Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA.
Nat Biotechnol. 2009 Dec;27(12):1139-50. doi: 10.1038/nbt.1591.
Synthetic biology is focused on the rational construction of biological systems based on engineering principles. During the field's first decade of development, significant progress has been made in designing biological parts and assembling them into genetic circuits to achieve basic functionalities. These circuits have been used to construct proof-of-principle systems with promising results in industrial and medical applications. However, advances in synthetic biology have been limited by a lack of interoperable parts, techniques for dynamically probing biological systems and frameworks for the reliable construction and operation of complex, higher-order networks. As these challenges are addressed, synthetic biologists will be able to construct useful next-generation synthetic gene networks with real-world applications in medicine, biotechnology, bioremediation and bioenergy.
合成生物学专注于基于工程原理的理性构建生物系统。在该领域发展的第一个十年中,在设计生物部件并将其组装成遗传回路以实现基本功能方面取得了重大进展。这些电路已被用于构建具有工业和医疗应用前景的原理验证系统。然而,合成生物学的进展受到缺乏可互操作部件、用于动态探测生物系统的技术以及用于可靠构建和操作复杂高级网络的框架的限制。随着这些挑战的解决,合成生物学家将能够构建具有实际应用的下一代有用的合成基因网络,这些网络在医学、生物技术、生物修复和生物能源领域有应用。