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首页> 外文期刊>Proceedings >Lactococcus lactis RBT18: From the Rainbow Trout Farm to the Lab, the Tale of a Nisin Z Producer
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Lactococcus lactis RBT18: From the Rainbow Trout Farm to the Lab, the Tale of a Nisin Z Producer

机译:乳球菌乳酸乳房RBT18:从彩虹鳟鱼农场到实验室,一个Nisin Z生产者的故事

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Infectious diseases, such as lactococcosis caused by Lactococcus garvieae, are portrayed as critical limiting factors in aquaculture. The antimicrobial properties of lactic acid bacteria (LAB), mainly the production of organic acids and bacteriocins (e.g., the lanthionine containing nisins A and Z; NisA and NisZ, respectively), led to propose LAB as probiotics to be used as an alternative and/or complementary strategy to vaccination and chemotherapy in aquaculture. L. lactis RBT18, isolated from cultured rainbow trout (Oncorhynchus mykiss, Walbaum), exerts strong, direct, and extracellular antimicrobial activity against L. garvieae and other ichthyopathogens, with the latter being heat-resistant (100 °C, 10 min), and thus suggesting the involvement of a thermostable antimicrobial compound (i.e., bacteriocin). Cross-immunity tests using the agar well diffusion test (ADT) and PCR assays suggested that NisA/Z is the bacteriocin responsible for the extracellular antimicrobial activity exerted by L. lactis RBT18. To demonstrate this hypothesis, the bacteriocin was purified to homogeneity by two multi-chromatographic procedures. MALDI TOF-MS analyses of purified samples after the last reverse-phase chromatography step identified the presence of NisZ (3330 Da), and its oxidized form (3346 Da), derived from the oxidation of a lanthionine ring. The oxidized NisZ showed a diminished antimicrobial activity that would increase the chances of bacterial pathogens to evade its antimicrobial activity. Further experiments are necessary to assess the in vitro and in vivo safety and efficiency of L. lactis RBT18 as a probiotic in aquaculture, but also to optimize the environmental conditions to reduce bacteriocin oxidation and thus bacterial pathogen resistance.
机译:感染性疾病,例如乳酸乳杆菌引起的乳酸菌病,被描绘成水产养殖中的关键限制因素。乳酸菌(实验室)的抗微生物性质,主要是有机酸和菌丝的产生(例如,含有Nisins A和Z; NISA和NISZ)的含量,导致益生菌作为替代品和替代品/或水产养殖中疫苗接种和化疗的互补策略。 L. Lactis RBT18,从养殖彩虹鳟鱼(Oncorynchus Mykiss,Walbaum),对L. Garvieae和其他IChthyopathengens发挥强大,直接和细胞外的抗菌活性,后者是耐热(100°C,10分钟),因此表明致恒温抗微生物化合物(即菌丝)的介断。使用琼脂孔扩散试验(ADT)和PCR测定的交叉免疫试验表明,NISA / Z是负责L. Lactis RBT18施加的细胞外抗微生物活性的菌丝。为了证明这种假设,通过两种多相色谱法纯化菌丝以均匀性。在最后反相色谱步骤确定衍生自氯苯环的氧化后,MALDI TOF-MS分析纯化样品。氧化的NISZ显示出抗微生物活性减少,这会增加细菌病原体逃避其抗微生物活性的可能性。进一步的实验是在水产养殖中以益生菌评估L.Lactis RBT18的体外和体内安全性和效率。

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