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新型基于酵母的生物传感器,用于环境监测戊唑醇。

Novel yeast-based biosensor for environmental monitoring of tebuconazole.

机构信息

CBMA - Centre of Molecular and Environmental Biology/ARNET - Aquatic Research Network, Department of Biology, School of Sciences, University of Minho, 4710-057, Braga, Portugal.

Faculty of Pharmacy, University of Porto, Porto, Portugal.

出版信息

Appl Microbiol Biotechnol. 2024 Dec;108(1):10. doi: 10.1007/s00253-023-12944-z. Epub 2024 Jan 3.

Abstract

Due to increasing demand for high and stable crop production, human populations are highly dependent on pesticide use for growing and storing food. Environmental monitoring of these agrochemicals is therefore of utmost importance, because of their collateral effects on ecosystem and human health. Even though most current-use analytical methods achieve low detection limits, they require procedures that are too complex and costly for routine monitoring. As such, there has been an increased interest in biosensors as alternative or complementary tools to streamline detection and quantification of environmental contaminants. In this work, we developed a biosensor for environmental monitoring of tebuconazole (TEB), a common agrochemical fungicide. For that purpose, we engineered S. cerevisiae cells with a reporter gene downstream of specific promoters that are expressed after exposure to TEB and characterized the sensitivity and specificity of this model system. After optimization, we found that this easy-to-use biosensor consistently detects TEB at concentrations above 5 μg L and does not respond to realistic environmental concentrations of other tested azoles, suggesting it is specific. We propose the use of this system as a complementary tool in environmental monitoring programs, namely, in high throughput scenarios requiring screening of numerous samples. KEY POINTS: • A yeast-based biosensor was developed for environmental monitoring of tebuconazole. •The biosensor offers a rapid and easy method for tebuconazole detection ≥ 5 μg L. •The biosensor is specific to tebuconazole at environmentally relevant concentrations.

摘要

由于人们对高产、稳产作物的需求不断增加,在种植和储存粮食时高度依赖农药。因此,对这些农用化学品进行环境监测至关重要,因为它们会对生态系统和人类健康产生间接影响。尽管大多数当前使用的分析方法都能达到较低的检测限,但它们需要过于复杂和昂贵的程序来进行常规监测。因此,人们越来越关注生物传感器,将其作为替代或补充工具,以简化对环境污染物的检测和定量。在这项工作中,我们开发了一种用于环境监测的生物传感器,用于监测噻菌灵(TEB),一种常见的农用杀菌剂。为此,我们用报告基因工程改造了酿酒酵母细胞,该报告基因位于特定启动子的下游,这些启动子在暴露于 TEB 后表达,并对该模型系统的灵敏度和特异性进行了表征。经过优化,我们发现这种易于使用的生物传感器能够一致地检测到浓度高于 5μg/L 的 TEB,并且不会对其他测试的唑类化合物的实际环境浓度产生响应,表明其具有特异性。我们建议将该系统用作环境监测计划中的补充工具,特别是在需要筛选大量样本的高通量场景中。

关键点

  1. 开发了一种基于酵母的生物传感器,用于环境监测噻菌灵。

  2. 该生物传感器提供了一种快速简便的方法,用于检测 5μg/L 以上的噻菌灵。

  3. 该生物传感器在环境相关浓度下对噻菌灵具有特异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d5f/10764535/432dda1214c2/253_2023_12944_Fig1_HTML.jpg

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