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基于CRISPR的环境生物监测平台用于近缘入侵鼠种的检测:概念验证

bioRxiv · 2026年9月24日 · Duran-Vinet 等 11 位作者

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一分钟了解要点结合AI、CRISPR与环境DNA,首次实现对近缘入侵鼠的物种特异性检测。结果以三种近缘入侵鼠(波利尼西亚鼠、褐家鼠、黑家鼠)为难点模型,该平台实现了物种特异性区分,无可检测的交叉反应,对质粒DNA灵敏度达10 aM、对基因组DNA达10 fg/uL,部分检测还表现出可重复的半定量性能并通过了环境DNA验证。

不需要生物学背景,多打比方

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摘要Abstract

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Environmental biosurveillance requires technologies that can rapidly translate genomic information into sensitive, specific, and deployable detection tools. Here, we present the first proof-of-concept application of SENTINEL (Smart Environmental Nucleic-acid Tracking using Inference from Neural-networks for Early-warning Localization), integrating artificial-intelligence-guided target discovery, isothermal amplification, CRISPR-based detection, and environmental DNA. Using Rattus exulans, R. norvegicus, and R. rattus as a challenging model of closely related invasive vertebrates, SENTINEL achieved species-specific discrimination without detectable cross-reactivity and sensitivities of 10 aM for plasmid DNA and 10 fg/uL for genomic DNA. Selected assays also showed reproducible semi-quantitative performance and successful eDNA validation. This first application of CRISPR-based environmental biosurveillance to terrestrial invasive vertebrates demonstrates a transferable framework for converting sequence data into field-deployable assays, with potential applications across biosecurity, conservation, agriculture, and environmental monitoring.

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