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Selection and Evaluation of Anti-Listerial Activity of Leuconostoc Mesenteroides Wild Strains Isolated from Algerian Raw Dromedary Milk

机译:阿尔及利亚原产单峰乳中分离的肠系膜亮光性野肠杆菌的抗李斯特菌活性的选择和评价

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Camel milk is a key food in arid and semi-arid regions for their nutritional needs qualitative and quantitative. Beneficial microflora of camel milk represented by lactic acid bacteria is a potential source of biological material used in food technology. A total of five samples of individual dromedary raw milks were collected from three camels nomad herd in south Algeria and were analysed for bacterial load. A total of sixty different colonies characterized as Lactic acid bacteria, they were classified by phenotypic and biochemical analysis as Leuconostoc mesenteroides subsp mesenteroides and Leuconostoc mesenteroides subsp dextranicum. Then, they were tested for antimicrobial compounds production. Out of these, twenty two strains were determined to be able to inhibit the growth of the indicator pathogens strains Listeria innocua ATCC 33090 by the agar spot test. Two strains were selected by the large and clear zones of inhibition when tested by the well diffusion assay. The two strains Y44 and Y46 show a high antimicrobial activity against Listeria innocua ATCC 33090 by inhibitory substances with proteinaceous nature confirmed after treatment with proteases and Urea, it was proved by kinetics growth in mixed culture. This fact suggests that bacteriocin-like produced by the both Leuconostoc strains are specific against Listeria sp and may find application as biopreservatives in food products. Therefore, the bio-protective cultures technology would be an ideal solution for enhanced the microbiological safety of food products.
机译:骆驼奶是干旱和半干旱地区的重要食品,因为它们的营养需求定性和定量。以乳酸菌为代表的骆驼奶有益菌群是食品技术中生物材料的潜在来源。从阿尔及利亚南部的三只骆驼游牧群中收集了总共五份单峰骆驼生乳样品,并分析了其细菌载量。共有六十个不同的菌落,以乳酸菌为特征,通过表型和生化分析将其分类为中肠白毛隐球菌和中肠白毛隐球菌。然后,对它们进行了抗菌化合物生产的测试。在这些菌株中,通过琼脂斑点试验确定了22个菌株能够抑制指示病原体菌株李斯特氏菌ATCC 33090的生长。当通过孔扩散测定法测试时,通过大而清晰的抑制区选择了两个菌株。两种菌株Y44和Y46通过蛋白酶和尿素处理后证实具有蛋白质性质的抑制性物质,对无病李斯特菌ATCC 33090表现出很高的抗菌活性,这是通过混合培养中的动力学生长证明的。这一事实表明,由两种亮丙诺球菌菌株产生的细菌素样对李斯特菌具有特异性,并可能在食品中用作生物防腐剂。因此,生物保护性培养技术将是提高食品微生物安全性的理想解决方案。

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