合成生物学
DNA
计算生物学
生物医学
顺序装配
DNA纳米技术
纳米技术
生物
遗传学
材料科学
基因
基因表达
转录组
作者
Wei Tan,Qing Miao,Xuemei Jia,Ying Liu,Shuai Li,Dayong Yang
标识
DOI:10.1002/cbic.202400054
摘要
Abstract Synthetic biology, a newly and rapidly developing interdisciplinary field, has demonstrated increasing potential for extensive applications in the wide areas of biomedicine, biofuels, and novel materials. DNA assembly is a key enabling technology of synthetic biology and a central point for realizing fully synthetic artificial life. While the assembly of small DNA fragments has been successfully commercialized, the assembly of large DNA fragments remains a challenge due to their high molecular weight and susceptibility to breakage. This article provides an overview of the development and current state of DNA assembly technology, with a focus on recent advancements in the assembly of large DNA fragments in Escherichia coli , Bacillus subtilis , and Saccharomyces cerevisiae . In particular, the methods and challenges associated with the assembly of large DNA fragment in different hosts are highlighted. The advancements in DNA assembly have the potential to facilitate the construction of customized genomes, giving us the ability to modify cellular functions and even create artificial life. It is also contributing to our ability to understand, predict, and manipulate living organisms.
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