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通过增加基因剂量和优化培养条件,无前导肽细菌素加维菌素KS的产量提高了2000多倍。

Over 2000-Fold Increased Production of the Leaderless Bacteriocin Garvicin KS by Increasing Gene Dose and Optimization of Culture Conditions.

作者信息

Telke Amar A, Ovchinnikov Kirill V, Vuoristo Kiira S, Mathiesen Geir, Thorstensen Tage, Diep Dzung B

机构信息

Faculty of Chemistry, Biotechnology and Food Science, Norwegian University of Life Sciences, Ås, Norway.

出版信息

Front Microbiol. 2019 Mar 5;10:389. doi: 10.3389/fmicb.2019.00389. eCollection 2019.

Abstract

The leaderless bacteriocin Garvicin KS (GarKS) is a potent antimicrobial, being active against a wide range of important pathogens. GarKS production by the native producer KS1546 is, however, relatively low (80 BU/ml) under standard laboratory growth conditions (batch culture in GM17 at 30°C). To improve the production, we systematically evaluated the impact of different media and media components on bacteriocin production. Based on the outcomes, a new medium formulation was made that increased GarKS production about 60-fold compared to that achieved in GM17. The new medium was composed of pasteurized milk and tryptone (PM-T). GarKS production was increased further 4-fold (i.e., to 20,000 BU/ml) by increasing the gene dose of the bacteriocin gene cluster () in the native producer. Finally, a combination of the newly composed medium (PM-T), an increased gene dose and cultivation at a constant pH 6 and a 50-60% dissolved oxygen level in growth medium, gave rise to a GarKS production of 164,000 BU/ml. This high production, which is about 2000-fold higher compared to that initially achieved in GM17, corresponds to a GarKS production of 1.2 g/L. To our knowledge, this is one of the highest bacteriocin production reported hitherto.

摘要

无 leader 的细菌素 Garvicin KS(GarKS)是一种强效抗菌剂,对多种重要病原体具有活性。然而,在标准实验室生长条件下(30°C 在 GM17 中进行分批培养),天然生产者 KS1546 产生的 GarKS 相对较低(80 BU/ml)。为了提高产量,我们系统地评估了不同培养基和培养基成分对细菌素产生的影响。基于这些结果,制备了一种新的培养基配方,与在 GM17 中获得的产量相比,GarKS 产量提高了约 60 倍。新培养基由巴氏杀菌牛奶和胰蛋白胨(PM-T)组成。通过增加天然生产者中细菌素基因簇()的基因剂量,GarKS 产量进一步提高了 4 倍(即达到 20,000 BU/ml)。最后,新组成的培养基(PM-T)、增加的基因剂量以及在生长培养基中恒定 pH 6 和 50 - 60%溶解氧水平下培养,使得 GarKS 产量达到 164,000 BU/ml。这种高产量与最初在 GM17 中获得的产量相比高出约 2000 倍,相当于 GarKS 产量为 1.2 g/L。据我们所知,这是迄今为止报道的最高细菌素产量之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b1e/6412029/6247a9f82a9b/fmicb-10-00389-g001.jpg

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