Chemical Composition, Antioxidants, Antibacterial, and Insecticidal Activities of Origanum elongatum (Bonnet) Emberger & Maire Aerial Part Essential Oil from Morocco
Abstract
:1. Introduction
2. Results and Discussion
2.1. The Yield of the Essential Oil
2.2. Chemical Composition of O. elongatum Essential Oil
2.3. Antioxidant Activity of the Essential Oil of O. elongatum
2.4. Antibacterial Activity of the EO of O. elongatum
2.5. Insecticidal Activity
3. Materials and Methods
3.1. Plant Material
3.2. Extraction of the Essential Oils
3.3. Gas Chromatography Coupled with Mass Spectrometry Analysis of Essential Oils
3.4. Determination of the Antioxidant Activity of the Essential Oil of O. elongatum
3.4.1. Antiradical of DPPH Method
3.4.2. Method of the Reduction of Iron: FRAP (Ferric Reducing Antioxidant Power)
3.4.3. Total Antioxidant Activity by Phosphomolybdenum Method
3.5. Determination of the Antibacterial Activity
3.5.1. Bacterial Strains
3.5.2. Agar Disk Diffusion Assay
3.5.3. Determination of the Minimum Inhibitory Concentration (MIC) and the Minimum Bactericidal Concentration (MBC) in the Liquid Medium
3.6. Determination of the Insecticidal Activity
3.6.1. Animal Matter
3.6.2. Preparation of the Concentrations
3.7. Statistical Analysis
4. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Franz, C.; Novak, J. Sources of Essential Oils; CRC Press: Boca Raton, FL, USA, 2015. [Google Scholar] [CrossRef]
- Mancianti, F.; Ebani, V.V. Biological activity of essential oils. Molecules 2020, 25, 678. [Google Scholar] [CrossRef] [Green Version]
- Sharifi-Rad, J.; Sureda, A.; Tenore, G.C.; Daglia, M.; Sharifi-Rad, M.; Valussi, M.; Tundis, R.; Sharifi-Rad, M.; Loizzo, M.R.; Ademiluyi, A.O.; et al. Biological activities of essential oils: From plant chemoecology to traditional healing systems. Molecules 2017, 22, 70. [Google Scholar] [CrossRef] [PubMed]
- Saeed, K.; Pasha, I.; Chughtai, M.F.J.; Ali, Z.; Bukhari, H.; Zuhair, M. Application of essential oils in food industry: Challenges and innovation. J. Essent. Oil Res. 2022, 34, 97–110. [Google Scholar] [CrossRef]
- Khorshidian, N.; Yousefi, M.; Khanniri, E.; Mortazavian, A.M. Potential application of essential oils as antimicrobial preservatives in cheese. Innov. Food Sci. Emerg. Technol. 2018, 45, 62–72. [Google Scholar] [CrossRef]
- Sanches-Silva, A.; Costa, D.; Albuquerque, T.G.; Buonocore, G.G.; Ramos, F.; Castilho, M.C.; Machado, A.V.; Costa, H.S. Trends in the use of natural antioxidants in active food packaging: A review. Food Addit. Contam.—Part A 2014, 31, 374–395. [Google Scholar] [CrossRef]
- Sharifi-Rad, M.; Yılmaz, Y.B.; Antika, G.; Salehi, B.; Tumer, T.B.; Venil, C.K.; Das, G.; Patra, J.K.; Karazhan, N.; Akram, M.; et al. Phytochemical constituents, biological activities, and health-promoting effects of the genus Origanum. Phyther. Res. 2021, 35, 95–121. [Google Scholar] [CrossRef] [PubMed]
- Baranauskaitė, J.; Kubiliene, A.; Marksa, M.; Petrikaite, V.; Vitkevicius, K.; Baranauskas, A.; Bernatoniene, J. The Influence of Different Oregano Species on the Antioxidant Activity Determined Using HPLC Postcolumn DPPH Method and Anticancer Activity of Carvacrol and Rosmarinic Acid. Biomed Res. Int. 2017, 2017, 1681392. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Morshedloo, M.R.; Mumivand, H.; Craker, L.E.; Maggi, F. Chemical composition and antioxidant activity of essential oils in Origanum vulgare subsp. gracile at different phenological stages and plant parts. J. Food Process. Preserv. 2018, 42, 1–8. [Google Scholar] [CrossRef]
- Sözmen, F.; Uysal, B.; Köse, E.O.; Aktaş, Ö.; Cinbilgel, I.; Oksal, B.S. Extraction of the essential oil from endemic origanum bilgeri P.H. davis with two different methods: Comparison of the oil composition and antibacterial activity. Chem. Biodivers 2012, 9, 1356–1363. [Google Scholar] [CrossRef] [PubMed]
- Vila, R.; Iglesias, J.; Cañigueral, S.; Santana, A.I.; Solís, P.N.; Gupta, M.P. Chemical composition and biological activity of the leaf oil of Siparuna thecaphora (poepp. et endl.) a.dc. J. Essent. Oil Res. 2002, 14, 66–67. [Google Scholar] [CrossRef]
- Bellakhdar, J. La pharmacopée marocaine traditionnelle. Médicine Arab. Ancienne Savoirs Pop. 1997, 189, 764. [Google Scholar]
- El Moussaoui, N.; Sanchez, G.; Khay, E.O.; Idaomar, M.; Ibn Mansour, A.; Abrini, J.; Aznar, R. Antibacterial and anti-viral activities of essential oils of northern Moroccan plants. Br. Biotechnol. J. 2013, 3, 318–331. [Google Scholar] [CrossRef]
- Ramzi, H.; Ismaili, M.R.; Aberchane, M.; Zaanoun, S. Chemical characterization and acaricidal activity of Thymus satureioides C. & B. and Origanum elongatum E. & M. (Lamiaceae) essential oils against Varroa destructor Anderson & Trueman (Acari: Var-roidae). Ind. Crops Prod 2017, 108, 201–207. [Google Scholar] [CrossRef]
- Bakha, M.; El Mtili, N.; Machon, N.; Aboukhalid, K.; Amchra, F.Z.; Khiraoui, A.; Gibernau, M.; Tomi, F.; Al Faiz, C. Intraspecific chemical variability of the essential oils of Moroccan endemic Origanum elongatum L. (Lamiaceae) from its whole natural habitats. Arab. J. Chem 2018, 20, 1–14. [Google Scholar] [CrossRef]
- El Babili, F.; Bouajila, J.; Souchard, J.P.; Bertrand, C.; Bellvert, F.; Fouraste, I.; Moulis, C.; Valentin, A. Oregano: Chemical analysis and evaluation of its antimalarial, antioxidant, and cytotoxic activities. J. Food Sci. 2011, 76, 512–518. [Google Scholar] [CrossRef]
- El Harsal, A.; Ibn Mansour, A.; Senhaji, N.S.; Khay, E.O.; Bouhdid, S.; Amajoud, N.; Farah, A.; Belmehdi, O.; Abrini, J. Influence of Extraction Time on the Yield, Chemical Composition, and Antibacterial Activity of the Essential Oil from Origanum elongatum (E. & M.) Harvested at Northern Morocco. J. Essent. Oil-Bearing Plants 2018, 21, 1460–1474. [Google Scholar] [CrossRef]
- Abdelaali, B.; El Menyiy, N.; El Omari, N.; Benali, T.; Guaouguaou, F.-E.; Salhi, N.; Mrabti, H.N.; Bouyahya, A. Phytochemistry, Toxicology, and Pharmacological Properties of Origanum elongatum. Evid.-Based Complement. Altern. Med 2021, 2021, 13–16. [Google Scholar] [CrossRef]
- Cosentino, S.; Tuberoso, C.; Pisano, M.B.; Satta, M.; Mascia, V.; Arzedi, E.; Palmas, F. In-Vitro antimicrobial activity and chemical composition of Sardinian Thymus essential oils. Lett. Appl. Microbiol. 1999, 29, 130–135. [Google Scholar] [CrossRef]
- Bellakhdar, J.; Idrissi, A. Composition chimique des huiles essentielles de trios origans endémiques du Maroc: O. compactumBenth., O. grosii Pau and FQ., O. elongatum Emb and Mair. Proc. Lst Eur. Symp. Ethnopharmacol. Sources Methods Object. 1990, 12, 440–445. [Google Scholar]
- Figuérédo, G.; Cabassu, P.; Chalchat, J.C.; Pasquier, B. Studies of mediterranean oregano populations. VI: Chemical composition of essential oils of Origanum elongatum emberger et maire from Morocco. J. Essent. Oil Res 2006, 18, 278–280. [Google Scholar] [CrossRef]
- Oualili, H.; Nmila, R.; Chibi, F.; Mariama, L.; Abderrahmane, M.; Rchid, H. Chemical Composition and Antioxidant Activity of Origanum elongatum Essential Oil. Pharmacognosy Res. 2020, 10, 24–30. [Google Scholar] [CrossRef]
- Oumam, N.; Rais, A.; Benaamara, A.; Fatouma, M.A.-L.; Ayoub, A.; André, P.; Tarik, A.; Abourriche, A. Chemical composition and biological activities of essential oils and solvent extracts of Origanum elongatum from Morocco. PharmacologyOnLine 2021, 2, 527–537. [Google Scholar] [CrossRef] [Green Version]
- Hayani, M.; Bencheikh, N.; Ailli, A.; Bouhrim, M.; Elbouzidi, A.; Ouassou, H.; Kharchoufa, L.; Baraich, A.; Atbir, A.; Ayyad, F.Z.; et al. Quality Control, Phytochemical Profile, and Antibacterial Effect of Origanum compactum Benth. Essential Oil from Morocco. Int. J. Plant Biol. 2022, 13, 546–560. [Google Scholar] [CrossRef]
- Ložiene, K.; Venskutonis, P.R. Influence of environmental and genetic factors on the stability of essential oil composition of Thymus pulegioides. Biochem. Syst. Ecol. 2005, 33, 517–525. [Google Scholar] [CrossRef]
- Kulkarni, R.N.; Baskaran, K.; Ramesh, S.; Kumar, S. Intra-clonal variation for essential oil content and composition in plants derived from leaf cuttings of rosescented geranium (Pelargonium sp.). Ind. Crops Prod 1997, 6, 107–112. [Google Scholar] [CrossRef]
- Xu, J.; Zhou, F.; Ji, B.P.; Pei, R.S.; Xu, N. The antibacterial mechanism of carvacrol and thymol against Escherichia coli. Lett. Appl. Microbiol. 2008, 47, 174–179. [Google Scholar] [CrossRef]
- Bouhdid, S.; Skali, S.; Idaomar, M.; Zhiri, A.; Baudoux, D.; Amensour, M.; Abrini, J. Antibacterial and antioxidant activities of Origanum compactum essential oil. African J. Biotechnol. 2008, 7, 1563–1570. [Google Scholar] [CrossRef]
- Hazzit, M.; Baaliouamer, A.; Faleiro, M.L.; Miguel, M.G. Composition of the essential oils of Thymus and Origanum species from Algeria and their antioxidant and antimicrobial activities. J. Agric. Food Chem. 2006, 54, 6314–6321. [Google Scholar] [CrossRef]
- Hazzit, M.; Baaliouamer, A.; Veríssimo, A.R.; Faleiro, M.L.; Miguel, M.G. Chemical composition and biological activities of Algerian Thymus oils. Food Chem. 2009, 116, 714–721. [Google Scholar] [CrossRef]
- Amorati, R.; Foti, M.C.; Valgimigli, L. Antioxidant activity of essential oils. J. Agric.Food Chem. 2013, 61, 10835–10847. [Google Scholar] [CrossRef]
- Baser, K.H.C. Biological and Pharmacological Activities of Carvacrol and Carvacrol Bearing Essential Oils. Curr. Pharm. Des. 2008, 14, 3106–3119. [Google Scholar] [CrossRef]
- Baydar, H.; Sa, O.; Özkan, G.; Karado, T. Antibacterial activity and composition of essential oils from Origanum, Thymbra and Satureja species with commercial importance in Turkey. Food Control. 2004, 15, 169–172. [Google Scholar] [CrossRef]
- Ünde, Ü.; Başaran, A.; Degen, G.H.; Başaran, N. Antioxidant activities of major thyme ingredients and lack of (oxidative) DNA damage in V79 Chinese hamster lung fibroblast cells at low levels of carvacrol and thymol. Food Chem. Toxicol. 2009, 47, 2037–2043. [Google Scholar] [CrossRef]
- Guimarães, A.G.; Xavier, M.A.; De Santana, M.T.; Camargo, E.; Santos, C.A.; Brito, F.A.; Barreto, E.O.; Cavalcanti, S.C.H.; Antoniolli, A.R.; Oliveira, R.C.M.; et al. Carvacrol attenuates mechanical hypernociception a’d inflammatory response. Naunyn-Schmiedeberg's Arch. Pharmacol 2012, 385, 253–263. [Google Scholar] [CrossRef]
- Miladi, H.; Slama, R.B.; Mili, D.; Zouari, S.; Bakhrouf, A.; Ammar, E. Essential oil of Thymus vulgaris L. and Rosmarinus offici-nalis L.: Gas chromatography-mass spectrometry analysis, cytotoxicity and antioxidant properties and antibacterial activities against foodborne pathogens. Nat. Sci. 2013, 5, 729–739. [Google Scholar] [CrossRef] [Green Version]
- Bouyahya, A.; Dakka, N.; Talbaoui, A.; Et-Touys, A.; El-Boury, H.; Abrini, J.; Bakri, Y. Correlation between phenological changes, chemical composition and biological activities of the essential oil from Moroccan endemic Oregano (Origanum compactum Benth). Ind. Crops Prod. 2017, 108, 729–737. [Google Scholar] [CrossRef]
- Bekhechi, C.; Atik-Bekkara, F.; Abdelouahid, D.E. Composition et activité antibactérienne des huiles essentielles d’Origanum glandulosum d’Algérie. Phytotherapie 2008, 6, 153–159. [Google Scholar] [CrossRef]
- Stefanakis, M.K.; Touloupakis, E.; Anastasopoulos, E.; Ghanotakis, D.; Katerinopoulos, H.E.; Makridis, P. Antibacterial activity of essential oils from plants of the genus Origanum. Food Control 2013, 34, 539–546. [Google Scholar] [CrossRef]
- Özkalp, B.; Sevgi, F.; Özcan, M.; Özcan, M.M. The antibacterial activity of essential oil of oregano (Origanum vulgare L.). J. Food Agric. Environ 2010, 8, 6–8. [Google Scholar]
- Prerna, P.; Vasudeva, N. Origanum majorana L. -Phytopharmacological review. Indian J. Nat. Prod. Resour 2015, 6, 261–267. [Google Scholar]
- Bouyahya, A.; Abrini, J.; Bakri, Y.; Dakka, N. Screening phytochimique et évaluation de l’activité antioxydante et antibactérienne des extraits d’Origanum compactum. Phytotherapie 2017, 15, 379–383. [Google Scholar] [CrossRef]
- Laghmouchi, Y.; Belmehdi, O.; Senhaji, N.S.; Abrini, J. Chemical composition and antibacterial activity of Origanum compactum Benth. essential oils from different areas at northern Morocco. South African J. Bot. 2018, 115, 120–125. [Google Scholar] [CrossRef]
- Ouedrhiri, W.; Balouiri, M.; Bouhdid, S.; Moja, S.; Chahdi, F.O.; Taleb, M.; Greche, H. Mixture design of Origanum compactum, Origanum majorana and Thymus serpyllum essential oils: Optimization of their antibacterial effect. Ind. Crops Prod. 2016, 89, 1–9. [Google Scholar] [CrossRef]
- Burt, S. Essential oils: Their antibacterial properties and potential applications in foods—A review. Int. J. Food Microbiol. 2004, 94, 223–253. [Google Scholar] [CrossRef]
- Ultee, A.; Kets, E.P.W.; Smid, E.J. Mechanisms of Action of Carvacrol on the Food-Borne Pathogen Bacillus cereus. Appl. Environ. Microbiol. 1999, 65, 4606–4610. [Google Scholar] [CrossRef] [Green Version]
- Abdelgaleil, S.A.M.; Mohamed, M.I.E.; Badawy, M.E.I.; El-Arami, S.A.A. Fumigant and contact toxicities of monoterpenes to Sitophilus oryzae (L.) and Tribolium castaneum (Herbst) and their inhibitory effects on acetylcholinesterase activity. J. Chem. Ecol 2009, 35, 518–525. [Google Scholar] [CrossRef]
- Lima, R.K.; Cardoso, M.G.; Moraes, J.C.; Carvalho, S.M.; Rodrigues, V.G.; Guimarães, L.G.L. Chemical composition and fumigant effect of essentialoil of Lippia sidoides Cham. and monoterpenes against Tenebrio molitor (L.) (coleoptera: Tenebrio-nidae). Ciênc. Agrotecnol 2011, 35, 664–671. [Google Scholar] [CrossRef]
- Yakhlef, G.; Hambaba, L.; Pinto, D.C.G.A.; Silva, A.M.S. Chemical composition and insecticidal, repellent and antifungal activities of essential oil of Mentha rotundifolia (L.) from Algeria. Ind. Crops Prod 2020, 158, 112988. [Google Scholar] [CrossRef]
- Benchouikh, A.; Allam, T.; Kribii, A.; Ounine, K. The Study of the Insecticidal Effect of Nigella Sativa Essential Oil Against Tuta Absoluta Larvae. Int. J. Sci. Technol. Res. 2015, 4, 88–90. [Google Scholar]
- Bisrat, D.; Jung, C. Insecticidal Toxicities of Three Main Constituents Derived from Trachyspermum ammi (L.) Sprague ex Turrill Fruits against the Small Hive Beetles, Aethina tumida Murray. Molecules 2020, 25, 2–11. [Google Scholar] [CrossRef] [Green Version]
- Youssefi, M.R.; Tabari, M.A.; Esfandiari, A.; Kazemi, S.; Moghadamnia, A.A.; Sut, S.; Dall’Acqua, S.; Benelli, G.; Maggi, F. Efficacy of Two Monoterpenoids, Carvacrol and Thymol, and Their Combinations against Eggs and Larvae of the West Nile Vector Culex pipiens. Mol. Artic. 2019, 24, 1867. [Google Scholar] [CrossRef] [Green Version]
- Khanavi, M.; Laghaei, P.; Isman, M.B. Essential oil composition of three native Persian plants and their inhibitory effects in the cabbage looper, Trichoplusia ni. J. Asia. Pac. Entomol. 2017, 20, 1234–1240. [Google Scholar] [CrossRef]
- Park, J.H.; Jeon, Y.J.; Lee, C.H.; Chung, N.; Lee, H.S. Insecticidal toxicities of carvacrol and thymol derived from Thymus vulgaris Lin. against Pochazia shantungensis Chou &lu., newly recorded pest. Sci. Rep. 2017, 7, 1–7. [Google Scholar] [CrossRef] [Green Version]
- Erler, F.; Tunc, I. Monoterpenoids as fumigants against greenhouse pests: Toxic, development and reproduction-inhibiting effects. J. Plant Dis. Prot. 2005, 112, 181–192. [Google Scholar]
- Amarti, F.; El Ajjouri, M.; Ghanmi, M.; Satrani, B.; Aafi, A.; Farah, A.; Khia, A.; Guedira, A.; Rahouti, M.; Chaouch, A. Composition chimique, activité antimicrobiennne et antioxydante de l’huile essentielle de Thymus zygis du Maroc. Phytotherapie 2011, 9, 149–157. [Google Scholar] [CrossRef]
- Adams, R.P. Identification of essential oil components by gas chromatography/mass spectroscopy. J. Am. Soc. Mass Spectrom. 1997, 8, 671–672. [Google Scholar] [CrossRef] [Green Version]
- Clevenger, J.F. American pharmaceutical association apparatus for the determination of volatile oil. J. Pharm. Sci. 1928, 17, 345–349. [Google Scholar]
- Kovats, E.S. Gas chromatographic characterization of organic substances in the retention index system. Adv. Chromatogr. 1965, 1, 229–247. [Google Scholar]
- Koncic, M.Z.; Kremer, D.; Karlovic, K.; Kosalec, I. Evaluation of antioxidant activities and phenolic content of Berberis vulgaris L. and Berberis croatica Horvat. Food Chem. Toxicol. J. 2010, 48, 2176–2180. [Google Scholar] [CrossRef]
- Sagdic, O.; Aksoy, A.; Ozkan, G. Evaluation of the Antibacterial and Antioxidant Potentials of Cranberry (Gilaburu, Viburnum opulus L.) Fruit Extract. Acta Aliment 2006, 35, 493–500. [Google Scholar] [CrossRef]
N° | Compounds | IK | O. elongatum |
---|---|---|---|
1 | α-Thujene | 930 | 0.23 |
2 | α-Pinene | 939 | 0.75 |
3 | Camphene | 954 | 0.12 |
4 | Octen-3-ol | 979 | 0.61 |
5 | β-Pinene | 979 | 0.09 |
6 | Myrcene | 990 | 1.43 |
7 | α-Phellandrene | 1009 | 0.19 |
8 | α-Terpinene | 1017 | 1.10 |
9 | p-Cymene | 1024 | 14.70 |
10 | Limonene | 1029 | 0.37 |
11 | 1.8-Cineole | 1031 | 0.31 |
12 | γ -Terpinene | 1059 | 9.84 |
13 | cis-4-thujanol | 1070 | 0.04 |
14 | Terpinolène | 1088 | 0.12 |
15 | p-cymenene | 1091 | 0.12 |
16 | Linalool | 1096 | 2.94 |
17 | Terpinen-4-ol | 1177 | 0.28 |
18 | α-Terpineol | 1188 | 0.4 |
19 | Thymol,methyl ether | 1235 | 0.18 |
20 | Thymol | 1290 | 2.71 |
21 | Carvacrol | 1299 | 57.32 |
22 | Caryophyllene <(Z)> | 1412 | 2.38 |
23 | α-Humulene | 1500 | 23 |
24 | α –Muurolene | 1500 | 0.18 |
25 | γ-Cadinene | 1523 | 0.22 |
26 | Thymohydroquinone | 1555 | 0.29 |
27 | Caryophylleneoxide | 1583 | 2.01 |
Monoterpene hydrocarbons | 29.06 | ||
Oxygenated monoterpenes | 65.08 | ||
Sesquiterpene hydrocarbons | 2.93 | ||
Oxygenated sesquiterpenes | 2.01 | ||
Total identified compounds | 99.08 |
Methods | O. elongatum (µL/mL) | BHA (mg/mL) |
---|---|---|
CI50DPPH | 2.855 ± 0.018 **** | 1.512 ± 0.005 **** |
EC0.5 FRAP | 0.124 ± 0.013 * | 0.15 ± 0.002 * |
TAC (mg EAA/g HE) | 14,099 ± 0.389 * | 15.041 ± 0.05 * |
Strains | O. elongatum | FOX30 | TIM85 | PRL100 |
---|---|---|---|---|
Enterococcus faecalis | 20.85 ± 1.06 | 0 ± 0.00 | 0 ± 0.00 | 9 ± 0.00 |
Serratia fonticola | 45.35 ± 0.919 | 0 ± 0.00 | 0 ± 0.00 | 0 ± 0.00 |
Staphylococcus aureus | 9.00 ± 0.00 | 0 ± 0,00 | 0 ± 0.00 | 0 ± 0.00 |
Acinétobacter baumannii | 20.70 ± 1.67 | 21 ± 0,00 | 15 ± 0.00 | 10.5 ± 0.00 |
Klebsiella oxytoca | 48.05 ± 1.34 | 0 ± 0,00 | 0 ± 0.00 | 11 ± 0.00 |
Klebsiella pneumoniae sensible | 14.15 ± 0.212 | 12 ± 0.00 | 0 ± 0.00 | 0 ± 0.00 |
E.coli sensible | 45.60 ± 0.566 | 22 ± 0,00 | 9 ± 0,00 | 0 ± 0.00 |
E.coli resistante | 14.65 ± 0.495 | 0 ± 0.00 | 0 ± 0.00 | 0 ± 0.00 |
Enterobacter aerogenes | 28.90 ± 0.424 | 20 ± 0.00 | 14 ± 0.00 | 10 ± 0.00 |
Bacterial Strains | |||
---|---|---|---|
MIC | MBC | MBC/MIC | |
E. aerogenes | 4 | 8 | 2 |
Staphylococcus aureus | 32 | 32 | 1 |
E. faecalis | 4 | 8 | 2 |
E. coli sensible | 4 | 4 | 1 |
E. colirésistante | 16 | 32 | 2 |
K. oxytoca | 8 | 16 | 2 |
S. fonticola | 4 | 8 | 2 |
K. pneumoniae sensible | 2 | 4 | 2 |
A. baumannii | 4 | 4 | 1 |
EO | Duration of Exposure | |
---|---|---|
O. elongatum | 24 h | 48 h |
17 ± 0.53 | 10 ± 0.23 |
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Tagnaout, I.; Zerkani, H.; Bencheikh, N.; Amalich, S.; Bouhrim, M.; Mothana, R.A.; Alhuzani, M.R.; Bouharroud, R.; Hano, C.; Zair, T. Chemical Composition, Antioxidants, Antibacterial, and Insecticidal Activities of Origanum elongatum (Bonnet) Emberger & Maire Aerial Part Essential Oil from Morocco. Antibiotics 2023, 12, 174. https://doi.org/10.3390/antibiotics12010174
Tagnaout I, Zerkani H, Bencheikh N, Amalich S, Bouhrim M, Mothana RA, Alhuzani MR, Bouharroud R, Hano C, Zair T. Chemical Composition, Antioxidants, Antibacterial, and Insecticidal Activities of Origanum elongatum (Bonnet) Emberger & Maire Aerial Part Essential Oil from Morocco. Antibiotics. 2023; 12(1):174. https://doi.org/10.3390/antibiotics12010174
Chicago/Turabian StyleTagnaout, Imane, Hannou Zerkani, Noureddine Bencheikh, Smail Amalich, Mohamed Bouhrim, Ramzi A. Mothana, Mohammed R. Alhuzani, Rachid Bouharroud, Christophe Hano, and Touriya Zair. 2023. "Chemical Composition, Antioxidants, Antibacterial, and Insecticidal Activities of Origanum elongatum (Bonnet) Emberger & Maire Aerial Part Essential Oil from Morocco" Antibiotics 12, no. 1: 174. https://doi.org/10.3390/antibiotics12010174
APA StyleTagnaout, I., Zerkani, H., Bencheikh, N., Amalich, S., Bouhrim, M., Mothana, R. A., Alhuzani, M. R., Bouharroud, R., Hano, C., & Zair, T. (2023). Chemical Composition, Antioxidants, Antibacterial, and Insecticidal Activities of Origanum elongatum (Bonnet) Emberger & Maire Aerial Part Essential Oil from Morocco. Antibiotics, 12(1), 174. https://doi.org/10.3390/antibiotics12010174