Photosynthetic Bacteria

Photosynthetic bacteria are microorganisms that convert light energy into chemical energy, supporting carbon fixation and nutrient cycling in diverse ecosystems. Depending on the group, they use chlorophyll-like pigments or bacteriochlorophylls to capture light and may perform oxygenic or anoxygenic photosynthesis, using water, hydrogen sulfide, or other electron donors during electron transport. Their metabolic flexibility allows growth in environments ranging from illuminated waters and soils to oxygen-poor habitats. In biology, photosynthetic bacteria provide models for studying energy conversion, microbial evolution, and ecological interactions, while their carbon fixation, pigment production, and capacity to generate biofuels support research in biotechnology and environmental applications.

Photosynthetic Bacteria - Related Videos

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JoVE EoE - Bacterial Growth and Techniques

Extraction and Purification of Plastoglobules from Photosynthetic Bacteria

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2025

Source: Shivaiah, K., et al. Plastoglobule Lipid Droplet Isolation from Plant Leaf Tissue and Cyanobacteria. J. Vis. Exp. (2022)The video demonstrates the isolation of plastoglobules from cyanobacteria. It begins with a culture of cyanobacteria and proceeds through cell disruption using mechanical force. The release of photosynthetic pigments indicates successful lysis. A sucrose step gradient is then used to separate cellular components by density, allowing low-density plastoglobules to form a...

Laboratory Simulation of an Iron(II)-rich Precambrian Marine Upwelling System to Explore the Growth of Photosynthetic Bacteria

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Cited by 2 •

2016

We simulated a Precambrian ferruginous marine upwelling system in a lab-scale vertical flow-through column. The goal was to understand how geochemical profiles of O2 and Fe(II) evolve as cyanobacteria produce O2. The results show the establishment of a chemocline due to Fe(II) oxidation by photosynthetically produced O2.

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JoVE Journal - Biology
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High-Throughput, In-Field Screening of Photosynthetic Efficiency in Crop Plants Using an Autonomous Robot

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2026

This manuscript describes a non-destructive, high-throughput approach for autonomous field measurements of photosystem II quantum efficiency, spectral reflectance, and plant architecture, enabling large-scale canopy photosynthesis phenotyping in agronomic and breeding field trials.

Environmental Sampling of Photosynthetic Microbes and Their Viruses: From Field to Lab

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2025

Here, we describe methods of sampling from the euphotic zones of marine and freshwater ecosystems to isolate cyanophages (and their hosts) and post-sampling processes that enrich single genotypes and characterize virus-host interaction dynamics.

Construction and Setup of a Bench-scale Algal Photosynthetic Bioreactor with Temperature, Light, and pH Monitoring for Kinetic Growth Tests

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Cited by 4 •

2017

This paper describes the assembly process and operation of a bench-scale photosynthetic bioreactor that can be used, in conjunction with other methods, to estimate pertinent kinetic growth parameters. This system continuously monitors the pH, light, and temperature using sensors, a data acquisition and control unit, and open-source data acquisition software.

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