Myxococcus Xanthus

Myxococcus xanthus is a soil-dwelling bacterium known for cooperative behavior, predation, and multicellular development, making it an important model for studying bacterial sociality. Individual cells move across surfaces by gliding and coordinate through chemical signals, extracellular materials, and cell-to-cell interactions to hunt other microorganisms and respond to environmental stress. When nutrients become scarce, large populations aggregate into fruiting bodies, where some cells differentiate into resistant myxospores while others form supportive structures. Research on Myxococcus xanthus reveals how simple cells organize collective movement, division of labor, and developmental programs, providing insights into microbial ecology, cellular communication, and the evolution of multicellularity.

Myxococcus Xanthus - Related Videos

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JoVE EoE - Bacterial Growth and Techniques

Preparation of Myxococcus xanthus Samples for Live-Cell Imaging

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2025

Source: Schumacher, D., et al. Fluorescence Live-cell Imaging of the Complete Vegetative Cell Cycle of the Slow-growing Social Bacterium Myxococcus xanthus. J. Vis. Exp. (2018)This video demonstrates the preparation and imaging of Myxococcus xanthus, a slow-growing soil bacterium. The culture is grown in a medium, applied to a coverslip with fluorescent microspheres, and overlaid with a pre-warmed agarose pad to support hydration and nutrient supply. This setup enables long-term, time-lapse...

Recording Multicellular Behavior in Myxococcus xanthus Biofilms using Time-lapse Microcinematography

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Cited by 8 •

2010

To study Myxococcus xanthus swarm behavior, we have designed a time-lapse microcinematography protocol that can be modified for different assays. It employs standard growth conditions adapted for microscopy, and yields reproducible results by the use of inexpensive, reusable silicone gaskets. We have used this method to quantify multicellular chemotaxis.

Research

JoVE Journal - Biochemistry
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Fluorescence Live-cell Imaging of the Complete Vegetative Cell Cycle of the Slow-growing Social Bacterium Myxococcus xanthus

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Cited by 14 •

2018

Bacterial cells are spatially highly organized. To follow this organization over time in slow growing Myxococcus xanthus cells, a set-up for fluorescence live-cell imaging with high spatiotemporal resolution over several generations was developed. Using this method, spatiotemporal dynamics of important proteins for chromosome segregation and cell division could be determined.

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