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用于聚酮化合物异源生物合成的酵母重组克隆:一个面向本科生的分子微生物学实验室模块

Yeast recombinational cloning for heterologous biosynthesis of polyketides: a molecular microbiology laboratory module for undergraduate students.

作者信息

Bejenari Mihaela, Nielsen Line, Spedtsberg Eva Mie Lang, Nielsen Mikkel Rank, Pedersen Tobias Bruun, Sørensen Jens Laurids

机构信息

Department of Chemistry and Bioscience, Aalborg University, Esbjerg, Denmark.

Department of Energy, Aalborg University, Esbjerg, Denmark.

出版信息

J Microbiol Biol Educ. 2023 Nov 27;24(3). doi: 10.1128/jmbe.00242-22. eCollection 2023 Dec.

Abstract

Recombinant plasmids are essential tools in molecular biotechnology, and reliable plasmid assembly methods have, therefore, become a prerequisite for the successful cloning and transfer of genes. Among the multitude of available plasmid assembly strategies, homologous recombinational cloning in yeast has emerged as a cost-effective and relatively simple method. Since we use this method routinely in our group for assembling large plasmids with secondary metabolite gene clusters and for direct heterologous production of polyketides in , we developed an exercise module for undergraduate students where they would get hands-on experience with these molecular practices. The exercises target several molecular techniques, including PCR, restriction enzyme digestion, and yeast recombinational cloning. The students will learn about plasmid assembly and yeast transformation methods by performing these experiments while inherently acquiring new skills valuable for their subsequent laboratory work or projects.

摘要

重组质粒是分子生物技术中的重要工具,因此,可靠的质粒组装方法已成为基因成功克隆和转移的先决条件。在众多可用的质粒组装策略中,酵母中的同源重组克隆已成为一种经济高效且相对简单的方法。由于我们小组经常使用这种方法来组装带有次生代谢物基因簇的大型质粒,并用于在[具体环境]中直接异源生产聚酮化合物,我们为本科生开发了一个实验模块,让他们亲身体验这些分子操作。这些实验针对多种分子技术,包括聚合酶链反应(PCR)、限制性内切酶消化和酵母重组克隆。学生们将通过进行这些实验来学习质粒组装和酵母转化方法,同时自然而然地获得对其后续实验室工作或项目有价值的新技能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf91/10720416/89fb78b5375d/jmbe.00242-22.f001.jpg

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