Planktonic Bacteria

Planktonic bacteria are free-floating bacterial cells suspended in aquatic environments, where they play essential roles in ecosystem function and microbial food webs. Their abundance and activity depend on conditions such as nutrient availability, temperature, light, and water movement, while metabolic processes including heterotrophy and photosynthesis allow them to transform dissolved organic and inorganic compounds. By decomposing organic matter, recycling nutrients, and supporting energy transfer to larger organisms, planktonic bacteria influence carbon cycling, water quality, and aquatic productivity. Studying these communities helps researchers assess environmental change, understand marine and freshwater ecosystems, and evaluate microbial responses to pollution or climate-related shifts.

Planktonic Bacteria - Related Videos

Research

JoVE Journal - Biology

Concentration of Metabolites from Low-density Planktonic Communities for Environmental Metabolomics using Nuclear Magnetic Resonance Spectroscopy

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Cited by 15 •

2012

A method for metabolite extraction from microbial planktonic communities is presented. Whole community sampling is achieved by filtration onto specially prepared filters. After lyophilization, aqueous-soluble metabolites are extracted. This approach allows for application of environmental metabolomics to trans-omics investigations of natural or experimental microbial communities.

Quantifying Enzyme-Induced Biofilm Suppression in Pathogenic Bacteria

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2026

Source: Tay, S. B., et al. Anti-virulent Disruption of Pathogenic Biofilms using Engineered Quorum-quenching Lactonases. J. Vis. Exp. (2016)The video demonstrates a method to quantify biofilm biomass in a pathogenic bacterium, comparing untreated controls with samples treated with a quorum-quenching enzyme. The enzyme disrupts bacterial signaling during early incubation, reducing cell adhesion. After washing and further incubation, control wells form dense biofilms, while treated wells show...

Engineering Adherent Bacteria by Creating a Single Synthetic Curli Operon

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Cited by 4 •

2012

The design of a synthetic operon encoding both the secretory apparatus and the structural monomers of curli fibers is described. Overproduction of these amyloids and adherent polymers allows a measurable gain of adherence of the E. coli chassis1. Easy ways to visualize and quantify adherence are explained.

A Method for Sample Preparation to Visualize Biofilm Forming Bacteria on Fungal Hyphae

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2025

This video describes a method to grow and qualitatively analyze bacterial biofilms on fungal hyphae using microscopy. Bacterial biofilms frequently form on fungal surfaces and involve numerous bacterial-fungal interaction processes, such as metabolic cooperation, competition, or predation.

Detection of Target Gene Expression in a Bacteria-Infected Mouse Brain

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2026

Source: Zhang, S., et al. Intracranial Subarachnoidal Route of Infection for Investigating Roles of Streptococcus suis Biofilms in Meningitis in a Mouse Infection Model. J. Vis. Exp. (2018).This video demonstrates the detection of target gene expression in a bacteria-infected mouse brain. RNA is extracted, treated with a DNA-degrading enzyme, and reverse-transcribed into cDNA. The cDNA is amplified through thermal cycling with gene-specific primers, while a DNA-binding dye binds to the...

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