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Establishment of a universal and rational gene detection strategy through three-way junction-based remote transduction

机译:通过基于三向连接的远程转导建立通用合理的基因检测策略

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摘要

The polymerase chain reaction and many isothermal amplifications are able to achieve super gene amplification. Unfortunately, most commonly-used transduction methods, such as dye staining and Taqman-like probing, still suffer from shortcomings including false signals or difficult probe design, or are incompatible with multi-analysis. Here a universal and rational gene detection strategy has been established by translating isothermal amplicons to enzyme-free strand displacement circuits via three-way junction-based remote transduction. An assistant transduction probe was imported to form a partial hybrid with the target single-stranded nucleic acid. After systematic optimization the hybrid could serve as an associative trigger to activate a downstream circuit detector via a strand displacement reaction across the three-way junction. By doing so, the detection selectivity can be double-guaranteed through both amplicon–transducer recognition and the amplicon–circuit reaction. A well-optimized circuit can be immediately applied to a new target detection through simply displacing only 10–12 nt on only one component, according to the target. More importantly, this property for the first time enables multi-analysis and logic-analysis in a single reaction, sharing a single fluorescence reporter. In an applicable model, trace amounts of Cronobacter and Enterobacteria genes have been clearly distinguished from samples with no bacteria or one bacterium, with ultra-high sensitivity and selectivity.
机译:聚合酶链反应和许多等温扩增能够实现超基因扩增。不幸的是,大多数常用的转导方法,例如染料染色和类似Taqman的探针,仍然存在缺陷,包括错误信号或探针设计困难,或者与多重分析不兼容。在这里,通过基于三向连接的远程转导将等温扩增子翻译成无酶链置换电路,已经建立了一种通用且合理的基因检测策略。导入辅助转导探针以与靶单链核酸形成部分杂交体。经过系统优化后,混合动力车可作为关联触发器,通过三通路口的链位移反应激活下游电路检测器。这样,可以通过扩增子-换能器识别和扩增子-电路反应双重保证检测选择性。根据目标,只需在一个组件上仅移动10–12 nt,即可将优化良好的电路立即应用于新的目标检测。更重要的是,该特性首次实现了在单个反应中共享一个荧光报告分子的多重分析和逻辑分析。在一个适用的模型中,痕量的克罗诺杆菌和肠杆菌基因已与无细菌或仅一种细菌的样品区分开,具有超高的灵敏度和选择性。

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