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首页> 外文期刊>Nucleic acids research >SEVA 3.0: an update of the Standard European Vector Architecture for enabling portability of genetic constructs among diverse bacterial hosts
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SEVA 3.0: an update of the Standard European Vector Architecture for enabling portability of genetic constructs among diverse bacterial hosts

机译:SEVA 3.0:用于在各种细菌宿主中实现遗传结构的可移植性的标准欧洲矢量架构的更新

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摘要

The Standard European Vector Architecture 3.0 database (SEVA-DB 3.0, http://seva.cnb.csic.es) is the update of the platform launched in 2013 both as a web-based resource and as a material repository of formatted genetic tools (mostly plasmids) for analysis, construction and deployment of complex bacterial phenotypes. The period between the first version of SEVA-DB and the present time has witnessed several technical, computational and conceptual advances in genetic/genomic engineering of prokaryotes that have enabled upgrading of the utilities of the updated database. Novelties include not only a more user-friendly web interface and many more plasmid vectors, but also new links of the plasmids to advanced bioinformatic tools. These provide an intuitive visualization of the constructs at stake and a range of virtual manipulations of DNA segments that were not possible before. Finally, the list of canonical SEVA plasmids is available in machine-readable SBOL (Synthetic Biology Open Language) format. This ensures interoperability with other platforms and affords simulations of their behaviour under different in vivo conditions. We argue that the SEVA-DB will remain a useful resource for extending Synthetic Biology approaches towards non-standard bacterial species as well as genetically programming new prokaryotic chassis for a suite of fundamental and biotechnological endeavours.
机译:标准欧洲矢量架构3.0数据库(SEVA-DB 3.0,http://seva.cnb.csic.es)是2013年推出的平台的更新,既是基于Web的资源,也是格式化基因工具的材料存储库(大多是质粒)用于分析,构建和部署复杂细菌表型。第一个版本的SEVA-DB和现在的时间段已经见证了已经启用更新数据库的实用程序的原核生物的遗传/基因组工程中的若干技术,计算和概念进展。 Novelties不仅包括更友好的Web界面和更多的质粒载体,还包括质粒的新链接到先进的生物信息工具。这些提供了在赌注中的直观可视化和在以前不可能的DNA片段的一系列虚拟操纵。最后,规范SEVA质粒列表是机器可读SEVAL(合成生物开放语言)格式的。这确保了与其他平台的互操作性,并在体内条件下的不同行为中提供了模拟。我们认为,SEVA-DB将仍将是用于扩展非标准细菌种类的合成生物学方法的有用资源,以及用于一套基本和生物技术努力的基因编程新的原核底盘。

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