Research Group BIONUC (Biotechnology of Nutraceuticals and Bioactive Compounds), Departamento de Biología Funcional, Área de Microbiología, Universidad de Oviedo, Oviedo, Spain.
IUOPA (Instituto Universitario de Oncología del Principado de Asturias), Oviedo, Spain.
Microbiologyopen. 2020 Jun;9(6):1135-1149. doi: 10.1002/mbo3.1024. Epub 2020 Mar 14.
Actinomycetales, such as the genus Streptomyces, are well-known cell factories employed to produce a wide variety of secondary metabolites for industrial use. However, not only is the genetic engineering of Streptomyces more complicated and tedious than other model laboratory species, such as Escherichia coli, there is also a considerable lack of genetic tools, hindering its adoption as a common chassis for synthetic biology. In this work, 23 novel shuttle vectors are presented that follow the canonical SEVA (Standard European Vector Architecture) common architecture with the goal of increasing the genetic toolbox repertoire for Streptomyces and other actinomycetes. The ORI module of these plasmids is composed of the combination of two origins of replication, one for Gram-negative bacteria and the other for Streptomyces, a Gram-positive bacteria. Origins of replication have been included in the collection for integrative, low-copy number, and medium-to-high-copy number vectors for Streptomyces. Also, a new selection marker has been developed that confers resistance to apramycin. The functionality of these plasmids was tested via the heterologous expression of GFP and the heterologous production of the plant flavonoid apigenin in Streptomyces albus J1074, with successful results in both cases, therefore expanding the current repertoire of genetic manipulation tools in Streptomyces species.
放线菌目,如链霉菌属,是众所周知的细胞工厂,用于生产各种用于工业用途的次级代谢产物。然而,链霉菌的基因工程不仅比大肠杆菌等其他模式实验室物种更复杂和繁琐,而且遗传工具也相当缺乏,这阻碍了它作为合成生物学常用底盘的应用。在这项工作中,我们提出了 23 种新型穿梭载体,它们遵循标准欧洲载体架构(SEVA)的规范架构,旨在增加链霉菌和其他放线菌的遗传工具库。这些质粒的 ORI 模块由两种复制起点的组合组成,一种用于革兰氏阴性菌,另一种用于革兰氏阳性菌链霉菌。我们还为整合型、低拷贝数和中高拷贝数载体包含了复制起点。此外,我们还开发了一种新的选择标记,赋予对安普霉素的抗性。通过在白色链霉菌 J1074 中异源表达 GFP 和异源生产植物类黄酮芹菜素来测试这些质粒的功能,两种情况下都取得了成功,因此扩展了链霉菌属中遗传操作工具的现有工具库。