利用工程单侧不相容性置换细菌质粒

Robert Gooding-Townsend, S. Ten Holder, B. Ingalls
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引用次数: 3

摘要

细菌质粒采用拷贝数控制系统,以确保它们不会使宿主负担过重。质粒不亲和性是由拷贝数控制系统的共享组分引起的,从而导致复制的相互抑制。不相容的质粒不能在宿主细胞内稳定地维持。单侧不相容,即质粒复制子是相容的,但其中一个质粒编码另一个质粒的复制抑制剂,导致被抑制的质粒快速位移。因此,我们提出单侧不亲和性可用于从种群中根除不需要的质粒。为了研究这一过程,我们开发了质粒动力学的确定性和随机模型。对这些模型的分析提供了质粒置换效果的预测。
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Displacement of Bacterial Plasmids by Engineered Unilateral Incompatibility
Bacterial plasmids employ copy number control systems to ensure that they do not overburden their hosts. Plasmid incompatibility is caused by shared components of copy number control systems, resulting in mutual inhibition of replication. Incompatible plasmids cannot be stably maintained within a host cell. Unilateral incompatibility, in which the plasmid replicons are compatible but one plasmid encodes for the replication inhibitor of the other, leads to rapid displacement of the inhibited plasmid. Thus, we propose that the unilateral incompatibility can be used to eradicate an undesirable plasmid from a population. To investigate this process, we developed deterministic and stochastic models of plasmid dynamics. An analysis of these models provides predictions about the efficacy of plasmid displacement.
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