Photosynthetic Complex Separation

Photosynthetic complex separation is the isolation of membrane-bound protein assemblies that capture light and convert its energy into chemical energy, including photosystems and light-harvesting complexes. Researchers typically disrupt photosynthetic membranes, use detergents to solubilize lipid-associated complexes, and separate the resulting assemblies by techniques such as density-gradient centrifugation or chromatography according to size, charge, or density. The purified complexes can then be analyzed spectroscopically and biochemically to relate structure to energy transfer, electron transport, and photoprotection. In environmental research, this approach helps explain how algae, plants, and cyanobacteria adapt photosynthesis to changing light, temperature, and nutrient conditions.

Photosynthetic Complex Separation - 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...

Multimer-PAGE for Separating Native Protein Complexes: A Hybrid Separation Technique Consisting of Blue Native-PAGE and SDS-PAGE to Separate Intact Multimeric Proteins From Tissue Lysate

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2025

This video describes multimeric PAGE for separating native protein complexes from tissue homogenates. The technique is a hybrid of blue native-PAGE and SDS-PAGE techniques. The separated complexes can be characterized and studied for their role in cell functioning.

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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.

Phosphopeptide Enrichment: An Antibody-based Immunoprecipitation Technique to Separate Specific Phosphorylated Peptides from Complex Peptide Mixtures

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2023

In this video, we demonstrate antibody-based immunoprecipitation of phosphopeptides from a peptide mixture. The enriched phosphopeptides are vacuum concentrated and stored for downstream analysis.

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