Volatile Constituents and Antimicrobial Activity of Aerial parts ofOcimum gratissimumLinn.
Antariksh Katara, Chandan Kumar Pradhan, Pradeep Singh, Vijendra Singh, Sajid Ali
Abstract
Antariksh Katara, Chandan Kumar Pradhan, Pradeep Singh, Vijendra Singh, Sajid Ali
Abstract
Aromatic compounds in the steam distilled volatile oil obtained from aerial parts of Shrubby basil (Hindi - Ramtulasi), Ocimum gratissimum Linn. (Lamiaceae) were identified by gas chromatography (GC) and gas chromatography/mass spectrometry (GC-MS). The volatile oil mainly comprises of twenty (20) components, out of which all twenty constituents comprising 100 % of the oil were identified. The volatile oil mainly contains 13 monoterpenes (68.10 %) and bornyl acetate (14.5 %) was found to be predominant constituents followed by β-pinene (10.8 %), camphor (9.0 %), c-tagetone (8.6 %), t-tagetone (7.4 %), αpinene (4.2 %), myrtenal (4.1 %), α-thujene (3.0 %), α-camphene (1.8 %), O-methyl eugenol (1.6 %), ctagetone isomer (1.4 %), sabinene (0.9 %) and α-terpineol (0.8 %). Five sesquiterpene comprising (20.2 %) i.e. α-Selinene (5.9 %), t-caryophyllene (5.5 %), β-guaiene (4.0 %), β-gurjunene (2.0 %) and bicyclo germacrene (2.8 %). The two non terpenic components comprise (11.7 %) i.e. ethyl cyclohexenal ketone (7.1 %), n-butyl benzoate (4.6 %). The antimicrobial activity of O. gratissimum oil was studied by cup plate method against both Gram-positive and negative bacterial strains and pathogenic fungal species. Antimicrobial activity was concentration dependent on Shigella flexineri, Bacillus cereus and Candida albicans.
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Aromatic compounds in the steam distilled volatile oil obtained from aerial parts of Shrubby basil (Hindi - Ramtulasi), Ocimum gratissimum Linn. (Lamiaceae) were identified by gas chromatography (GC) and gas chromatography/mass spectrometry (GC-MS). The volatile oil mainly comprises of twenty (20) components, out of which all twenty constituents comprising 100 % of the oil were identified. The volatile oil mainly contains 13 monoterpenes (68.10 %) and bornyl acetate (14.5 %) was found to be predominant constituents followed by β-pinene (10.8 %), camphor (9.0 %), c-tagetone (8.6 %), t-tagetone (7.4 %), αpinene (4.2 %), myrtenal (4.1 %), α-thujene (3.0 %), α-camphene (1.8 %), O-methyl eugenol (1.6 %), ctagetone isomer (1.4 %), sabinene (0.9 %) and α-terpineol (0.8 %). Five sesquiterpene comprising (20.2 %) i.e. α-Selinene (5.9 %), t-caryophyllene (5.5 %), β-guaiene (4.0 %), β-gurjunene (2.0 %) and bicyclo germacrene (2.8 %). The two non terpenic components comprise (11.7 %) i.e. ethyl cyclohexenal ketone (7.1 %), n-butyl benzoate (4.6 %). The antimicrobial activity of O. gratissimum oil was studied by cup plate method against both Gram-positive and negative bacterial strains and pathogenic fungal species. Antimicrobial activity was concentration dependent on Shigella flexineri, Bacillus cereus and Candida albicans.
Key concepts: Ocimum gratissimum, Camphor, Essential oil, Antimicrobial, Chemistry, Sabinene, Eugenol, Lamiaceae