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从一个 Lithobates catesbeianus 孵化场分离得到的乳球菌乳亚种 CRL 1584 所产细菌素的特性研究。

Characterization of a bacteriocin produced by Lactococcus lactis subsp. lactis CRL 1584 isolated from a Lithobates catesbeianus hatchery.

机构信息

Facultad de Bioquímica, Química y Farmacia, Instituto Superior de Investigaciones Biológicas (INSIBIO-CONICET), Instituto de Biología "Dr. Francisco D. Barbieri", Universidad Nacional de Tucumán, Chacabuco 461, CP: T4000ILI, San Miguel de Tucumán, Argentina.

出版信息

World J Microbiol Biotechnol. 2014 Mar;30(3):1053-62. doi: 10.1007/s11274-013-1524-9. Epub 2013 Oct 23.

Abstract

Lactococcus lactis CRL 1584 isolated from a Lithobates catesbeianus hatchery inhibits the growth of Citrobacter freundii (a bullfrog pathogen) and Listeria monocytogenes by a synergistic effect between lactic acid, hydrogen peroxide and a bacteriocin-like molecule. The chemical characterization of the bacteriocin in cell-free supernatants indicates that it has a proteinaceous nature. Hexadecane and ethyl acetate did not modify the bacteriocin activity, while 10 and 20 % (v/v) chloroform decreased the activity by 29 and 43 %, respectively. The antimicrobial peptide was heat stable since 85 % of residual activity was detected when neutralized supernatants were heated at 80 °C for 30 min. Moreover, no bacteriocin inactivation was observed when supernatants were kept at -20 °C for 3 months. The synthesis of the bacteriocin was associated with bacterial growth, highest production (2,100 AU/ml) being detected at the end of the exponential growth phase. At pH ranges of 5-6.5 and 5.0-5.5 the inhibitory molecule was stable when stored for 2 days at 4 and 25 °C, respectively. Moreover, it had a bactericidal effect on L. monocytogenes and the ultrastructural studies of pathogenic cells revealed clumping of the cytoplasmic material, increased periplasmic space and cell wall modifications. The deduced amino acid sequence of the bacteriocin was identical to nisin Z and the genetic determinants for its production are harbored in the chromosome. These results, described for the first time in L. lactis from a bullfrog hatchery, will increase knowledge of the bacteriocin under study with a view to its potential inclusion in probiotics for raniculture or biopreservatives.

摘要

从牛蛙孵化场分离出的乳球菌 CRL 1584 通过乳酸、过氧化氢和细菌素样分子的协同作用抑制柠檬酸杆菌(牛蛙病原体)和李斯特菌的生长。细胞上清液中细菌素的化学特性表明其具有蛋白质性质。十六烷和乙酸乙酯不会改变细菌素的活性,而 10%和 20%(v/v)的氯仿分别使活性降低了 29%和 43%。抗菌肽具有热稳定性,因为当中和上清液在 80°C 加热 30 分钟时,检测到 85%的残留活性。此外,当将上清液在-20°C 下保存 3 个月时,没有观察到细菌素失活。细菌素的合成与细菌生长相关,在指数生长阶段结束时检测到最高产量(2,100 AU/ml)。在 pH 值为 5-6.5 和 5.0-5.5 时,在 4°C 和 25°C 下分别储存 2 天时,抑制分子是稳定的。此外,它对李斯特菌具有杀菌作用,对病原细胞的超微结构研究表明细胞质物质聚集、周质空间增加和细胞壁修饰。细菌素的推导氨基酸序列与乳链菌肽 Z 相同,其产生的遗传决定因素存在于染色体中。这些首次在牛蛙孵化场的乳球菌中描述的结果将增加对研究中细菌素的了解,以期将其潜在纳入水产养殖或生物防腐剂中的益生菌。

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