Mathematics and Computer Science Department, Argonne National Laboratory, Argonne, IL, USA.
Biotechnol J. 2010 Jul;5(7):695-704. doi: 10.1002/biot.201000076.
With recent breakthroughs in experimental microbiology making it possible to synthesize and implant an entire genome to create a living cell, the challenge of constructing a working blueprint for the first truly minimal synthetic organism is more important than ever. Here we review the significant progress made in the design and creation of a minimal organism. We discuss how comparative genomes, gene essentiality data, naturally small genomes, and metabolic modeling are all being applied to produce a catalogue of the biological functions essential for life. We compare the minimal gene sets from three published sources with functions identified in 13 existing gene essentiality datasets. We examine how genome-scale metabolic models have been applied to design a minimal metabolism for growth in simple and complex media. Additionally, we survey the progress of efforts to construct a minimal organism, either through implementation of combinatorial deletions in Bacillus subtilis and Escherichia coli or through the synthesis and implantation of synthetic genomes.
随着实验微生物学的最新突破,使得合成和植入整个基因组来创建一个活细胞成为可能,因此构建第一个真正最小的合成生物体的工作蓝图的挑战比以往任何时候都更加重要。在这里,我们回顾了在设计和创建最小生物体方面取得的重大进展。我们讨论了比较基因组、基因必需性数据、天然小基因组以及代谢建模如何被应用于生成生命必需的生物学功能目录。我们将来自三个已发布来源的最小基因集与 13 个现有基因必需性数据集确定的功能进行了比较。我们研究了基因组规模的代谢模型如何被应用于设计在简单和复杂培养基中生长的最小代谢。此外,我们调查了构建最小生物体的进展,包括通过在枯草芽孢杆菌和大肠杆菌中实施组合缺失,或者通过合成和植入合成基因组。