Flagella Motility

Flagellar motility is the movement of cells or microorganisms generated by flagella, specialized appendages that convert cellular energy into propulsion. In bacteria, a rotary flagellar motor uses ion flow across the membrane to spin a helical filament, while eukaryotic flagella bend when dynein motors slide neighboring microtubules within a membrane-bound axoneme. This motion supports swimming, surface colonization, and chemotaxis, and enables processes such as sperm movement and algal locomotion. Studying flagellar motility helps explain microbial behavior, host interactions, and the cellular basis of motility disorders, while informing research on antimicrobial strategies and engineered microswimmers.

Flagella Motility - Related Videos

Education

JoVE Core - Microbiology

Flagella and Motility in Bacteria

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2025

Flagella are specialized, thread-like structures that extend from a bacteria's cell envelope. They play a crucial role in motility and chemotaxis. Their structural organization and functioning exemplify sophisticated biological engineering, enabling bacterial survival and adaptability in diverse environments.Structure of the FlagellumA bacterial flagellum consists of three key components: the filament, the hook, and basal body. The filament, a long, helical structure composed of repeating...

Research

JoVE Journal - Biology

Investigating Flagella-Driven Motility in Escherichia coli by Applying Three Established Techniques in a Series

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Cited by 17 •

2020

Many bacteria use flagella-driven motility to navigate their environment and colonize favorable surroundings both individually and as a collective. Demonstrated here is the use of three established methods that exploit motility as a selection tool to identify components/pathways contributing to swimming and swarming motility.

An Introduction to Cell Motility and Migration

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2023

Cell motility and migration play important roles in both normal biology and in disease. On one hand, migration allows cells to generate complex tissues and organs during development, but on the other hand, the same mechanisms are used by tumor cells to move and spread in a process known as cancer metastasis. One of the primary cellular machineries that make cell movement possible is an intracellular network of myosin and actin molecules, together known as “actomyosin”, which creates a...

Visualization of Bacterial Motility Using Redox Dye–Supplemented Semisolid Medium

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2025

Source: Chu, W., and Zhuang, X. Visualizing Bacterial Motility Based on a Color Reaction. J. Vis. Exp. (2022)This video demonstrates a redox dye-based semisolid agar assay for assessing bacterial motility by visually distinguishing motile and non-motile strains.

Swarming Assay for Visualizing Bacterial Surface Motility

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2025

Source: Morales-Soto, N. et. al., Preparation, Imaging, and Quantification of Bacterial Surface Motility Assays. J. Vis. Exp. (2015)This video demonstrates a swarming assay using bacteria that express green fluorescent protein to observe surface motility on soft agar. Time-lapse imaging captures coordinated expansion and tendril formation, highlighting bacterial surface motility.

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