Blue Light Photoreceptor

Blue light photoreceptors are light-sensitive proteins that detect short-wavelength visible light and convert it into biological signals, making them important regulators of behavior, development, and cellular timing. In many organisms, blue-light absorption by a flavin or other chromophore changes the receptor’s conformation, activating downstream signaling pathways that alter gene expression, protein activity, or cell movement. In plants, phototropins and cryptochromes use these signals to control phototropism, stomatal opening, circadian rhythms, and growth. Studying these receptors helps explain how organisms respond to their light environment and supports research in photobiology, optogenetics, and engineered light-controlled systems.

Blue Light Photoreceptor - Related Videos

Education

JoVE Core - Biology

Photoreceptors and Plant Responses to Light

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2020

Light plays a significant role in regulating the growth and development of plants. In addition to providing energy for photosynthesis, light provides other important cues to regulate a range of developmental and physiological responses in plants. What Is a Photoreceptor? Plants respond to light using a unique set of light-sensitive proteins called photoreceptors. Photoreceptors contain photopigments, which consist of a protein component bound to a non-protein, light-absorbing pigment called...

Research

JoVE Journal - Neuroscience

Desensitization and Recovery of Crayfish Photoreceptors Upon Delivery of a Light Stimulus

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Cited by 1 •

2019

A protocol for the study of desensitization and sensitivity recovery of crayfish photoreceptors as a function of circadian time is presented.

Electrophysiological Recording of Voltage Responses of Drosophila Retinal Photoreceptors to Light Stimuli

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2025

This video outlines the protocol for electrophysiological recording of photoreceptor activity in the eye of an immobilized Drosophila, enabling precise measurement of voltage changes in response to light stimuli.

Analyzing Synaptic Modulation of Drosophila melanogaster Photoreceptors after Exposure to Prolonged Light

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Cited by 13 •

2017

Here we show how to quantify the number and spatial distribution of synaptic active zones in Drosophila melanogaster photoreceptors, highlighted with a genetically encoded molecular marker, and their modulation after prolonged exposure to light.

Research

JoVE Journal - Neuroscience
Free Sample

Electrophysiological Method for Recording Intracellular Voltage Responses of Drosophila Photoreceptors and Interneurons to Light Stimuli In Vivo

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Cited by 14 •

2016

Sharp microelectrodes enable accurate electrophysiological characterization of photoreceptor and visual interneuron output in living Drosophila. Here we show how to use this method to record high-quality voltage responses of individual cells to controlled light stimulation. This method is ideal for studying neural information processing in insect compound eyes.

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