z-logo
Premium
Combined effects of rearing and testing temperatures on sperm traits
Author(s) -
IglesiasCarrasco Maider,
Harrison Lauren,
Jennions Michael D.,
Head Megan L.
Publication year - 2020
Publication title -
journal of evolutionary biology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.289
H-Index - 128
eISSN - 1420-9101
pISSN - 1010-061X
DOI - 10.1111/jeb.13710
Subject(s) - biology , sperm , sperm competition , sexual selection , mating , human fertilization , phenotypic plasticity , zoology , reproductive success , ecology , anatomy , population , botany , demography , sociology
Abstract Temperature experienced during early development can affect a range of adult life‐history traits. Animals often show seemingly adaptive developmental plasticity—with animals reared at certain temperatures performing better as adults at those temperatures. The extent to which this type of adaptive response occurs in gonadal tissue that affects sperm traits is, however, poorly studied. We initially reared male mosquito fish ( Gambusia holbrooki ) at either 18°C or 30°C, and then measured their sperm reserves as adults. We also looked at the velocity of their sperm, at both the matched and mismatched temperatures. Although males reared at 30°C were larger than those initially reared at 18°C, there was no detectable effect of rearing temperature on absolute sperm number. Sperm swam faster at 30°C than 18°C regardless of the male's rearing temperature. Therefore, we found no evidence of adaptive developmental plasticity. Rearing temperature did, however, significantly influence the relationship between male body size and sperm velocity. Larger males had faster sperm when reared at the warmer temperature and slower sperm when reared at the cooler temperature. This suggests that rearing temperature could alter the relationship between pre‐copulatory sexual selection and post‐copulatory sexual selection as male size affects mating success. Finally, there was a positive correlation between velocities at the two test temperatures, suggesting that temperature experienced during sperm competition is unlikely to affect a male's relative fertilization success.

This content is not available in your region!

Continue researching here.

Having issues? You can contact us here