Related Experiment Video
Updated: Feb 7, 2026

Assessing Differences in Sperm Competitive Ability in Drosophila
Published on: August 22, 2013
Phenotypic plasticity in genitalia: baculum shape responds to sperm competition risk in house mice
Gonçalo I André1, Renée C Firman2, Leigh W Simmons2
1Centre for Evolutionary Biology, School of Biological Sciences (M092), The University of Western Australia, Crawley 6009, Australia goncalo.igrejaandre@research.uwa.edu.au.
Abstract:
Males are known to adjust their expenditure on testes growth and sperm production in response to sperm competition risk. Genital morphology can also contribute to competitive fertilization success but whether male genital morphology can respond plastically to the sperm competition environment has received little attention. Here, we exposed male house mice to two different sperm competition environments during their sexual development and quantified phenotypic plasticity in baculum morphology. The sperm competition environment generated plasticity in body growth. Males maturing under sperm competition risk were larger and heavier than males maturing under no sperm competition risk. We used a landmark-based geometric morphometric approach to measure baculum size and shape. Independent of variation in body size, males maintained under risk of sperm competition had a relatively thicker and more distally extended baculum bulb compared with males maintained under no sperm competition risk. Plasticity in baculum shape paralleled evolutionary responses to selection from sperm competition reported in previous studies of house mice. Our findings provide experimental evidence of socially mediated phenotypic plasticity in male genitalia.
Related Concept Videos
Competition
Plasticity
Plasticizers
Plasticizers function by using surface-active agents to create repulsive electrostatic forces between cement particles. This dispersion enhances the concrete's...
Sperm Transport
The maturation phase occurs in the epididymis, where sperm...
Plastic Behavior
Plastic Deformations

