Pathogenicity Islands

Pathogenicity islands are distinct regions of a bacterial genome that carry groups of genes enabling a microorganism to cause disease, making them important for understanding microbial virulence. Often acquired through horizontal gene transfer, these genomic islands commonly have atypical nucleotide composition, insert near tRNA genes, and encode factors such as toxins, adhesins, secretion systems, or host-cell invasion proteins. When expressed under appropriate environmental conditions, these coordinated genes can alter colonization, immune evasion, tissue damage, and disease progression. Identifying pathogenicity islands supports comparative genomics, pathogen detection, epidemiological tracking, and the study of potential targets for antimicrobial or vaccine development.

Pathogenicity Islands - Related Videos

Research

JoVE Journal - Neuroscience
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High-throughput Analysis of Locomotor Behavior in the Drosophila Island Assay

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Cited by 10 •

2017

The island assay is a relatively new, cost-effective assay that can be used to evaluate the basic locomotor behavior of Drosophila melanogaster. This manuscript describes algorithms for automatic data processing and objective quantification of island assay data, making this assay a sensitive, high-throughput readout for large genetic or pharmacological screens.

Research

JoVE EoE - Drosophila melanogaster (fruit fly)

Island Assay: A High-Throughput Method to Evaluate Drosophila Locomotor Behavior

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2023

This video describes the island assay, a behavioral method used to study Drosophila locomotion. The sample protocol features a setup for the assay compatible with semi-automated image analysis.

Visualization of Productivity Zones Based on Nitrogen Mass Balance Model in Narragansett Bay, Rhode Island

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Cited by 1 •

2023

Here, we aim to visualize the zonation of biological productivity in Narragansett Bay, Rhode Island, based on the nitrogen mass balance model. The results will inform nutrient management in the coastal regions to reduce hypoxia and eutrophication.

Single Cell Measurements of Vacuolar Rupture Caused by Intracellular Pathogens

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Cited by 22 •

2013

We describe a method for tracking the endomembrane rupture elicited by the intracellular bacteria Shigella flexneri and Mycobacterium tuberculosis upon host cell invasion. Our assay makes use of CCF4, a host cytoplasmic FRET probe in live or fixed cells. This reporter is degraded by an enzyme activity present on the bacterial surface.

Façade-Level Monitoring of CO2 Variability under Urban Heat Island Conditions using Low-Cost Sensor Data Loggers

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2025

A simple, effective environmental monitoring protocol to measure temperature, humidity, wind speed, and carbon dioxide variations across urban surfaces with differing sunlight exposure influenced by the urban heat island effect.

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