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Optimization and Characterization of the Synthetic Secondary Chromosome synVicII in Escherichia coli

机译:大肠杆菌中合成次级染色体synVicII的优化和表征

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Learning by building is one of the core ideas of synthetic biology research. Consequently, the way to fully understand what a chromosome is one needs to build more and more chromosomes. The last years have seen exciting synthetic-chromosome studies. We had previously introduced the synthetic secondary chromosome synVicII in E. coli. It is based on the replication mechanism of the secondary chromosome in Vibrio cholerae. Here we present a detailed analysis of its genetic characteristics and a selection approach to optimize replicon stability. We probe the origin diversity of secondary chromosomes from Vibrionaceae by construction of several new respective replicons. Finally we present a synVicII version 2.0 with several innovations including its full compatibility with the popular Modular Cloning (MoClo) assembly system.
机译:通过建筑学习是合成生物学研究的核心思想之一。因此,需要一种完全了解染色体是什么的方法来构建越来越多的染色体。在最近几年中,看到了令人兴奋的合成染色体研究。我们之前已经在大肠杆菌中引入了合成二级染色体synVicII。它基于霍乱弧菌次级染色体的复制机制。在这里,我们介绍其遗传特性的详细分析和优化复制子稳定性的选择方法。我们通过构建几个新的各自复制子,从弧菌科中探查了次级染色体的起源多样性。最后,我们介绍了synVicII 2.0版,其中包含多项创新,包括与流行的模块化克隆(MoClo)组装系统的完全兼容性。

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