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2000
Volume 22, Issue 2
  • ISSN: 2211-3525
  • E-ISSN: 2211-3533

Abstract

Background: The species of the genus has been used since ancient times in the Indian subcontinent to cure various illnesses. Essential oil from species has antimicrobial activity. Objective: The main objective of this study was to extract essential oils from different parts of two species and test their antimicrobial activity. Methods: Hydrodistillation was used to extract essential oils from various parts of two basil species, GC-MS was used to identify the chemical compounds. The disk diffusion method was used to assess their antimicrobial activity. Results: A total of sixty-seven chemical compounds from L. and L. were identified using GC-MS. Among them, eugenol (1.00-27.66%), methyl eugenol (0.78-28.52%), β-elemene (5.10-20.98%), caryophyllene (0.94-43.18%), caryophyllene oxide (1.1-10.81%), palmitic acid methyl ester (3.20-21.38%), oleic acid methyl ester (2.91-40.7%) and linoleic acid methyl ester (1.55-74.71%) comprised the majority of the makeup of essential oils, due to diverse plant species and body sections, the percentage differed significantly. The essential oils contained monoterpenes, sesquiterpenes, and aldehydes/ketonic derivatives in the flower and leaf parts of O. sanctum and the leaf part of . The essential oils of these species showed good antibacterial activities against the bacteria, methicillin-resistant (MRSA), , and with inhibition zones ranging from 10-36 mm. Conclusion: These two species of showed significant variation in chemical composition and antibacterial activity.

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/content/journals/aia/10.2174/0122113525274800231120065500
2024-04-01
2025-05-25
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