酿酒酵母基因组设计合成计划旨在化学全合成真核模式生物酿酒酵母基因组,在帮助人类深刻理解生命的同时,通过基因组系统性重排的实现,加速酵母进化,探索其在能源、医药、环境等领域的应用。
Shen Y, Wang Y, Chen T, et al. Deep functional analysis of synII, a 770-kilobase synthetic yeast chromosome. Science, 2017, 355(6329).
Zhang W, Zhao G, Luo Z, et al. Engineering the ribosomal DNA in a megabase synthetic chromosome. Science, 2017, 355(6329): 1-7.
Mercy G, Mozziconacci J, Scolari V F, et al. 3D organization of synthetic and scrambled chromosomes. Science, 2017, 355(6329).
Mitchell L A, Wang A, Stracquadanio G, et al. Synthesis, debugging, and effects of synthetic chromosome consolidation: synVI and beyond. Science, 2017, 355(6329).
Richardson S M, Mitchell L A, Stracquadanio G, et al. Design of a synthetic yeast genome. Science, 2017, 355(6329): 1040-1044.
Wu Y, Li B, Zhao M, et al. Bug mapping and fitness testing of chemically synthesized chromosome X. Science, 2017, 355(6329): 1-6.
Xie Z X, Li B, Mitchell L A, et al. “Perfect” designer chromosome V and behavior of a ring derivative. Science, 2017, 355(6329).
Luo Z, Wang L, Wang Y, et al. Identifying and characterizing SCRaMbLEd synthetic yeast using ReSCuES.[J]. Nature Communications, 2018, 9(1).
Liu, W., Luo, Z., Wang, Y., et al. (2018). Rapid pathway prototyping and engineering using in vitro and in vivo synthetic genome SCRaMbLE-in methods. Nature communications, 9(1), 1936.
Jia B, Wu Y, Li B, et al. Precise control of SCRaMbLE in synthetic haploid and diploid yeast. Nature Communications, 2018, 9(1): 1933.
Blount B A, Gowers G F, Ho J C, et al. Rapid host strain improvement by in vivo rearrangement of a synthetic yeast chromosome. Nature Communications, 2018, 9(1): 1932.
Shen M J, Wu Y, Yang K, et al. Heterozygous diploid and interspecies SCRaMbLEing. Nature Communications, 2018, 9(1): 1934.
Wu Y, Zhu R Y, Mitchell L A, et al. In vitro DNA SCRaMbLE. Nature Communications, 2018, 9(1).
Hochrein L, Mitchell L A, Schulz K, et al. L-SCRaMbLE as a tool for light-controlled Cre-mediated recombination in yeast. Nature Communications, 2018, 9(1).
Shen Y, Stracquadanio G, Wang Y, et al. SCRaMbLE generates designed combinatorial stochastic diversity in synthetic chromosomes. Genome Research, 2016, 26(1): 36-49.