Departamento de Biocatálisis, Instituto de Catálisis y Petroleoquímica, ICP-CSIC, Madrid, Spain.
Methods Mol Biol. 2025;2850:481-500. doi: 10.1007/978-1-0716-4220-7_27.
Researchers have dedicated efforts to refining genetic part assembly techniques, responding to the demand for complex DNA constructs. The optimization efforts, targeting enhanced efficiency, fidelity, and modularity, have yielded streamlined protocols. Among these, Golden Gate cloning has gained prominence, offering a modular and hierarchical approach for constructing complex DNA fragments. This method is instrumental in establishing a repository of reusable parts, effectively reducing the costs and proving highly valuable for high-throughput DNA assembly projects. In this review, we delve into the main protocol of Golden Gate cloning, providing refined insights to enhance protocols and address potential challenges. Additionally, we perform a thorough evaluation of the primary modular cloning toolkits adopted by the scientific community. The discussion includes an exploration of recent advances and challenges in the field, providing a comprehensive overview of the current state of Golden Gate cloning.
研究人员致力于完善基因片段组装技术,以满足复杂 DNA 构建的需求。这些优化工作旨在提高效率、保真度和模块化程度,从而产生了简化的方案。其中,Golden Gate 克隆技术脱颖而出,为构建复杂的 DNA 片段提供了模块化和分层的方法。这种方法有助于建立可重复使用部件的存储库,有效地降低成本,并且对高通量 DNA 组装项目非常有价值。在这篇综述中,我们深入探讨了 Golden Gate 克隆的主要方案,提供了改进方案和解决潜在挑战的深入见解。此外,我们还对科学界采用的主要模块化克隆工具包进行了全面评估。讨论包括对该领域的最新进展和挑战的探索,全面概述了 Golden Gate 克隆的现状。