活细胞合成逻辑门工程的最新进展与机遇。

Systems and Synthetic Biology Pub Date : 2014-12-01 Epub Date: 2014-08-28 DOI:10.1007/s11693-014-9154-6
Vijai Singh
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引用次数: 57

摘要

近年来,包括AND, OR, NOR, NOT, XOR和NAND在内的许多合成生物门已经在广泛的宿主中被设计和表征。新兴合成生物学社区的希望是构建一个具有良好特征的部件清单,并安装外部可控的独特基因和电路行为。尽管该领域仍在发展,尚未取得重大成功,但预计其回报将是巨大的。在这篇综述中,我们重点介绍了逻辑门工程的具体例子,这些例子具有对网络复杂性的基本理解和产生新的社会有用应用的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Recent advances and opportunities in synthetic logic gates engineering in living cells.

Recent advances and opportunities in synthetic logic gates engineering in living cells.

Recent advances and opportunities in synthetic logic gates engineering in living cells.

Recent advances and opportunities in synthetic logic gates engineering in living cells.

Recently, a number of synthetic biologic gates including AND, OR, NOR, NOT, XOR and NAND have been engineered and characterized in a wide range of hosts. The hope in the emerging synthetic biology community is to construct an inventory of well-characterized parts and install distinct gene and circuit behaviours that are externally controllable. Though the field is still growing and major successes are yet to emerge, the payoffs are predicted to be significant. In this review, we highlight specific examples of logic gates engineering with applications towards fundamental understanding of network complexity and generating a novel socially useful applications.

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