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Biology subjects

Vedder, O.

Publications and source records attributed to Vedder, O..

3 recordsLinked to original sources

Experimental evidence for reproduction to increase mitochondrial respiration, but decrease mitochondrial efficiency, in females of a short-lived bird

Reproduction is generally considered as one of the most energy-demanding processes, causing a trade-off with survival. Although this "cost of reproduction" plays a pivotal role in theory on ageing and life-history evolution, the physiological mechanisms underlying it remain largely unresolved. As mitochondria synthesize 90% of the energy available to eukaryotic cells, their functioning may be crucial in mediating the cost of reproduction. In this study, we therefore experimentally manipulated the reproductive status (gamete production) of male and female Japanese quail (Coturnix japonica), and tested for effects on mitochondrial respiration. We found that reproduction led to an overall increase in mitochondrial O2 consumption in females. This was primarily driven by a large increase in proton leak, as O2 consumption for adenosine triphosphate (ATP) synthesis only increased slightly. Hence, reproductively active females had a severely reduced efficiency in ATP production, compared to non-reproductive females. In males, mitochondrial respiration and its efficiency were unaffected by reproduction, and similar to that in non-reproductive females. We suggest the large increase in proton leak in reproductive females to represent an adaptive mechanism to mitigate the production of reactive oxygen species (ROS), and to be an unavoidable consequence of elevated ATP synthesis. The latter would cause constraints on energy availability for reproductive females, and thereby trade-offs with other energy demanding processes, like somatic maintenance. The absence of effects of reproduction on male mitochondrial respiration confirms the general view that gamete production is less costly for males. Significant statementReproduction is one of the most costly biological processes; not only in terms of energy, but also in terms of its effect on survival. Mitochondria, the primary energy sources in eukaryotic cells, may mediate these costs. By experimentally manipulating the reproductive activity of male and female Japanese quail, we demonstrate that female egg production leads to increased mitochondrial oxygen consumption, primarily due to an increase in proton leak, reducing the efficiency in energy production. We suggest the increased proton leak to be an adaptive response to reduce reactive oxygen species production, but to limit the energy available for processes such as somatic maintenance. Male reproduction did not affect mitochondrial function, confirming the general view that sperm production is relatively cheap.

physiology↗

Proteomic characterisation of Japanese quails unique seminal foam

Male Japanese quail (Coturnix japonica) produce a unique proctodeal foam upon ejaculation which is thought to enhance fertilisation success. However, the precise function and proteomic characterisation of this foam remain largely unexplored. Using high throughput LC-MS/MS proteomics analysis, we characterised the proteome of the quail seminal foam for the first time. Our analysis confidently identified 224 proteins in the foam using 32 pooled samples from 96 males. 96.4% of proteins had orthologs in the closely related (diverged 35 million years ago) chicken (Gallus gallus) which generated 40 Gene Ontology terms. Further interrogation revealed proteins involved in sperm motility, maturation and DNA protection, suggesting the foam plays a role in fertilisation success. Proteins linked to immune defence and inflammation modulation were identified, indicating the foam may protect sperm from antigens and reduce female immunogenic responses. This work advances our understanding of the function and evolution of Japanese quail unique seminal foam and directs future experiments to investigate the role of key seminal foam proteins in post-copulatory sexual selection. Significance of the StudySeminal fluid plays an important role in fertilisation success, yet the molecular components of seminal fluid and their function remain poorly understood in most species. This study provides the first comprehensive proteomic characterisation of a unique seminal foam produced by the Japanese quail (Coturnix japonica), revealing its potential mechanistic function in sperm regulation, sperm motility, immune protection, and fertilisation success. By identifying key proteins associated with energy production, membrane fluidity, and sperm maturation, our findings suggest the foam may influence post-ejaculatory sperm function. Additionally, the identification of immunity proteins indicates a role in sperm protection and modulation of female immune responses. This study advances our understanding of avian reproductive biology and opens new avenues for investigating the specific role of seminal foam proteins in fertilisation dynamics and post-copulatory sexual selection.

evolutionary biology↗

Rapid decline of prenatal maternal effects with age is independent of postnatal environment in a precocial bird

Maternal effects are an important source of phenotypic variation with potentially large fitness consequences, but how their importance varies with the quality of the environment across an individuals ontogeny is poorly understood. We bred Japanese quail (Coturnix japonica) of known pedigree and experimentally manipulated the quality of offspring diet, to estimate the importance of prenatal maternal effects in shaping variation in body mass from hatching to adulthood. Maternal genetic effects on body mass at hatching were strong, and largely caused by variation in egg mass, but their importance rapidly declined with age. Whereas there was a large effect of diet on growth, this did not affect the decline of maternal effects variance. The importance of additive genetic and residual variance increased with age, with the latter being considerably larger in the poor diet treatment. Hence, we found no evidence for prenatal maternal effect by postnatal environment interactions, and that prenatal maternal effects are rapidly replaced by direct additive genetic and residual effects when offspring start to develop outside the egg. Thereby these results shed new light on the dynamics of the role of maternal versus offspring genes across ontogeny and environments.

evolutionary biology↗