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FungalBraid: A GoldenBraid-based modular cloning platform for the assembly and exchange of DNA elements tailored to fungal synthetic biology

机译:Fungalbraid:基于Goldenbraid的模块化克隆平台,用于组装和交换DNA元素,针对真菌合成生物学量身定制

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Current challenges in the study and biotechnological exploitation of filamentous fungi are the optimization of DNA cloning and fungal genetic transformation beyond model fungi, the open exchange of ready-to-use and standardized genetic elements among the research community, and the availability of universal synthetic biology tools and rules. The GoldenBraid (GB) cloning framework is a Golden Gate-based DNA cloning system developed for plant synthetic biology through Agrobacterium tumefaciens-mediated genetic transformation (ATMT). In this study, we develop reagents for the adaptation of GB version 3.0 from plants to filamentous fungi through: (i) the expansion of the GB toolbox with the domestication of fungal-specific genetic elements; (ii) the design of fungal-specific GB structures; and (iii) the ATMT and gene disruption of the plant pathogen Penicillium digitatum as a proof of concept. Genetic elements domesticated into the GB entry vector pUPD2 include promoters, positive and negative selection markers and terminators. Interestingly, some GB elements can be directly exchanged between plants and fungi, as demonstrated with the marker hph for Hyg(R) or the fluorescent protein reporter YFP. The iterative modular assembly of elements generates an endless number of diverse transcriptional units and other higher order combinations in the pDGB3 alpha/pDGB3 Omega destination vectors. Furthermore, the original plant GB syntax was adapted here to incorporate specific GB structures for gene disruption through homologous recombination and dual selection. We therefore have successfully adapted the GB technology for the ATMT of fungi. We propose the name of FungalBraid (FB) for this new branch of the GB technology that provides open, exchangeable and collaborative resources to the fungal research community.
机译:丝状真菌的研究和生物技术利用的当前挑战是DNA克隆和真菌遗传转化的优化,超越模型真菌,研究界中的即用和标准化遗传元素的开放式交流,以及普遍合成生物学的可用性工具和规则。 Goldenbraid(GB)克隆框架是通过土壤杆菌介导的遗传转化(ATMT)为植物合成生物学开发的基于金门的DNA克隆系统。在这项研究中,我们通过以下方式开发从植物到丝状真菌的GB 3.0版的试剂:(i)GB工具箱的扩展与统治真菌特异性遗传元素; (ii)真菌特异性GB结构的设计; (iii)ATMT和基因破坏植物病原体的黄霉菌,作为概念证明。驯化成GB进入载体PUPD2的遗传元素包括启动子,正面和负选择标记和终止子。有趣的是,一些GB元素可以直接在植物和真菌之间进行交换,如Hyg或荧光蛋白报告器YFP的标记HPH所示。元素的迭代模块化组装在PDGB3 Alpha / PDGB3 OMEGA目的地向量中产生无限数量的不同转录单元和其他高阶组合。此外,原始植物GB语法适用于通过同源重组和双重选择将特定的GB结构掺入基因破坏。因此,我们已成功调整了真菌的ATMT的GB技术。我们为GB技术的新分支提出了FunGalbraid(FB)的名称,为真菌研究界提供了开放,可兑换和协作资源。

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