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Exploring Social Interactions: Behavioral Experiments with C. elegans Male Nematodes
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Chun-Hao Chen

Chun-Hao Chen

National Taiwan University, Institute of Molecular and Cellular Biology, Taipei, Taiwan

Dr. Chun-Hao Chen is an assistant professor at the Institute of Molecular and Cellular Biology, National Taiwan University. He earned a Ph.D. and had early postdoctoral training under the supervision of Prof. Chun-Liang Pan to study neuronal development in nematode Caenorhabditis elegans (C. elegans) at the Institute of Molecular Medicine, National Taiwan University. He then shifted his research interest and joined Prof. Paul Sternberg’s lab at Caltech, studying genetic and neural mechanisms of mate discrimination in C. elegans males. Following the postdoctoral training, the Chen lab focuses on neural mechanisms of social behaviors using C. elegans as a model organism. Specifically, his lab studies how C. elegans males search, recognize, and stay with conspecific and reproductive mates. His research reveals that C. elegans males share many similar behavioral and neural responses of mate recognition in metazoans, shedding light on conserved neural principles for social interactions in nematodes. 

Collection Overview

Sex tremendously impacts the nervous system, leading to sex-specific social behaviors. C. elegans are hermaphroditic nematodes with two sexes: males and self-fertilizing hermaphrodites. Males and hermaphrodites contain fewer than 400 neurons, which have been well annotated and studied. The small numbers of neurons provide an excellent opportunity to learn the fundamental principles of neural networks underlying various cognitive functions and behaviors.

Researchers have developed many behavioral assays to study neural functions underlying motivations, learning, memory, and social behaviors in hermaphrodites. Recently, studies have shifted to sexually dimorphic behaviors in C. elegans males, for males behave drastically differently compared to hermaphrodites even though they contain many sex-shared neurons in the nervous system. With sexually dimorphic circuits, males can display male-specific behaviors, such as mate searching, mate choice, and mating behaviors. Importantly, these behaviors open avenues to study the neural basis for sexually dimorphic controls of motivation, learning, and memory. Hence, there is a need to develop methods for investigating complex neural mechanisms underlying male-specific behaviors in this rapidly growing research field.

This Methods Collection aims to collect behavioral assays for studying the neural basis of male-specific behaviors in C. elegans males. This collection will provide valuable sources and a convenient toolbox for researchers to learn how to conduct behavioral assays with C. elegans males.

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Volatile Sex Pheromone Extraction and Chemoattraction Assay in Caenorhabditis elegans

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2024

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