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用于 Pseudomonas 深层遗传/基因组重构的分子工具和新兴策略。

Molecular tools and emerging strategies for deep genetic/genomic refactoring of Pseudomonas.

机构信息

Systems and Synthetic Biology Program, Centro Nacional de Biotecnología (CNB-CSIC), C/Darwin 3, 28049 Madrid, Spain.

Systems and Synthetic Biology Program, Centro Nacional de Biotecnología (CNB-CSIC), C/Darwin 3, 28049 Madrid, Spain.

出版信息

Curr Opin Biotechnol. 2017 Oct;47:120-132. doi: 10.1016/j.copbio.2017.06.013. Epub 2017 Jul 21.

Abstract

The interest of the genus Pseudomonas largely relies on the virulence of some of its species for plants and animals (including humans). Yet, pathogenic features of some isolates coexist with others often present in environmental variants that promote plant growth and degrade chemical pollutants. Many of these traits can be traced to the intrinsic properties of the genomic chassis of this genus along with distinct genetic parts and devices. With the tools of Synthetic Biology these can be enhanced and/or repurposed for the sake of biological control, environmental remediation and whole-cell biocatalysis. In this article we take stock of both conceptual and technological developments that have allowed the virtual domestication of Pseudomonas (in particular P. putida) as a major biotechnological workhorse with a range of applications of industrial interest. Adoption of a suite of compositional and measurement standards is advocated for bringing Pseudomonas-based genetic engineering to a superior level of development.

摘要

假单胞菌属的主要兴趣点在于其部分物种对植物和动物(包括人类)的毒性。然而,一些分离株的致病特征与通常存在于促进植物生长和降解化学污染物的环境变体中的特征共存。这些特性中的许多可以追溯到该属基因组底盘的固有特性,以及独特的遗传部分和装置。通过合成生物学的工具,可以增强和/或重新用于生物控制、环境修复和全细胞生物催化。在本文中,我们总结了概念和技术的发展,这些发展使得假单胞菌(特别是 P. putida)的虚拟驯化成为一种具有工业应用价值的主要生物技术工作马。我们提倡采用一套组成和测量标准,以将基于假单胞菌的基因工程提升到更高的发展水平。

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