as a source of mycotoxins: part 2, World Mycotoxin J. 1(4): 385-396. doi: 10.3920/WMJ2008.x044
  • Fallik, E. (2008). Physical control of mycotoxigenic fungi. In book: Mycotoxins in Fruits and Vegetables. Doi: 10.1016/B978-0-12-374126-4.00015-2.
  • Lal, M., Begum, T., Gogoi, R., Sarma, N., Munda, S., Pandey, S.K. and Saikia, S. (2022). Anethole rich Clausena heptaphylla (Roxb.) Wight & Arn., essential oil pharmacology and genotoxic efficiencies. Sci. Rep. 12(1): 9978. doi: 10.1038/s41598-022-13511-8
  • Gogoi, R., Sarma, N., Begum, T., Chanda, S.K., Lekhak, H., Sastry, G.N. and Lal, M. (2023). Agarwood (Aquilaria malaccensis L.) a quality fragrant and medicinally significant plant based essential oil with pharmacological potentials and genotoxicity. Ind. Crops Prod. 197: 116535. doi: 10.1016/j.indcrop.2023.116535
  • Gogoi, R., Begum, T., Sarma, N., Pandey, S.K., Bhandari, S., Saikia, S. and Lal, M. (2022). Elemicin-rich Cymbopogonkhasianus (Hack) Stapf (ex Bor) essential oil: Pharmacological Effects, toxicological Investigation, and compositional analysis. Curr. Anal. Chem. 18(10): 1092-1107. doi: 10.2174/1573411018666220615140804
  • Gogoi, R., Sarma, N., Begum, T., Pandey, S.K., and Lal, M. (2020). North-East Indian Chromolaena odorata (L. King Robinson) aerial part essential oil chemical composition, pharmacological activities-neurodegenerative inhibitory and toxicity study. J. Essent Oil Bear Plants. 23(6): 1173-1191. doi: 10.1080/0972060X.2020.1867009
  • Thompson, J.D. (2003). Qualitative and quantitative variation in monoterpene co-occurrence and composition in the essential oil of Thymus vulgaris chemotype. J. Chem. Ecol. 29(4): 859-880. doi: 10.1023/A:1022927615442
  • Robert, G. (2004). Huile essentielle de niaouli Melaleuca quinquenervia dans la prévention des radiodermites du cancer du sein. Phytothérapie. 2(3): 72-76.
  • Giordain, R. and Kaloustian, J. (2006). Action anticandidosique des huiles essentielles: leurs utilisations concomitantes avec des médicaments antifongiques. Phytothérapie. 4(3): 121-124. doi: 10.1007/s10298-006-0165-7
  • Gurib-Fakim, A. (2006). Medicinal plants: traditions of yesterday and drugs of tomorrow. Mol. Aspects Med. 27(1): 1-93. doi: 10.1016/j.mam.2005.07.008
  • Quezel, P. and Santa, S. (1963). Nouvelle flore d'Algérie et des régions désertiques méridionales. Tome II, Ed. CNRS, Paris, P 788.
  • Ozenda P. (1977). Flore du Sahara. Ed.: CNRS, Paris, P 441.
  • Maizi, Y., Meddah, B., Tir Touil Meddah, A. and Gabaldon Hernandez, J.A. (2019). Seasonal variation in essential oil content, chemical composition and antioxidant activity of Teucrium polium L. growing in Mascara (North West of Algeria). J. Appl. Biotechnol. Rep. 6(4): 151-157. doi: 10.29252/JABR.06.04.04
  • Lianopoulou, V., Bosabalidis, A.M., Patakas, A., Lazari, D. and Panteris, E. (2014). Effects of chilling stress on leaf morphology, anatomy, ultrastructure, gas exchange, and essential oils in the seasonally dimorphic plant Teucrium polium (Lamiaceae). Acta Physiol. Plant. 36(8): 2271-2281. doi: 10.1007/s11738-014-1605-x
  • Belmekki, N., Bendimerad, N. and Bekhechi, C. (2013). Chemical analysis and antimicrobial activity of Teucrium polium L. essential oil from Western Algeria. J. Med. Plant Res. 7(14): 897-902.
  • Saleh, I., Abd-El Gawad, A., El Gendy, A.E.N., Abd El Aty, A., Mohamed, T., Kassem, H., and Hegazy, M.E.F. (2020). Phytotoxic and antimicrobial activities of Teucrium polium and Thymus decussatus essential oils extracted using hydrodistillation and microwave-assisted techniques. Plants. 9(6): 716. doi: 10.3390/plants9060716
  • Touaibia, M., Abdelali, M.D., Raber Elmaiz F., and Saidi, F. (2021). Phyto-chemical characterization and evaluation of some biological activities of felty germander essential oil: Teucrium polium L. (Lamiaceae). RHAZES: Green and Appl. Chem. 11(2): 97-107.
  • Sauvage, C.H. (1963). Etages bioclimatiques. In : Atlas du Maroc, sect. II, pl VIb et not. Explic. Rabat, 44p.
  • Babushok, V.I., Linstrom, P.J. and Zenkevich, I.G. (2011). Retention indices for frequently reported compounds of plant essential oils. J. Phys. Chem. Ref. Data. 40(4): 043101.1-47. doi: 10.1063/1.3653552
  • Adams, R.P., (2007). Identificationn of Essential Oil Components by Gas Chromatography/Mass Spectrometry. 4th Ed. Allured Publishing Corporation 362 S. Schmale Road Carol Stream. IL. 60188-2787, 811.
  • CLSI (2017). Reference method for Broth dilution antifungal susceptibility testing of filamentous fungi, approved standard. Clinical and Laboratory Standards Institute, 3rd Ed., M38, 37 (15):14, USA.
  • Sayyad, R. and Farahmandfar, R. (2017). Influence of Teucrium polium L. essential oil on the oxidative stability of canola oil during storage. J. Food Sci. Technol. 5(10): 3073-3081. doi: 10.1007/s13197-017-2743-0
  • Bendjabeur, S., Benchabane, O., Bensouici, C., Hazzit, M., Baaliouamer, A., and Bitam, A. (2018). Antioxidant and anticholinesterase activity of essential oils and ethanol extracts of Thymus algeriensis and Teucrium polium from Algeria. J. Food Meas. Charact. 12(4): 2278-2288. doi: 10.1007/s11694-018-9845-x
  • Boukhebti, H., Ramdani, M., Lasmi, I., Katfi, F., Chaker, A., and Lograda T. (2019). Chemical composition, antimicrobial activity and anatomical study of Teucrium polium L. Asian J. Pharm.Clin. Res. 12(6): 337-341.
  • Hussain, J., Rehman, N.U., Al Harrasi, A., Ali, L., Khan, A.L. and Al broumi, M.A. (2013). Essential oil composition and nutrient analysis of selected medicinal plants in Sultanate of Oman. Asian Pac. J. Trop. Dis. 3(6): 421-428.
  • Heydarzade, A. and Moravvej, G. (2012). Contact toxicity and persistence of essential oils from Foeniculum vulgare, Teucrium polium and Satureja hortensis against Callosobruchus maculatus (Fabricius) adults (Coleoptera: Bruchidae). Turk. J. Entomol. 401 36(4): 507-518.
  • Mahmoudi, R. and Nosratpour, S. (2013). Teucrium polium L. essential oil: phytochemical component and antioxidant properties. Int. Food Res. J. 20(4): 1697-1701.
  • Mahmoudi, R., Zare, P. and Nosratpour, S. (2015). Application of Teucrium polium essential oil and Lactobacillus casei in yoghurt. J. Essent Oil Bear Plants. 18(2): 477-481. doi: 10.1080/0972060X.2014.935066
  • Fertout-Mouri, N., Latrèche, A., Mehdadi, Z., Toumi-Bénali, F. and Khaled, M.B. (2017). Composition chimique et activité antibactérienne de l'huile essentielle de Teucrium polium L. du mont de Tessala (Algérie occidentale). Phytothérapie. 15(6): 346-353. doi: 10.1007/s10298-016-1048-1
  • Farahbakhsh, J., Najafian, S., Hosseinifarahi, M. and Gholipour, S. (2021). Essential oil composition and phytochemical properties from leaves of felty germander Teucrium polium L. and spearmint Mentha spicata L. J. Essent Oil Bear Plants. 24(1): 147-159. doi: 10.1080/0972060X.2021.1896976
  • Boulila, A., Béjaoui, A., Messaoud, C. and Boussaid, M. (2008). Variation of volatiles in Tunisian populations of Teucrium polium L.(Lamiaceae). Chem. Biodivers. 5(7): 1389-1400. doi: 10.1002/cbdv.200890127
  • Li, Y., Kong, D., Fu, Y., Sussman, M.R. and Wu, H. (2020). The effect of developmental and environmental factors on secondary metabolites in medicinal plants. Plant Physiol. Biochem. 148: 80-89. doi: 10.1016/j.plaphy.2020.01.006
  • Borges, C.V., Minatel, I.O., Gomez Gomez, H.A. and Lima, G.P.P. (2017). Medicinal plants: Influence of environmental factors on the content of secondary metabolites. In book: Medicinal plants and environmental challenges. Doi: 10.1007/978-3-319-68717-423 9_15.
  • Yang, L., Wen, K.S., Ruan, X., Zhao, Y.X., Wei, F. and Wang, Q. (2018). Response of plant secondary metabolites to environmental factors. Molecules. 23(4): 762. doi: 10.3390/molecules23040762
  • Asgharipour, M.R. and Shabankare, H.G. (2017). Comparison of chemical composition of Teucrium polium L. essential oil affected by phenological stages. Bangladesh J. Bot. 46(2): 583-588.
  • Lograda, T., Ramdani, M., Chalard, P., Figueredo, G. and Deghar, A. (2014).Chemical analysis and antimicrobial activity of Teucrium polium L. essential oil from eastern Algeria. Am. J. Adv. Drug. Deliv. 2(6): 697-710.
  • Othman, M.B., Salah-Fatnassi, K.B. H., Ncibi, S., Elaissi, A. and Zourgui, L. (2017). Antimicrobial activity of essential oil and aqueous and ethanol extracts of Teucrium polium L. subsp. gabesianum (LH) from Tunisia. Physiol. Mol. Biol. Plants. 23(3): 723-729. doi: 10.1007/s12298-017-0444-9
  • Kerbouche, L., Hazzit, M., Ferhat, M.A., Baaliouamer, A. and Miguel, M.G. (2015). Biological activities of essential oils and ethanol extracts of Teucrium polium subsp. capitatum (L.) Briq. and Origanum floribundum Munby. J. Essent Oil Bear Plants. 18(5): 1197-1208. doi: 10.1080/0972060X.2014.935065
  • Roukia, H., Mahfoud, H.M. and Ould El Hadj, M.D. (2013). Chemical composition and antioxidant and antimicrobial activities of the essential oil from Teucrium polium geyrii (Labiatae). J. Med. Plant Res. 7(20): 1506-1510.
  • Purnavab, S., Ketabchi, S. and Rowshan, V. (2015). Chemical composition and antibacterial activity of methanolic extract and essential oil of Iranian Teucrium polium against some of phytobacteria. Nat. Prod. Res. 29(14): 1376-1379. doi: 10.1080/14786419.2014.1000320
  • Khadhri, A., Aouadhi, C., Masson, E. and Pizzi, A. (2022). Comparison of Essential Oil Composition, Phenolic Compound and Biological Activities of Salvia microphylla and Teucrium polium (Lamiaceae). J. Renew. Mater. 10(6): 1607-1621. doi: 10.32604/jrm.2022.018950
  • Rowayshed, G.H., Abd Elhameed, A.A., Abd Elghany, M.E.A., Shahat, A.A. and Younes, O.A.A. (2014). Effective chemical compounds and antibacterial activities of marjoram leaves, Teucrium leaves and fennel fruits essential oils. Middle East J. Appl. Sci. 451 4(3): 637-647.
  • Houicher, A., Hamdi, M., Hechachna, H. and Özogul, F. (2018). Chemical composition and antifungal activity of Anacyclus valentinus essential oil from Algeria. Food Biosci. 25: 28-31. doi: 10.1016/j.fbio.2018.07.005
  • Houicher, A., Hechachna, H. and Özogul, F. (2016a). In vitro determination of the antifungal activity of Artemisia campestris essential oil from Algeria. Int. J. Food Prop. 19(8): 1749-1756. doi: 10.1080/10942912.2015.1107734
  • Houicher, A., Hechachna, H., Teldji, H. and Ozogul, F. (2016b). In vitro study of the antifungal activity of essential oils obtained from Mentha spicata, Thymus vulgaris, and Laurus nobilis. Recent Patents on Food Nutr. & Agric. 8(2): 99-106.
  • Połeć, K., Wójcik, A., Flasiński, M., Wydro, P., Broniatowski, M. and HącWydro, K. (2019). The influence of terpinen-4-ol and eucalyptol essential oil componentson fungi and plant sterol monolayers. BBA. Biomembranes. 1861(6): 1093-1102. doi: 10.1016/j.bbamem.2019.03.015
  • Ouraïni, D., Agoumi, A., Alaoui, M.I., Alaoui, K., Cherrah, Y., Benlemlih, M. and Belabbas, M.A. (2005). Approche thérapeutique des dermatophyties par les huiles essentielles de plantes aromatiques marocaines. Phytothérapie. 3(1): 3-12. doi: 10.1007/s10298-005-0058-1
  • Jalal, Z., El Atki, Y., Lyoussi, B. and Abdellaoui, A. (2015). Phytochemistry of the essential oil of Melissa officinalis L. growing wild in Morocco: Preventive approach against nosocomial infections. Asian Pac. J. Trop. Biomed. 5(6): 458-461. doi: 10.1016/j.apjtb.2015.03.003
  • Nóbrega, J.R., Silva, D.D.F., Andrade Júnior, F.P.D., Sousa, P.M.S., Figueiredo, P.T.R.D., Cordeiro, L.V. and Lima, E.D.O. (2020). Antifungal action of α-pinene against Candida spp. isolated from patients with otomycosis and effects of its association with boric acid. Nat. Prod. Res. 35(24): 6190-6193. doi: 10.1080/14786419.2020.1837803
  • Macêdo Andrade, A.C., Rosalen, P.L., Freires, I.A., Scotti, L., Scotti, M.T., Aquino, S.G. and De Castro, R.D. (2018). Antifungal activity, mode of action, docking prediction and antibiofilm effects of (+)/β-pinene enantiomers against Candida spp. Curr. Top. Med. Chem. 18(29): 2481-490. doi: 10.2174/1568026618666181115103104
  • Feng, X., Xiao, Z., Yang, Y., Chen, S., Liao, S., Luo, H. and Fan, G. (2021). β-Pinene Derived Products With Enhanced In vitro Antimicrobial Activity. Nat. Prod. Commun. 16(2): 1-8.
  • Chee, H.Y., Kim, H. and Lee, M.H. (2009).In vitro antifungal activity of limonene against Trichophyton rubrum. Mycrobiology. 37(3): 243-246. doi: 10.4489/MYCO.2009.37.3.243
  • Chavan, P.S. and Tupe, S.G. (2014). Antifungal activity and mechanism of action of carvacrol and thymol against vineyard and wine spoilage yeasts. Food Contr. 46: 115-120. doi: 10.1016/j.foodcont.2014.05.007
  • Ojeda Sana, A.M., Van Baren, C.M., Elechosa, M.A., Juárez, M.A. and Moreno, S. (2013). New insights into antibacterial and antioxidant activities of rosemary essential oils and their main components. Food Contr. 31(1): 189-195. doi: 10.1016/j.foodcont.2012.09.022
  • Han, Y., Sun, Z. and Chen, W. (2020). Antimicrobial susceptibility and antibacterial mechanism of limonene against Listeria monocytogenes. Molecules. 25(1): 33. doi: 10.3390/molecules25010033
  • Gupta, A., Jeyakumar, E. and Lawrence, R. (2021). Strategic approach of multifaceted antibacterial mechanism of limonene traced in Escherichia coli. Sci. Reports. 11(1): 13816.
  • Hachlafi, N.E., Aanniz, T., Menyiy, N.E., Baaboua, A.E., Omari, N.E., Balahbib, A. and Bouyahya, A. (2021). In vitro and in vivo biological investigations of camphene and its mechanism insights: a review. Food Rev. Int. 39(4): 1799-1826. doi: 10.1080/87559129.2021.1936007
  • Kachur, K. and Suntres, Z. (2019). The antibacterial properties of phenolic isomers, carvacrol and thymol. Crit. Rev. Food. Sci. Nutr. 60(3): 1-12.
  • Sousa Eduardo, L., Farias, T.C., Ferreira, S.B., Ferreira, P.B., Lima, Z.N. and Ferreira, S.B. (2018). Antibacterial Activity and Time kill Kinetics of Positive Enantiomer of α-pinene Against Strains of Staphylococcus aureus and Escherichia coli. Curr. Top. Med. Chem. 18(11): 917-924. doi: 10.2174/1568026618666180712093914
  • Thakre, A.D., Mulange, S.V., Kodgire, S.S., Zore, G.B. and Karuppayil, S.M. (2016). Effects of cinnamaldehyde, ocimene, camphene, curcumin and farnesene on Candida albicans. Adv. Microbiol. 6(9): 627-643. doi: 10.4236/aim.2016.69062
  • Ivanov, M., Kannan, A., Stojković, D.S., Glamočlija, J., Calhelha, R.C., Ferreira, I.C. and Soković, M. (2021). Camphor and eucalyptol anticandidal spectrum, antivirulence effect, efflux pumps interference and cytotoxicity. Int. J. Mol. Sci. 22(2): 483. doi: 10.3390/ijms22020483
  • Wang, Y., Liu, H. and Zhan, F. (2022). Effects of natural borneol on germ tube formation and preformed biofilm activity in Candida albicans. Nat. Prod. Commun. 17(9): 1934578X221129128.
  • Jing, G.X., Tao, N.G., Jia, L. and Zhou, H.E. (2015). Influence of α-terpineol on the growth and morphogenesis of Penicillium digitatum. Bot. Studies. 56 (1): 1-6.
  • Kong, Q., Zhang, L., An, P., Qi, J., Yu, X., Lu, J. and Ren, X. (2019). Antifungal mechanisms of α-terpineol and terpene-4-alcohol as the critical components of Melaleuca alternifolia oil in the inhibition of rot disease caused by Aspergillus ochraceus in postharvest grapes. J. Appl. Microbiol. 126(4): 1161-1174. doi: 10.1111/jam.14193

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.