Bacterial Generation Time

Bacterial generation time is the interval required for a bacterial population to double in number, making it a key measure of microbial growth and reproductive rate. During favorable conditions, cells grow, replicate their DNA, and divide by binary fission; the generation time is influenced by factors such as nutrient availability, temperature, pH, and species-specific metabolism. Measuring this interval from growth curves helps researchers calculate growth rates, compare bacterial physiology, monitor cultures, and evaluate responses to antibiotics or environmental change. In biology, generation time also supports studies of population dynamics, disease progression, and industrial fermentation.

Bacterial Generation Time - Related Videos

Education

JoVE Core - Microbiology

Generation Time

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2025

Bacterial generation time, the period required for a bacterial population to double during its exponential growth phase, serves as a critical measure of microbial growth dynamics under optimal conditions. This parameter varies significantly across bacterial species and can be influenced by factors such as temperature, pH, and the availability of nutrients. For example, Escherichia coli can achieve a generation time of approximately 20 minutes, while Mycobacterium tuberculosis exhibits a much...

Research

JoVE EoE - Bacterial Growth and Techniques

Real-Time Monitoring of Bacterial Growth Using a Microfluidic Microdroplet Culture System

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2025

Source: Jian, X. et. al., Automated Microbial Cultivation and Adaptive Evolution using Microbial Microdroplet Culture System (MMC). J. Vis. Exp. (2022)This video demonstrates the use of a microfluidic droplet-based platform for real-time monitoring of bacterial growth. By generating uniform droplets containing bacterial suspensions and guiding them through a detection pathway, the system enables continuous optical measurement of cell density to construct a growth curve.

Bacterial Endophthalmitis Mouse Model: A Method for Generating Bacterial Endophthalmitis via Intravitreal Injection of Bacterial Suspension into Eye of Mouse

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2025

This video describes a method for generating a mouse model that mimics bacterial endophthalmitis – an intraocular infection resulting from a bacterial invasion into the eye’s vitreous cavity – via intravitreal injection of a bacterial suspension into the eye. This mouse model helps study the disease mechanism and evaluate therapeutics for it.

Generating Pure Bacterial Cultures in a Liquid Medium

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2025

Source: Brumfield, K. D. et. al., Laboratory Techniques Used to Maintain and Differentiate Biotypes of Vibrio cholerae Clinical and Environmental Isolates. J. Vis. Exp. (2017)This video demonstrates the growth of bacterial cultures in a liquid medium. Shaking promotes aeration and distributes nutrients evenly, supporting exponential growth and resulting in a uniform, metabolically active suspension suitable for downstream applications.

Real-Time Imaging of Bacterial Infection in a Mouse Model Using Bioluminescence

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2026

Source: Valentine, M. E., et al., Generation of In-Frame Gene Deletion Mutants in Pseudomonas aeruginosa and Testing for Virulence Attenuation in a Simple Mouse Model of Infection. J. Vis. Exp. (2020)This video demonstrates the use of a bioluminescence-based imaging approach to monitor bacterial infection in a live mouse model. Sequential bioluminescent and X-ray imaging enables real-time visualization and anatomical localization of infection spread throughout the host.

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