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Taming the Beast of Biology: Synthetic Biology and Biological Systems Engineering

机译:驯服生物学的野兽:合成生物学和生物系统工程

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Despite the availability of a variety of '-omics' technologies to support the system-wide analysis of industrially relevant microorganisms, the manipulation of strains towards an economically relevant goal remains a challenge. Remarkably, our ability to catalogue the participants in and model ever more comprehensive aspects of a microorganism's physiology is now complemented by technologies that permanently expand the scope of engineering interventions that can be imagined. In fact, genome-wide editing and re-synthesis of microbial and even eukaryotic chromosomes have become widely applied methods. At the heart of this emerging system-wide engineering approach, often labelled 'Synthetic Biology', is the continuous improvement of large-scale DNA synthesis, which is put to two-fold use: (i) starting ever more ambitious efforts to re-write existing and coding novel molecular systems, and (ii) designing and constructing increasingly sophisticated library technologies, which has led to a renaissance of directed evolution in strain engineering. Here, we briefly review some of the critical concepts and technological stepping-stones of Synthetic Biology on its way to becoming a mature industrial technology.
机译:尽管提供了各种“ - MICS的技术”,以支持整体性质相关微生物的全系统分析,但对经济相关目标的操纵仍然是一个挑战。值得注意的是,我们对参与者的目录能力和模型进行了更全面的微生物生理学方面现在互补,这些技术互动地扩大了可以想象的工程干预范围。实际上,对微生物和甚至真核染色体的基因组进行编辑和重新合成已成为广泛应用的方法。在这种新兴系统范围内的工程方法的核心,通常标记为“合成生物学”,是大规模DNA合成的持续改进,这是两倍的使用:(i)开始更雄心勃勃的努力重新努力写入现有和编码的新型分子系统,(ii)设计和构建日益复杂的库技术,这导致了应变工程中的定向演变的复杂。在这里,我们简要介绍了综合生物学的一些关键概念和技术踩踏石,成为成熟的工业技术。

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