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Biology subjects

Beyts, C. H.

Publications and source records attributed to Beyts, C. H..

2 recordsLinked to original sources

Towards explaining the fertility gap in farmed Pekin ducks

Maximising reproductive success is crucial to animal production systems, particularly in meeting global demands for animal products and improving commercially important traits. However, while social interactions and mating strategies are known to influence reproductive success in wild populations, their consideration in agricultural systems remains limited. Using an interdisciplinary framework that combines concepts from behavioural ecology and quantitative genetics in an animal breeding context, we investigated the role of sperm limitation and polygynous mating strategies (female polyandry, male monopolisation of females and male polygamy) in limiting female reproductive success in farmed Pekin ducks (Anas platyrthynchos domestica). We assessed the impact of these behaviours on chick production and quantified their genetic and environmental (co)variance. Our results revealed that the number of dam mates positively influenced chick production in female ducks. However, contrary to our expectation, skew in chick paternity (our measure of male monopolisation) was associated with increased female chick production, challenging the hypothesis that male monopolisation limits the sperm available to females and reduces their reproductive success. We found no evidence that male polygamy led to decreased female chick production. Genetic analysis revealed that female mate number and reproductive skew exhibit genetic variance, providing opportunities for targeted selection to enhance chick production. However, there was a negative genetic association between female polyandry and skew in chick paternity, suggesting a trade-off between these traits that would need to be considered in future selection programmes. Our findings highlight how concepts from behavioural ecology can be incorporated into breeding programmes, providing new opportunities to develop effective and sustainable breeding strategies.

evolutionary biology↗

Food availability early in life impacts among and within individual variation in behaviour

O_LIThe availability of food during early life has been proposed as a key proximate mechanism for the development of variation in behaviour among and within individuals. C_LIO_LIIndividuals can vary amongst each other in their personality, plasticity and predictability and if an individuals behaviour is correlated across contexts this can lead to behavioural, plasticity and predictability syndromes. C_LIO_LIIn this study, we used a split brood design to raise African clawed frog tadpoles (Xenopus laevis) on a high or low diet in food availability and measured the distance they swam in a familiar and unfamiliar context eight times during their development. C_LIO_LIIn a familiar context, we found that there was an increase in among individual variance in plasticity and predictability in the high food treatment. This shows that when resources are not restricted, individuals are not constrained in the expression of their behaviour at certain phenotypic levels. C_LIO_LIIn an unfamiliar context, we found a different response, with an increase in individual variance in personality in the low but not the high feed tadpoles. As unfamiliar contexts may be riskier, our results highlight that individuals receiving less food may take greater foraging risks in novel contexts. C_LIO_LIAcross contexts, we found a predictability syndrome in the high but not the low feed tadpoles, highlighting that cross-context behaviours can become decoupled in some developmental conditions but remain intact in others. C_LIO_LITogether our findings show that early life conditions contribute to among individual variation in behaviour but that these may only impact the phenotype at specific phenotypic levels and are context specific. C_LIO_LIWe emphasise that having a fundamental understanding of how early development may promote or constrain individual variation can provide a greater understanding of how individuals and populations may respond to novel conditions brought about by anthropogenic activity. C_LI

evolutionary biology↗