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用于噬菌体检测和噬菌体受体区分的表观遗传生物传感器。

Epigenetic biosensors for bacteriophage detection and phage receptor discrimination.

机构信息

Departamento de Genética, Facultad de Biología, Universidad de Sevilla, Sevilla, Spain.

Laboratoire de Chimie Bactérienne, Centre National de la Recherche Scientifique, Aix-Marseille Université, Marseille, France.

出版信息

Environ Microbiol. 2020 Aug;22(8):3126-3142. doi: 10.1111/1462-2920.15050. Epub 2020 Jun 1.

Abstract

Environmental monitoring of bacteria using phage-based biosensors has been widely developed for many different species. However, there are only a few available methods to detect specific bacteriophages in raw environmental samples. In this work, we developed a simple and efficient assay to rapidly monitor the phage content of a given sample. The assay is based on the bistable expression of the Salmonella enterica opvAB operon. Under regular growth conditions, opvAB is only expressed by a small fraction of the bacterial subpopulation. In the OpvAB subpopulation, synthesis of the OpvA and OpvB products shortens the O-antigen and confers resistance to phages that use LPS as a receptor. As a consequence, the OpvAB subpopulation is selected in the presence of such phages. Using an opvAB::gfp fusion, we could monitor LPS-binding phages in various media, including raw water samples. To enlarge our phage-biosensor panoply, we also developed biosensors able to detect LPS, as well as protein-binding coliphages. Moreover, the combination of these tools allowed to identify the bacterial receptor triggering phage infection. The epigenetic opvAB::gfp biosensor thus comes in different flavours to detect a wide range of bacteriophages and identify the type of receptor they recognize.

摘要

利用基于噬菌体的生物传感器对细菌进行环境监测已经在许多不同的物种中得到了广泛的发展。然而,只有少数几种方法可以检测原始环境样本中的特定噬菌体。在这项工作中,我们开发了一种简单而有效的方法来快速监测给定样品中的噬菌体含量。该方法基于沙门氏菌 enterica opvAB 操纵子的双稳态表达。在常规生长条件下,opvAB 仅由一小部分细菌亚群表达。在 OpvAB 亚群中,OpvA 和 OpvB 产物的合成缩短了 O-抗原并赋予了对使用 LPS 作为受体的噬菌体的抗性。因此,在存在这些噬菌体的情况下,OpvAB 亚群被选择。使用 opvAB::gfp 融合,我们可以在各种培养基中监测 LPS 结合噬菌体,包括原水样本。为了扩大我们的噬菌体生物传感器的范围,我们还开发了能够检测 LPS 以及蛋白结合噬菌体的生物传感器。此外,这些工具的组合允许识别触发噬菌体感染的细菌受体。因此,表观遗传 opvAB::gfp 生物传感器有不同的风味,可以检测广泛的噬菌体并识别它们识别的受体类型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a19/7496735/aa74af751146/EMI-22-3126-g001.jpg

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