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Hanley, C. P.

Publications and source records attributed to Hanley, C. P..

2 recordsLinked to original sources

Reinforcement influences the ability of cryptic female choice to exert conspecific sperm precedence in hybridizing Atlantic salmon (Salmo salar) and brown trout (Salmo trutta)

Conspecific sperm precedence via cryptic female choice is a post-ejaculatory selection process that reduces hybridization, and can be pronounced in sympatric species. In their native Europe, Atlantic salmon (Salmo salar) and brown trout (Salmo trutta) exert conspecific sperm precedence under heterospecific sperm competition, which is at least partially enabled by female reproductive fluid. We examined post-ejaculatory selection of both species in Newfoundland, Canada, where Atlantic salmon evolved in absence of brown trout, but now experience hybridization threats due to anthropogenic introductions. Using split-ejaculate and split-clutch in-vitro fertilizations we evaluated whether allopatric evolution has relaxed this selection in Atlantic salmon, and found that they had no ability to bias paternity towards conspecific males, whereas naturalized brown trout retained a strong ability to do so. Female reproductive fluid influenced this, as when fluid associated with a species eggs was swapped, hybridization increased. In the artificial situation of no female reproductive fluid during sperm competition, paternity changed dramatically, but sperm swimming performance did not predict it. Our findings contribute to understanding the evolution of cryptic female choice and how the mechanisms of reproductive isolation can be reinforced through sympatry, while also highlighting a new potential conservation concern for North American Atlantic salmon.

evolutionary biology↗

Endurance rivalry in capelin: insights from semen quality and regeneration

Male-biased adult sexual size dimorphism is often the result of intra-sexual selection driven by male-male competition. Capelin (Mallotus villosus) exhibit male-biased sexual size dimorphism but lack contest competition or clear scramble competition, and female mate choice, if present, is unrelated to male size. Consequently, it is hypothesized that adult sexual size dimorphism in capelin is due to a mating system that favours larger males with greater energy reserves, allowing them to compete for prolonged access to mating opportunities through endurance rivalry. To enable this, males need a continual supply of semen throughout the spawning season. However, they have unusually small testes and are predicted to deplete stored semen rapidly. Furthermore, their unique sperm physiology (i.e. the only known externally fertilizing vertebrate to release pre-activated semen) may constrain their ability to regenerate it. We found that the majority of capelin sampled on beaches had adequate semen, but towards the end of the spawning season, some fish had none. Capelin held in laboratory tanks could regenerate semen within two days, maintaining their ability to seize continual mating opportunities. These results support the endurance rivalry hypothesis.

evolutionary biology↗