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[合成基因组学:设计与合成的艺术]

[Synthetic genomics: the art of design and synthesis].

作者信息

Luo Zhouqing, Dai Junbiao

机构信息

School of Life Sciences, Center for Synthetic and Systems Biology, Tsinghua University, Beijing 100084, China.

出版信息

Sheng Wu Gong Cheng Xue Bao. 2017 Mar 25;33(3):331-342. doi: 10.13345/j.cjb.160411.

Abstract

Benefited from the rapid development of high-throughput sequencing, genome editing, DNA synthesis and functional genomics, synthetic genomics gains the momentum in this century. The entire genomes of several viruses and one prokaryote have been chemically synthesized and applied to drive normal cellular processes. The first eukaryotic genome synthesis project (Sc2.0) is on-going and about half of the genome has been synthesized and functionally tested. The Human Genome Project-Write (HGP-Write) was proposed in 2016, which pushes the tide of synthetic genomics to a position we have never seen before. Technologies on genome-scale design and DNA synthesis have been rapidly developed, aiming to construct a more predictable and controllable genome at reasonable cost. The generation of synthetic organisms not only has promising applications for industry, environment, healthy and basic researches, but also raises ethic and policy concerns. This review presents the development of synthetic genomics, with emphasis on technologies for whole genome design, synthesis and assembly. We also discussed ethics, prospective and challenge in synthetic genomics. As one of the major branches in synthetic biology, synthetic genomics is still at its infant stage. A lot of excitement will come in the next few years.

摘要

受益于高通量测序、基因组编辑、DNA合成和功能基因组学的快速发展,合成基因组学在本世纪获得了发展动力。几种病毒和一种原核生物的全基因组已被化学合成并应用于驱动正常细胞过程。首个真核生物基因组合成项目(Sc2.0)正在进行中,约一半的基因组已被合成并进行了功能测试。人类基因组编写计划(HGP-Write)于2016年提出,它将合成基因组学的浪潮推向了前所未有的高度。基因组规模设计和DNA合成技术得到了快速发展,旨在以合理成本构建更具可预测性和可控性的基因组。合成生物体的产生不仅在工业、环境、健康和基础研究方面具有广阔应用前景,也引发了伦理和政策方面的关注。本综述介绍了合成基因组学的发展,重点阐述了全基因组设计、合成和组装技术。我们还讨论了合成基因组学中的伦理、前景和挑战。作为合成生物学的主要分支之一,合成基因组学仍处于起步阶段。未来几年将会有很多令人兴奋的事情发生。

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