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一个基于质粒的扩展遗传工具箱实现了三角褐指藻中的Cas9基因组编辑和合成途径的稳定维持。

An Expanded Plasmid-Based Genetic Toolbox Enables Cas9 Genome Editing and Stable Maintenance of Synthetic Pathways in Phaeodactylum tricornutum.

作者信息

Slattery Samuel S, Diamond Andrew, Wang Helen, Therrien Jasmine A, Lant Jeremy T, Jazey Teah, Lee Kyle, Klassen Zachary, Desgagné-Penix Isabel, Karas Bogumil J, Edgell David R

机构信息

Department of Biochemistry, Schulich School of Medicine and Dentistry, Western University , London, ON N6A 5C1, Canada.

Department of Chemistry, Biochemistry and Physics, Université du Québec à Trois-Rivières , 3351 boul. des Forges, Trois-Rivières, QC G9A 5H7, Canada.

出版信息

ACS Synth Biol. 2018 Feb 16;7(2):328-338. doi: 10.1021/acssynbio.7b00191. Epub 2018 Jan 8.

Abstract

With the completion of the genome sequence, and development of an efficient conjugation-based transformation system allowing the introduction of stable episomes, Phaeodactylum tricornutum has become an ideal platform for the study of diatom biology and synthetic biology applications. The development of plasmid-based genetic tools is the next step to improve manipulation of this species. Here, we report the identification of endogenous P. tricornutum promoters and terminators allowing selective expression of antibiotic resistance markers from stably replicating plasmids in P. tricornutum. Significantly, we developed a protocol for sequential conjugation of plasmids from Escherichia coli to P. tricornutum and demonstrated simultaneous replication of two plasmids in P. tricornutum. We developed a simple and robust conjugative system for Cas9 editing that yielded up to 60% editing efficiency of the urease gene. Finally, we constructed a plasmid encoding eight genes involved in vanillin biosynthesis that was propagated in P. tricornutum over four months with no evidence of rearrangements, with whole-plasmid sequencing indicating that the majority of mutations occurred after plasmid assembly and initial conjugation rather than during long-term propagation. The plasmid-based tools described here will facilitate investigation of the basic biology of P. tricornutum and enable synthetic biology applications.

摘要

随着基因组序列的完成,以及一种高效的基于接合的转化系统的开发,该系统允许引入稳定的附加体,三角褐指藻已成为研究硅藻生物学和合成生物学应用的理想平台。开发基于质粒的遗传工具是进一步改进对该物种操作的下一步。在此,我们报告了对三角褐指藻内源性启动子和终止子的鉴定,这些启动子和终止子允许从稳定复制的质粒中在三角褐指藻中选择性表达抗生素抗性标记。重要的是,我们开发了一种从大肠杆菌到三角褐指藻的质粒顺序接合方案,并证明了两种质粒在三角褐指藻中同时复制。我们开发了一种用于Cas9编辑的简单而强大的接合系统,该系统对脲酶基因的编辑效率高达60%。最后,我们构建了一个编码参与香草醛生物合成的八个基因的质粒,该质粒在三角褐指藻中传播了四个月,没有重排的迹象,全质粒测序表明大多数突变发生在质粒组装和初始接合之后,而不是在长期传播过程中。本文所述的基于质粒的工具将有助于对三角褐指藻的基础生物学进行研究,并实现合成生物学应用。

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