SUKMAWATI SUKMAWATI
Department of Fishery Product Processing, Faculty of Fishery, Universitas Muhammadiyah Sorong. Jl. Pendidikan No. 27, Sorong 98412, West Papua, Indonesia

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Analysis of bacteriocins of lactic acid bacteria isolated from fermentation of rebon shrimp (Acetes sp.) in South Sorong, Indonesia as antibacterial agents SUKMAWATI SUKMAWATI; SIPRIYADI SIPRIYADI; MELDA YUNITA; NURUL KUSUMA DEWI; ERIN D. NOYA
Biodiversitas Journal of Biological Diversity Vol. 23 No. 7 (2022)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d230763

Abstract

Abstract. Sukmawati S, Sipriyadi, Yunita M, Dewi NK, Noya ED. 2022. Analysis of bacteriocins of lactic acid bacteria isolated from fermentation of rebon shrimp (Acetes sp.) in South Sorong, Indonesia as antibacterial agents. Biodiversitas 23: xxxx. Bacteriocins are protein compounds that are often used as biopreservative agents due to their antibacterial effects against various types of pathogenic bacteria. Bacteriocins are used as food additives that can control the growth of spoilage bacteria in food. Bacteriocins can be obtained from Lactic Acid Bacteria (LAB) and are generally isolated from fermentation products, such as rebon shrimp fermentation. The objective of this study was to analyze the activity of bacteriocins isolated by fermented rebon shrimp in South Sorong as antibacterials. The method used in this study is a descriptive study by describing the ability of bacteriocins to inhibit pathogenic bacteria (Staphylococcus aureus, Escherichia coli, and Salmonella typhimurium). The results showed that of the seven bacteriocin samples obtained from the fermented rebon shrimp paste and acidic shrimp paste were able to inhibit the growth of pathogenic bacteria (S. aureus, E. coli, and S. typhimurium). The sensitivity test of bacteriocin to protease enzymes and its activity against pathogenic bacteria showed that bacteriocins derived from LAB were not sensitive to proteinase-K. The test results of the effect of temperature on bacteriocins and their activity against pathogenic bacteria showed that these bacteriocins were stable at high temperatures, normal temperatures and freezing temperatures. The test results of the effect of pH on bacteriocin activity on pathogenic bacteria showed that bacteriocins were stable in a wide pH range including pH 2, pH 3, pH 4, and pH 5; potassium phosphate buffer with pH 6, 7, and 8; and glycine buffer with pH 9, 10, and 11. Meanwhile, The test results of the effect of NaCl on bacteriocin activity on pathogenic bacteria showed that the bacteriocin sample was not affected by the administration of NaCl. Thus it can be stated that the seven samples had a great ability to inhibit the growth of pathogenic bacteria dan it can be further developed as the basis of natural food preservatives.
Identification of 16S rRNA genes in bacteriocin-producing bacteria SUKMAWATI SUKMAWATI; SIPRIYADI SIPRIYADI; FEBRIANTI ROSALINA; RATNA RATNA; NURUL KUSUMA DEWI; MOHD IHWAN BIN ZAKARIAH
Biodiversitas Journal of Biological Diversity Vol. 25 No. 10 (2024)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d251034

Abstract

Abstract. Sukmawati S, Sipriyadi, Rosalina F, Ratna, Dewi NK, Zakariah MIB. 2024. Identification of 16S rRNA genes in bacteriocin-producing bacteria. Biodiversitas 25: 3720-3727. The use of safe and effective biopreservatives in the food industry is highly important to extend the product shelf life and maintain the product quality without posing health risks. Bacteriocins, antimicrobial compounds produced by bacteria, offer biopreservatives potential that can inhibit the growth of pathogens and spoilage microorganisms in food products. Bacteriocins as biopreservatives in the food industry due to their antimicrobial properties and potential to enhance food safety and shelf life. Bacteriocins as biopreservatives are stable at high temperatures, which makes them suitable for various food processes. They are also stable across a broad pH range, ensuring their effectiveness in different food environments. This stability under various conditions instills confidence in their effectiveness. This study aimed to identify the 16S rRNA gene of bacteriocin-producing bacteria as an initial step in developing biopreservative candidates. This research method is a descriptive method that describes the types of bacterial species that are capable of producing bacteriocins. Bacteria were isolated from shrimp paste (cincalok), and genetic analysis was performed using PCR and sequencing techniques to identify the 16S rRNA gene. The bacterial samples derived from shrimp paste were identified as Bacillus paramycoides strain MCCC 1A04098 BSH 1, Bacillus albus strain MCCC 1A02146 BSH 2, and Bacillus cereus strain IAM 12605 BSH. All three samples are Gram-positive with bacilli-shaped cells, leading to the conclusion that these bacteria have the potential as biopreservatives.