基因组
合成生物学
染色体
计算生物学
酿酒酵母
生物
内复制
遗传学
基因组进化
真核细胞染色体精细结构
酵母
基因
倍性
作者
Sarah M. Richardson,Leslie A. Mitchell,Giovanni Stracquadanio,Kun Yang,Jessica S. Dymond,James E. DiCarlo,Dongwon Lee,Cheng Huang,Srinivasan Chandrasegaran,Yizhi Cai,Jef D. Boeke,Joel S. Bader
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2017-03-10
卷期号:355 (6329): 1040-1044
被引量:550
标识
DOI:10.1126/science.aaf4557
摘要
We describe complete design of a synthetic eukaryotic genome, Sc2.0, a highly modified Saccharomyces cerevisiae genome reduced in size by nearly 8%, with 1.1 megabases of the synthetic genome deleted, inserted, or altered. Sc2.0 chromosome design was implemented with BioStudio, an open-source framework developed for eukaryotic genome design, which coordinates design modifications from nucleotide to genome scales and enforces version control to systematically track edits. To achieve complete Sc2.0 genome synthesis, individual synthetic chromosomes built by Sc2.0 Consortium teams around the world will be consolidated into a single strain by “endoreduplication intercross.” Chemically synthesized genomes like Sc2.0 are fully customizable and allow experimentalists to ask otherwise intractable questions about chromosome structure, function, and evolution with a bottom-up design strategy.
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