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Please use this identifier to cite or link to this item: http://142.54.178.187:9060/xmlui/handle/123456789/15209
Title: Biological activities of some Acacia spp. (Fabaceae) against new clinical isolates identified by ribosomal RNA gene-based phylogenetic analysis
Authors: Fawzy Mahmoud, Mahmoud
Abdullah Alrumman, Sulaiman
El-Latif Hesham, Abd
Keywords: Acacia spesies
pharmaceutical properties
GC-MS analysis
pathogenic bacteria
16S rRNA gene sequences
phylogenetic analysis
Issue Date: 20-Jan-2016
Publisher: Karachi:Pakistan Journal of Pharmaceutical Sciences, university of Karachi.
Citation: Mahmoud, M. F., Alrumman, S. A., & Hesham, A. E. L. (2016). Biological activities of some Acacia spp.(Fabaceae) against new clinical isolates identified by ribosomal RNA gene-based phylogenetic analysis. Pakistan journal of pharmaceutical sciences, 29(1), 221-230.
Abstract: Nowadays, most of the pathogenic bacteria become resistant to antibiotics. Therefore, the pharmaceutical properties of the natural plant extracts have become of interest to researchers as alternative antimicrobial agents. In this study, antibacterial activities of extract gained from Acacia etbaica, Acacia laeta, Acacia origena and Acacia pycnantha have been evaluated against isolated pathogenic bacteria (Strains MFM-01, MFM-10 and AH-09) using agar well diffusion methods. The bacterial strains were isolated from infected individuals, and their exact identification was detected on the basis of 16S rRNA gene amplification and sequence determination. Alignment results and the comparison of 16S rRNA gene sequences of the isolates to 16S rRNA gene sequences available in Gen Bank database as well as the phylogenetic analysis confirmed the accurate position of the isolates as Klebsiella oxytoca strain MFM-01, Staphylococcus aureus strain MFM-10 and Klebsiella pneumoniae strain AH-09. Except for cold water, all tested solvents (Chloroform, petroleum ether, methanol, diethyl ether, and acetone) showed variation in their activity against studied bacteria. GC-MS analysis of ethanol extracts showed that four investigated Acacia species have different phytocomponents. Eight important pharmaceutical components were found in the legume of Acacia etbaica, seven in the legume of Acacia laeta, fifteen in the legume of Acacia origena and nine in the leaves of Acacia pycnantha. A dendrogram was constructed based on chemical composition, revealed that Acacia laeta is more closely related to Acacia etbaica forming one clade, whereas Acacia origena less similar to other species. Our results demonstrated that, investigated plants and chemical compounds present could be used as promising antibacterial agents.
URI: http://142.54.178.187:9060/xmlui/handle/123456789/15209
ISSN: 1011-601X
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