Laboratorio de Biotecnología Bacteriana, Facultad de Ciencias Naturales y Ciencias de la Salud, Universidad Nacional de la Patagonia San Juan Bosco, Trelew, Chubut, Argentina.
Consejo Nacional de Investigaciones Científicas y Técnicas, Buenos Aires, Argentina.
Curr Microbiol. 2021 Dec 14;79(1):16. doi: 10.1007/s00284-021-02712-5.
This work's objective was to determine the antagonist activity of 11 Enterococcus spp. using industrial food wastes as a culture medium. The strains were isolated from invertebrates collected on the Argentinian Patagonia coast and selected by their high antibacterial activity. Phenotypic and genotypic techniques allowed identifying five E. hirae strains, five E. faecium strains, and one E. mundtii strain. The cell-free supernatants displayed inhibitory activity against most of the Gram-positive bacteria tested and Vibrio anguilarum. PCR amplification techniques detected the encoding genes of enterocin P in ten strains, mundtiicin KS in seven strains, enterocin B in six strains, hiracin JM79 in five strains, and enterocin A in three strains. The strains did not show gelatinase or hemolytic activities and were sensitive to gentamicin, kanamycin, streptomycin, tylosine, tetracycline, chloramphenicol and vancomycin. Cheese whey and hot trub derived from beer brewing were used alone or in combination to assay enterocin production. In all cases, the highest inhibitory activities were achieved when mixtures of both byproducts were used as growth medium. The results suggest that the selected strains can produce high levels of enterocins in a low-cost media composed of a mix of cheese whey and hot trub without additional supplementation with carbon or nitrogen sources.
本研究旨在利用工业食品废物作为培养基来确定 11 株肠球菌属(Enterococcus spp.)的拮抗剂活性。这些菌株是从阿根廷巴塔哥尼亚海岸采集的无脊椎动物中分离出来的,因其具有高抗菌活性而被选中。表型和基因型技术鉴定出 5 株屎肠球菌(E. hirae)、5 株粪肠球菌(E. faecium)和 1 株屎肠球菌(E. mundtii)。无细胞上清液对大多数测试的革兰氏阳性菌和鳗弧菌(Vibrio anguilarum)具有抑制活性。PCR 扩增技术检测到 10 株菌编码肠球菌素 P 的基因、7 株菌编码 mundticin KS 的基因、6 株菌编码肠球菌素 B 的基因、5 株菌编码 hiracin JM79 的基因和 3 株菌编码肠球菌素 A 的基因。这些菌株没有明胶酶或溶血活性,对庆大霉素、卡那霉素、链霉素、泰乐菌素、四环素、氯霉素和万古霉素敏感。乳清和啤酒酿造热麦糟单独或组合用于检测肠球菌素的产生。在所有情况下,当两种副产物混合物用作生长培养基时,均能获得最高的抑制活性。结果表明,所选菌株可以在由乳清和热麦糟混合物组成的低成本培养基中产生高水平的肠球菌素,而无需额外补充碳源或氮源。