Gfp Bacteria

GFP bacteria are genetically engineered bacterial cells that produce green fluorescent protein (GFP), providing a visible marker for studying bacterial behavior and host interactions. Expression of the gfp gene causes cells to synthesize GFP, which emits green fluorescence when illuminated with blue or ultraviolet light, allowing researchers to detect and follow labeled bacteria without destroying the sample. In immunology and infection research, GFP bacteria help visualize colonization, tissue localization, invasion, and interactions with immune cells. Fluorescence-based tracking can clarify infection dynamics, evaluate antimicrobial treatments, and connect bacterial distribution with host responses in cultured cells, tissues, or animal models.

Gfp Bacteria - Related Videos

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JoVE EoE - Bacterial Growth and Techniques

Measuring Mycobacterium smegmatis Mistranslation Rates Using a GFP/Luciferase Reporter System

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2025

Source: Chen, Y., et al., Measurement of Specific Mycobacterial Mistranslation Rates with Gain-of-function Reporter Systems. J. Vis. Exp. (2019)This video demonstrates a method to quantify mistranslation in Mycobacterium smegmatis using an inducible GFP and secreted mutant luciferase reporter system. It shows how luminescence resulting from mistranslation is measured and compared to GFP fluorescence to evaluate the impact of a test molecule on translational accuracy.

Natural Transformation and GFP Expression in the Filamentous Cyanobacterium Phormidium lacuna

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2025

Source: Weber, N., et al., Natural Transformation, Protein Expression, and Cryoconservation of the Filamentous Cyanobacterium Phormidium lacuna. J. Vis. Exp. (2022)This video describes a procedure for performing natural transformation in filamentous cyanobacteria using plasmid DNA to achieve stable GFP expression and antibiotic resistance through homologous recombination.

Visualizing Bacteria in Nematodes using Fluorescent Microscopy

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Cited by 20 •

2012

To study the mutualism between Xenorhabdus bacteria and Steinernema nematodes, methods were developed to monitor bacterial presence and location within nematodes. The experimental approach, which can be applied to other systems, entails engineering bacteria to express the green fluorescent protein and visualizing, using fluorescence microscopy bacteria within the transparent nematode.

Tracking Cells in GFP-transgenic Zebrafish Using the Photoconvertible PSmOrange System

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Cited by 2 •

2016

We established the photoconvertible PSmOrange system as a powerful, straight-forward and cost inexpensive tool for in vivo cell tracking in GFP transgenic backgrounds. This protocol describes its application in the zebrafish model system.

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JoVE Journal - Biology
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Live Imaging of GFP-labeled Proteins in Drosophila Oocytes

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Cited by 5 •

2013

A protocol for live imaging of GFP-tagged proteins or autofluorescent structures in individual Drosophila oocytes is described.

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