Growth-promoting Bacteria

Growth-promoting bacteria are beneficial microorganisms that enhance the growth, development, or productivity of plants and other organisms through interactions with their hosts or surrounding environments. They work through mechanisms such as biological nitrogen fixation, phosphate solubilization, production of growth-regulating compounds, improved nutrient acquisition, and suppression of competing microbes. In plant biology, these bacteria may colonize roots or internal tissues, where they influence nutrient availability, stress responses, and overall plant vigor. Their use supports sustainable agriculture, biofertilizer development, crop resilience, and research into beneficial host-microbe relationships, potentially reducing reliance on synthetic fertilizers and chemical treatments.

Growth-promoting Bacteria - Related Videos

Research

JoVE EoE - Bacterial Growth and Techniques

Revival and Growth of Lactic Acid Bacteria

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2025

Source: Ayivi, R. et al., The Cultivation, Growth, and Viability of Lactic Acid Bacteria: A Quality Control Perspective. J. Vis. Exp. (2022)This video demonstrates the method for recovering cold-stressed lactic acid bacteria from a frozen glycerol stock, restoring bacterial viability through anaerobic incubation, and isolating active colonies for culture expansion.

Optimize Flue Gas Settings to Promote Microalgae Growth in Photobioreactors via Computer Simulations

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Cited by 5 •

2013

Flue gas from power plants is a cheap CO2 source for algal growth. We have built prototype "flue gas to algal cultivation" systems and described how to scale up the algal cultivation process. We have demonstrated the use of a mass-transfer bio-reaction model to simulate and to design the optimal operation of flue gas for the growth of Chlorella sp. in algal photo-bioreactors.

A Deferred Growth Inhibition Assay to Evaluate the Effect of Bacteria-Derived Antimicrobial Compounds

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2025

This video showcases the deferred growth inhibition assay, used to investigate how antimicrobial compounds produced by one type of bacteria affect another competing bacterial strain.

Measuring Growth and Gene Expression Dynamics of Tumor-Targeted S. Typhimurium Bacteria

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Cited by 22 •

2013

The goal of these experiments is to generate quantitative time-course data on the growth and gene expression dynamics of attenuated S. typhimurium bacterial colonies growing inside tumors. This video covers tumor cell preparation and implantation, bacteria preparation and injection, whole-animal luminescence imaging, tumor excision, and bacterial colony counting.

Research

JoVE Journal - Biology
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Deferred Growth Inhibition Assay to Quantify the Effect of Bacteria-derived Antimicrobials on Competition

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Cited by 19 •

2016

The deferred growth inhibition assay can be used to assess the competition effect by one bacterial isolate on another. Inhibition is quantified by measuring the zone of clearing around the inhibitor-producing isolate, or qualitatively assessed by determining the visible extent of inhibition.

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