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Crude extracts of metabolites from co-cultures of lactic acid bacteria are highly antagonists of Listeria monocytogenes

机译:乳酸菌共培养物中代谢产物的粗提物是单核细胞增多性李斯特菌的强烈拮抗剂

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摘要

Listeria monocytogenes is a pathogen difficult to control, due to its resistance to extreme conditions. The antimicrobial activity of a mixture of metabolites produced by lactic acid bacteria was evaluated against L. monocytogenes. Bacterial combined cultures in 1:1 ratio of Lactobacillus plantarum and Weissella cibaria (treatment LP + WC) and mixtures in ratio 1:1:1 of Lactobacillus brevis, L. plantarum, and W. cibaria, (treatment (LB + LP + WC) were grown by discontinuous fermentation, at 32 °C for 48 h. At 1, 2, 6, 12, 24 and 48 h of fermentation, samples were taken, the biomass was separated from the metabolites, and the antimicrobial activity of the metabolites was measured in vitro against L. monocytogenes. For comparison, experimental data published in the literature corresponding to monocultures of L. brevis (L.B), L. plantarum (LP) and W. cibaria (WC) were used. The antimicrobial activity was measured by a surface diffusion technique using absorbent paper discs impregnated with 60 μl from each metabolite and placed on the TSA agar surface (36 °C, 24 h). The metabolites from the microbial mixtures showed statistical differences with respect to their respective monocultures. With the treatment (LP + WC) an inhibition diameter of 2.54 cm was obtained at 12 h of fermentation, this value was higher than those obtained in the monoculture LP (2.19 cm), and WC (2.44 cm), during the same period. In the mixture (LB + LP + WC) during the first 12 h of fermentation, the antimicrobial activity was higher (2.12–2.28 cm) than the antimicrobial activity of the monoculture LB (1.66–2.23 cm). The use of metabolites from the co-culture of L brevis, L. plantarum and W. cibaria under the evaluated conditions, potentiate the antimicrobial activity of L. brevis against L. monocytogenes, therefore, they are promising in bio-preservation.
机译:单核细胞增生李斯特菌是一种难以控制的病原体,因为它对极端条件具有抵抗力。评估了乳酸菌产生的代谢产物混合物对单核细胞增生李斯特菌的抗菌活性。以1:1的植物乳杆菌和韦氏菌(Weissella cibaria)细菌混合培养物(处理LP + WC)和短的乳酸杆菌,植物乳杆菌和W.cibaria的混合物1:1:1的混合物(处理(LB + LP + WC) )通过在32°C下不连续发酵48 h进行生长。在1、2、6、12、24和48 h发酵时,采集样品,从代谢产物中分离出生物质,并代谢产物的抗菌活性为了体外对单核细胞增生李斯特氏菌进行测量,为进行比较,使用了文献中发表的对应于短乳杆菌(LB),植物乳杆菌(LP)和W.cibaria(WC)的单培养物的实验数据。通过表面扩散技术,使用吸收了每种代谢物的60μl吸收纸盘,并将其置于TSA琼脂表面(36°C,24小时),微生物混合物的代谢物在其各自的单一培养物中显示出统计学差异。处理(LP + WC)发酵12 h的抑制直径为2.54 cm,该值高于同期单一培养物LP(2.19 cm)和WC(2.44 cm)的抑制直径。在发酵的前12小时内,混合物(LB + LP + WC)的抗微生物活性(2.12-2.28 cm)比单一菌种LB(1.66-2.23 cm)高。在评估的条件下,使用短乳杆菌,植物乳杆菌和W.cibaria的共培养物代谢产物可增强短乳杆菌对单核细胞增生李斯特氏菌的抗菌活性,因此,它们在生物保存方面很有前景。

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