副溶血性弧菌
微流控
计算生物学
微流控芯片
食品安全
基因组
鉴定(生物学)
多路复用
高保真
生物
计算机科学
基因
纳米技术
遗传学
材料科学
工程类
食品科学
细菌
电信
植物
电气工程
作者
Xinran Xiang,Enjie Diao,Yuting Shang,Minghui Song,Yinglong He
标识
DOI:10.1016/j.foodres.2022.112032
摘要
With the rapid development of logistics, a growing number of pathogenic microorganisms has the means to spread worldwide using food as a carrier; thus, there is an urgent need to develop effective detection strategies to ensure food safety. By combining novel markers identified by pan-genome analysis and a digital recombinase-aided amplification (RAA) detection method based on a microfluidic chip, a strategy of high-fidelity target-based microfluidic identification (HFTMI) has been developed. Herein, a proof-of-concept study of HFTMI for rapid pathogen detection of V. parahaemolyticus was investigated. Specific primers designed for the gene group_41170 identified in the pan-genome analysis showed high sensitivity and a broad spectrum for the detection of V. parahaemolyticus. Different power systems were investigated to increase the partition rate on specifically designed chamber-based digital chips. The performance of HFTMI was greatly improved compared with qPCR. Collectively, this novel HFTMI system provides more reliable guidance for food safety testing.
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