Dauer Larvae Stage

The dauer larva stage is an alternative, stress-resistant developmental state in nematodes, especially Caenorhabditis elegans, that allows larvae to survive unfavorable environmental conditions. When food is scarce, population density is high, or temperature is unfavorable, sensory signals alter hormonal and metabolic pathways, redirecting development into a nonfeeding, developmentally arrested stage with a protective cuticle and enhanced stress resistance. When conditions improve, dauer larvae resume feeding, exit the stage, and continue development. Studying dauer formation and recovery helps researchers investigate developmental plasticity, metabolism, stress biology, longevity, and the genetic regulation of environmental adaptation.

Dauer Larvae Stage - Related Videos

Research

JoVE Journal - Behavior

Large-Scale Gravitaxis Assay of Caenorhabditis Dauer Larvae

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Cited by 4 •

2022

The present protocol outlines methods for conducting a large-scale gravitaxis assay with Caenorhabditis dauer larvae. This protocol allows for better detection of gravitaxis behavior compared with a plate-based assay.

Research

JoVE Journal - Biology
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Small Molecule Screening and Toxicity Testing in Early-stage Zebrafish Larvae

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2025

This protocol describes a drug screening procedure in zebrafish larvae 3-7 days post fertilization followed by morphological assessment.

Generation, Maintenance, and Identification of Germ-Free Zebrafish Models from Larvae to Juvenile Stages

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Cited by 3 •

2024

This protocol outlines the primary steps for obtaining germ-free (GF) fish embryos and maintaining them from larvae until the juvenile stage, including sampling and detecting their sterile status. The use of GF models with infection is important for understanding the role of microbes in host health.

Microgavage of Zebrafish Larvae

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Cited by 91 •

2013

We present a novel method for microgavage of larval zebrafish utilizing standard embryo microinjection and stereomicroscopy equipment. We demonstrate that microgavage is a safe and efficient technique useful for delivering controlled amounts of diverse materials specifically into the larval zebrafish intestinal lumen.

Novel Assay for Cold Nociception in Drosophila Larvae

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Cited by 6 •

2017

Here we demonstrate a novel assay to study cold nociception in Drosophila larvae. This assay utilizes a custom-built Peltier probe capable of applying a focal noxious cold stimulus and results in quantifiable cold-specific behaviors. This technique will allow further cellular and molecular dissection of cold nociception.

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