会议论文详细信息
5th International Seminar on Sciences
Isolation and molecular identification of Endophytic bacteria from Noni fruits (Morinda citrifolia l.) and their antibacterial activity
自然科学(总论)
Sogandi^1 ; Nilasari, P.^1
Department of Pharmacy, University of 17 Augustus 1945, Jakarta
14356, Indonesia^1
关键词: Anti-bacterial activity;    Antibacterial compounds;    Antibacterial substance;    Disc diffusion methods;    Molecular identification;    Secondary metabolites;    Staphylococcus aureus;    Streptococcus mutans;   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/299/1/012020/pdf
DOI  :  10.1088/1755-1315/299/1/012020
学科分类:自然科学(综合)
来源: IOP
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【 摘 要 】

Endophytic bacteria are microorganisms that exist in the system of plant tissues such as fruits, leaves, twigs, roots and they can form colonies without causing damage to the plant. One potential medicinal plant has endophytic bacteria are Noni fruits (Morinda citrifolia l). This study aimed at isolating endophytic bacterial from Noni fruits (Morinda citrifolia l), screening endophytic bacteria, determining antibacterial activity of potential endophytic bacteria, identifying 16S rRNA of potential endophytic bacteria, and detection of an antibacterial compound using GCMS. Endophytic bacteria were successfully isolated from Noni fruits and disc-diffusion methods were used to screen for antibacterial activity against pathogenic bacteria (Staphylococcus aureus, Escherichia coli, Shigella dysenteriae, and Streptococcus mutans). The result of bacterial activity showed isolate ACP1, ACP2, ACP4, and ACP6 were produced antibacterial compounds. The activity shown with the formation of a clear zone and ACP6 isolate could inhibit four pathogenic bacteria with the highest clear zone. Molecular identification was investigated used PCR amplification 16S rRNA gene. The result showed that the potential isolate ACP6 (Acc. No. MH915674.1) belonging as Enterobacter cloacae with 99 % sequence similarities and according to GCMS analysis, ethyl acetate fraction from secondary metabolite ACP6 contains Pyrazine as a bioactive compound. These findings suggest that the identified strains may contribute to the search for new sources of antibacterial substances.

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