The growth and production of antimicrobial compounds from Lactobacillus plantarum IIA-1A5 on cheese whey medium

IF 0.3 Q4 AGRICULTURE, DAIRY & ANIMAL SCIENCE
A. Mutmainna, I. I. Arief, C. Budiman
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引用次数: 1

Abstract

Plantaricin IIA-1A5 is a bacteriocin produced by Lactobacillus plantarum IIA-1A5 which is isolated from Indonesian beef, and it inhibits activity of Gram negative and positive pathogenic bacteria. However, preparation of the antibacterial agent for further applications or studies is costly due to the usage of a bacterial medium. Therefore, this study was aimed to investigate the feasibility of cheese whey as a growth medium for production of the bacteriocin. The growth curve of Lactobacillus plantarum IIA-1A5 in producing antimicrobial compounds was found to occur in the logarithmic phase with an incubation time of 28 and 32 hours. Purification of plantaricin IIA-1A5 produced peptides with a molecular weight of 9.59 kDa consisting of whey and whey+ (20g/L sucrose, 12.5 g/L tryptone and 7.5 g/L yeast extract); thus, the peptide was grouped as class IIa (<10 kDa) bacteriocin. The protein concentration of plantaricin IIA-1A5 with whey+ (sucrose, tryptone, and yeast extract) treatment and Cheese whey could act as media for bacteriocin production (Mutmainna et al.) 173 whey treatment was 1883.17 mg/ml and lower than 325.58 mg/ml, respectively. Based on the antimicrobial activity test using a paper disc method, plantaricin IIA-1A5 demonstrated antimicrobial activity against Staphylococcus aureus ATCC 25923; the whey and whey+ treatment yielded 38.02 IU/dL and 321 IU/dL, respectively, while antimicrobial activity against Escherichia coli ATCC 25922 using whey and whey+ treatment yielded 44.85 IU/dL and 172.08 IU/dL, respectively. The effectiveness of the antimicrobial properties of plantaricin IIA-1A5 in the whey medium is proven through the results of this study. In short, the whey is appropriate growth medium for bacteriocin production.
植物乳杆菌IIA-1A5在奶酪乳清培养基上的生长和抗菌化合物的产生
Plantaricin IIA-1A5是从印度尼西亚牛肉中分离出来的植物乳杆菌IIA-1A5产生的细菌素,它能抑制革兰氏阴性和阳性致病菌的活性。然而,制备用于进一步应用或研究的抗菌剂是昂贵的,因为使用了细菌培养基。因此,本研究旨在探讨奶酪乳清作为生产细菌素的培养基的可行性。植物乳杆菌IIA-1A5在28和32 h的培养过程中,其产生抗菌化合物的生长曲线呈对数相。纯化植物皂苷IIA-1A5得到分子量为9.59 kDa的多肽,由乳清和乳清+ (20g/L蔗糖、12.5 g/L色氨酸和7.5 g/L酵母提取物)组成;因此,该肽被归为IIa类(<10 kDa)细菌素。乳清+(蔗糖、色氨酸和酵母提取物)处理和奶酪乳清处理的植物素IIA-1A5蛋白浓度分别为1883.17 mg/ml和低于325.58 mg/ml,可以作为细菌素生产的培养基(Mutmainna等)。纸盘法抑菌活性试验结果表明,plantaricin IIA-1A5对金黄色葡萄球菌ATCC 25923具有抑菌活性;乳清和乳清+处理对大肠杆菌ATCC 25922的抗菌活性分别为38.02 IU/dL和321 IU/dL,乳清和乳清+处理对大肠杆菌ATCC 25922的抗菌活性分别为44.85 IU/dL和172.08 IU/dL。本研究结果证实了plantaricin IIA-1A5在乳清培养基中的抗菌效果。总之,乳清是生产细菌素的合适培养基。
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来源期刊
Journal of the Indonesian Tropical Animal Agriculture
Journal of the Indonesian Tropical Animal Agriculture AGRICULTURE, DAIRY & ANIMAL SCIENCE-
CiteScore
1.10
自引率
0.00%
发文量
5
审稿时长
8 weeks
期刊介绍: Journal of the Indonesian Tropical Animal Agriculture (JITAA) is a double blind peer-reviewed publication devoted to disseminate all information contributing to the understanding and development of animal agriculture in the tropics by publication of original research papers. The journal covers all aspect relating to Animal Agriculture, including: -Animal breeding and genetics -Animal feeding and nutrition -Animal reproduction -Animal biotechnology -Animal physiology -Animal production and technology -Animal products technology -Animal management and economics -Animal products processing and animal by-products -Animal microbiology -Livestock farming systems -Other related topics in relation to animal science. The topics of research are not only on Indonesian tropical animal agriculture, but also on other tropical regions of the world.
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