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基于细菌联合体的传感系统用于检测有机磷农药。

Bacterial Consortium-Based Sensing System for Detecting Organophosphorus Pesticides.

出版信息

Anal Chem. 2018 Sep 4;90(17):10577-10584. doi: 10.1021/acs.analchem.8b02709. Epub 2018 Aug 13.

Abstract

Engineered bacteria with synthetic gene circuits are attractive tools to detect environmental contaminants. However, their applications in realistic settings are hindered by its relatively low sensitivity, long response time, and limited portability. Here, we present a synthetic bacterial consortium-based system for detecting organophosphorus pesticides (OPs). The system consists of two Escherichia coli strains with divided tasks, including one for hydrolyzing OPs to p-nitrophenol (PNP) and the other for converting the PNP signal into β-galactosidase production for colorimetric detection. Upon optimization, the system was able to detect ethyl-paraoxon at the concentration of 1 × 10 M within 3.5 h of induction at 28 °C, which is approximately 200-fold more sensitive than single-cell based whole-cell sensing. In addition, it was capable of detecting several OPs, commonly used in agriculture. Furthermore, the system showed promise for on-site detection through the demonstration of a paper-based setting and real apple and soil samples. This study provides a rapid, sensitive, and portable biosensing platform for contaminant detection and also demonstrates the utility of engineered microbial ecosystems for novel environmental applications.

摘要

基于合成细菌群落的有机磷农药检测系统。该系统由两株大肠杆菌组成,每株都具有特定的任务,一株负责将有机磷农药水解为对硝基苯酚(PNP),另一株则将 PNP 信号转化为β-半乳糖苷酶的产生,用于比色检测。经过优化,该系统在 28°C 诱导 3.5 小时后,能够检测到浓度为 1×10^-7 M 的乙基对氧磷,比基于单细胞的全细胞传感方法灵敏约 200 倍。此外,它还能够检测到几种农业中常用的有机磷农药。此外,该系统通过演示纸基设置以及真实的苹果和土壤样本,展示了在现场检测方面的应用潜力。本研究为污染物检测提供了一种快速、灵敏、便携的生物传感平台,同时也证明了工程微生物生态系统在新型环境应用方面的实用性。

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