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Multigene Engineering by GoldenBraid Cloning: From Plants to Filamentous Fungi and Beyond

机译:Muldbbraid Cloning的多岛工程:从植物到丝状真菌和超越

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Abstract Many synthetic biologists have adopted methods based on Type IIS restriction enzymes and Golden Gate technology in their cloning procedures, as these enable the combinatorial assembly of modular elements in a very efficient way following standard rules. GoldenBraid (GB) is a Golden Gate–based modular cloning system that, in addition, facilitates the engineering of large multigene constructs and the exchange of DNA parts as result of its iterative cloning scheme. GB was initially developed specifically for plant synthetic biology, and it has been subsequently extended and adapted to other organisms such as Saccharomyces cerevisiae , filamentous fungi, and human cells by incorporating a number of host‐specific features into its basic scheme. Here we describe the general GB cloning procedure and provide detailed protocols for its adaptation to filamentous fungi—a GB variant known as FungalBraid. The assembly of a cassette for gene disruption by homologous recombination, a fungal‐specific extension of the GB utility, is also shown. Development of FungalBraid was relatively straightforward, as both plants and fungi can be engineered using the same binary plasmids via Agrobacterium‐mediated transformation. We also describe the use of a set of web‐based tools available at the GB website that assist users in all cloning procedures. The availability of plant and fungal versions of GB will facilitate genetic engineering in these industrially relevant organisms. ? 2020 by John Wiley & Sons, Inc. Basic Protocol 1 : Software‐assisted modular DNA assembly of a two gene expression‐cassette with GB Basic Protocol 2 : Agrobacterium tumefaciens –mediated transformation of filamentous fungi Basic Protocol 3 : Software‐assisted modular DNA assembly of a gene disruption‐cassette using GB Basic Protocol 4 : Obtaining disruption transformants
机译:摘要许多合成生物学家在其克隆程序中采用了基于IIS限制酶和金栅极技术的方法,因为它们可以在标准规则之后以非常有效的方式实现模块化元素的组合组装。 Goldenbraid(GB)是一种基于Golden Gate的模块化克隆系统,另外,由于其迭代克隆方案的结果,促进了大型多岛构造的工程和DNA部件的交换。 GB最初专门为植物合成生物学开发,随后通过将许多宿主特征掺入其基本方案中,随后延伸并适应其他生物,例如糖酵母酿酒酵母,丝状真菌和人体细胞。在这里,我们描述了GB克隆程序的一般GB克隆程序,并为其适应丝状真菌-A GB变体提供了详细的协议,称为真菌布莱格。还显示了通过同源重组的基因破坏的盒式磁带的组装,GB效用的真菌特异性延伸。真菌布拉格的发展相对简单,因为植物和真菌可以通过农杆菌介导的转化使用相同的二元质粒来设计。我们还描述了在GB网站上使用一组基于Web的工具,帮助用户在所有克隆过程中。 GB的植物和真菌版本的可用性将促进这些工业相关的生物中的基因工程。还2020由John Wiley& SONS,Inc。基本协议1:具有GB基本协议的两种基因表达式盒的软件辅助模块化DNA组装:Tumefaciens的丝状真菌基本协议的介导转化3:基因中断的软件辅助模块化DNA组装 - 盒式磁带使用GB基本协议4:获取中断转化体

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