Fu Pengcheng
Department of Molecular Biosciences and Bioengineering, University of Hawaii at Manoa, Honolulu, HI96822, USA.
Biotechnol J. 2006 Jun;1(6):690-9. doi: 10.1002/biot.200600019.
Synthetic biology is a recently emerging field that applies engineering formalisms to design and construct new biological parts, devices, and systems for novel functions or life forms that do not exist in nature. Synthetic biology relies on and shares tools from genetic engineering, bioengineering, systems biology and many other engineering disciplines. It is also different from these subjects, in both insights and approach. Applications of synthetic biology have great potential for novel contributions to established fields and for offering opportunities to answer fundamentally new biological questions. This article does not aim at a thorough survey of the literature and detailing progress in all different directions. Instead, it is intended to communicate a way of thinking for synthetic biology in which basic functional elements are defined and assembled into living systems or biomaterials with new properties and behaviors. Four major application areas with a common theme are discussed and a procedure (or "protocol") for a standard synthetic biology work is suggested.
合成生物学是一个最近兴起的领域,它应用工程学方法来设计和构建新的生物部件、装置及系统,以实现自然界中不存在的新功能或生命形式。合成生物学依赖于并共享来自基因工程、生物工程、系统生物学及许多其他工程学科的工具。它在见解和方法上也与这些学科不同。合成生物学的应用对于在既定领域做出新贡献以及为解答全新的生物学基本问题提供机会具有巨大潜力。本文并非旨在全面综述文献并详述所有不同方向的进展。相反,其目的是传达一种合成生物学的思维方式,即在这种思维方式中,基本功能元件被定义并组装成具有新特性和行为的生命系统或生物材料。本文讨论了四个具有共同主题的主要应用领域,并提出了一个标准合成生物学工作的流程(或“方案”)。
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