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36 results for “offspring quality”
Data underlying the publication: "Effects of hatching system on chick quality, welfare and health of young breeder flock offspring"
<p>The aim of the current study was to evaluate effects of two alternative hatching systems (hatchery-feeding and on-farm hatching)<br> compared to conventional hatching systems with respect to chick quality, welfare and health of a young breeder flock.<br> To study the effect of treatments on the competence of the humoral immune response, blood titres after a live attenuated NCD<br> vaccination was assessed.<br> To study differences in disease resilience, the susceptibility to develop tracheal inflammation after infection with a<br> life attenuated infectious bronchitis vaccine virus was assessed by trachea lesion scoring and expression of genes related<br> to epithelial integrity and inflammatory responses.</p>
Pre- and post-copulatory sexual selection increase offspring quality but impose survival costs to female field crickets
<p><span>Whether sexual selection increases or decreases fitness is under ongoing debate. Sexual selection operates before and after mating. Yet, the effects of each episode of selection on individual reproductive success remain largely unexplored. We ask how disentangled pre- and post-copulatory sexual selection contribute to fitness of field crickets Gryllus bimaculatus. Treatments allowed exclusively for i) pre-copulatory selection, with males fighting and courting one female, and the resulting pair breeding monogamously, ii) post-copulatory selection, with </span>females<span> mating consecutively to multiple males, and iii) relaxed selection, with enforced pair monogamy. While standardizing the number of matings, we estimated a number of fitness traits across treatments and show that females experiencing sexual selection were more likely to reproduce, their offspring hatched sooner, developed faster and had higher body mass at adulthood, but females suffered survival costs. Interestingly, we found no differences in fitness of females or their offspring from pre- and post-copulatory sexual selection treatments. Our findings highlight the potential for sexual selection in enhancing indirect female fitness while concurrently imposing direct survival costs. By potentially outweighing these costs, increased offspring quality could lead to beneficial population-level consequences of sexual selection.</span></p>
Data from: Productive foraging grounds enhance maternal condition and offspring quality in a capital breeding species
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Pre- and post-copulatory sexual selection increase offspring quality but impose survival costs to female field crickets
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Do maternal allocations towards offspring quality and quantity ameliorate the effects of predators on offspring survival?
<p>Reproductive allocation is often balanced between the quantity and quality of offspring. Ecological stresses, like exposure to predators, can cause organisms to shift their allocations along this continuum. While the consequences of such plastic shifts for offspring performance are often untested, they are critical to understanding the potential long-term benefits of manipulating predation risk as an agricultural pest management technique. Predation risk induces reductions in egg production and increases in nutritional condition due to maternal provisioning in Colorado potato beetles (<em>Leptinotarsa decemlineata, </em>CPB). Here we tested whether reductions in density or increases in offspring condition, which may increase per-capita larval survival, can compensate for the reduction in total egg production, especially when offspring are exposed to predators. In two field trials, we manipulated the density and condition of larval CPB and measured survival through development to adulthood in field cages with and without predaceous stink bugs (<em>Podisus maculiventris</em>). As expected, cages with the higher initial larval densities had more larvae and adults surviving in the treatments without predators –about 30-50% survival across densities. When predators were present this relationship did not hold because of density-dependent predation. Larval condition interacted with density and impacted larval survival in both trials albeit in different ways. In Trial 1, unprovisioned beetles had higher survival at the higher densities, in Trial 2 provisioned beetles had higher survival across densities.</p> <p><em>Synthesis and Applications:</em> Overall, our test of the effects of predation risk via manipulations of larval density and condition revealed few net compensatory benefits to the prey of reduced density and higher condition. Benefits to the prey of shifts in allocation from the quantity to quality of offspring may depend on factors that influence the strength of density dependence, including predation intensity. Our results suggest a new strategy of taking advantage of the reductions in prey density due to the non-consumptive effects of predators as a pest management approach to protect plants.</p>
Sex-specific paternal age effects on offspring quality in Drosophila melanogaster
<p>Advanced paternal age has been repeatedly shown to modulate offspring quality via male- and/or female-driven processes, and there are theoretical reasons to expect that some of these effects can be sex-specific. For example, sex allocation theory predicts that, when mated with low-condition males, mothers should invest more in their daughters compared to their sons. This is because male fitness is generally more condition-dependent and more variable than female fitness, which makes it less risky to invest in female offspring. Here, we explore whether paternal age can affect the quality and quantity of offspring in a sex-specific way using Drosophila melanogaster as model organism. In order to understand the contribution of male-driven processes on paternal age effects, we also measured the seminal vesicle size of young and older males and explored its relationship with reproductive success and offspring quality. Older males had lower competitive reproductive success, as expected, but there was no difference between the offspring sex ratio of young and older males. However, we found that paternal age caused an increase in offspring quality (i.e., offspring weight), and that this increase was more marked in daughters than sons. We discuss different male- and female-driven processes that may explain such sex-specific paternal age effects.</p>
Data and code for: Decline in offspring quantity but not quality from successive matings in male rainforest <em>Drosophila</em>, with no evidence for genetic divergence in male mating behaviour along climatic and density gradients
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Sex-specific paternal age effects on offspring quality in Drosophila melanogaster
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Do maternal allocations towards offspring quality and quantity ameliorate the effects of predators on offspring survival?
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Data from: Fur seal microbiota are shaped by the social and physical environment, show mother-offspring similarities and are associated with host genetic quality
Despite an increasing appreciation of the importance of host-microbe interactions in ecological and evolutionary processes, the factors shaping microbial communities in wild populations remain poorly understood. We therefore exploited a natural experiment provided by two adjacent Antarctic fur seal (<i>Arctocephalus gazella</i>) colonies of high and low social density and combined 16S rRNA metabarcoding with microsatellite profiling of mother-offspring pairs to investigate environmental and genetic influences on skin microbial communities. Seal-associated bacterial communities differed profoundly between the two colonies, despite the host populations themselves being genetically undifferentiated. Consistent with the hypothesis that social stress depresses bacterial diversity, we found that microbial alpha diversity was significantly lower in the high-density colony. Seals from one of the colonies that contained a stream also carried a subset of freshwater-associated bacteria, indicative of an influence of the physical environment. Furthermore, mothers and their offspring shared similar microbial communities, in support of the notion that microbes may facilitate mother-offspring recognition. Finally, a significant negative association was found between bacterial diversity and heterozygosity, a measure of host genetic quality. Our study thus uncovers a complex interplay between environmental and host genetic effects, while also providing empirical support for the leash model of host control, which posits that bacterial communities are driven not only by bottom-up species interactions, but also by top-down host regulation. Taken together, our findings have broad implications for understanding host-microbe interactions as well as prokaryotic diversity in general.
Data from: Sex-specific effects of outbreeding on offspring quality in pike (Esox lucius)
Intraspecific genetic admixture occurs when previously separated populations within a species start interbreeding, and it can have either positive, negative or netural effects on reproductive performance. There is currently little knowledge regarding what determines the outcome of admixture. We tested for effects of admixture on offspring quality in three subpopulations of pike (Esox lucius). Gametes were collected in the field, and eggs from each female were experimentally fertilized with milt from a male from each population (one 'pure' and two 'admixed' treatments). Three offspring quality measures (hatching success, fry survival, and fry length) were determined and compared between (i) pure and admixed population combinations, and (ii) the sex-specific treatments within each admixed population combination (based on the origin of the male and female respectively). The results revealed that although there were no overall effects of admixture on offspring quality, the consequences for a given population combination could be sex-specific and thus differ depending on which of the parents originated from one or the other population. All offspring quality traits were influenced by both maternal ID and paternal ID. Sex- and individual-specific effects can have implications for dispersal behavior and gene flow between natural populations, and are important to consider in conservation efforts.
Data from: Relative contributions of offspring quality and environmental quality to adult field performance
Determinants of adult performance, such as growth and survival, are influenced by extrinsic, environmental and intrinsic, phenotypic factors. The relative importance of extrinsic and intrinsic factors, while ecologically relevant, is rarely estimated simultaneously. We estimate the relative contributions of offspring size (intrinsic) and various environmental factors (extrinsic) on adult performance in the marine colonial bryozoan Watersipora subtorquata. We used a variance partitioning approach for both new and previously published data, enabling us to examine the performance of over 1000 individuals in the field. We found offspring size to explain relatively little variation in adult performance. Of the environmental factors taken to account, temporal variation and an environmental gradient had the strongest influences.
Data from: Close kin mating, but not inbred parents, reduces hatching rates and offspring quality in a threatened tortoise
Inbreeding depression, the reduction of fitness due to mating of related individuals, is of particular conservation concern in species with small, isolated populations. Although inbreeding depression is widespread in natural populations, long-lived species may be buffered from its effects during population declines due to long generation times, and thus are less likely to have evolved mechanisms of inbreeding avoidance than species with shorter generation times. However, empirical evidence of the consequences of inbreeding in threatened, long-lived species is limited. In this study, we leverage a well-studied population of gopher tortoises, Gopherus polyphemus, to examine the role of inbreeding depression and the potential for behavioral inbreeding avoidance in a natural population of a long-lived species. We tested the hypothesis that increased parental inbreeding leads to reduced hatching rates and offspring quality. Additionally, we tested for evidence of inbreeding avoidance. We found that high parental relatedness results in offspring with lower quality, and that high parental relatedness is correlated with reduced hatching success. However, we found that hatching success and offspring quality increase with maternal inbreeding, likely due to highly inbred females mating with more distantly-related males. We did not find evidence for inbreeding avoidance in males and outbred females, suggesting sex-specific evolutionary tradeoffs may have driven the evolution of mating behavior. Our results demonstrate inbreeding depression in a long-lived species and that the evolution of inbreeding avoidance is shaped by multiple selective forces.
Data from: Effects of pollination intensity on offspring number and quality in a wind-pollinated herb
Low pollination intensity may cause low seed set in plant populations and is thought to be responsible for evolutionary transitions from outcrossing to selfing, or from animal to wind pollination. Variation in pollination intensity may also affect seed quality both through its influence on the degree of pollen competition (with lower quality offspring produced under low pollen intensities) and through seed size–number trade-offs (with plants under low pollination intensity producing fewer but larger seeds). Here, we use a field experiment to examine the effects of pollination intensity on both quantity and quality of progeny. We manipulated pollen receipt to stigmas of the wind-pollinated dioecious plant Mercurialis annua by varying the distance of females from males. We then compared seed size and number, seedling growth and allocation to male and female function, for the progeny produced by females subjected to different pollination intensities. Our experiment revealed a reduction in pollen load with increasing distance to males, translating into large reductions in the number of seeds produced but only small effects on the performance of offspring. The main effect on offspring quality was through a seed size–number trade-off, with pollen-limited females producing fewer but larger seeds, which subsequently performed better. Sons and daughters were affected differently by this trade-off, pointing to gender-dependent effects of pollination intensity on progeny performance. Synthesis. Our results highlight the importance of pollination intensity on both the quantity and quality of progeny. Nevertheless, fitness calculations suggest that the enhanced quality of seed produced by pollen-limited mothers was not sufficient to offset their losses in terms of quantity.
Heat waves during egg development alter maternal care and offspring quality in the European earwig
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Data from: Short- and long-term effects of egg size and feeding frequency on offspring quality in the collared flycatcher (Ficedula albicollis)
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Data from: Effects of pollination intensity on offspring number and quality in a wind-pollinated herb
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Data from: Reproductive trade-offs in a long-lived bird species: condition-dependent reproductive allocation maintains female survival and offspring quality
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Data from: Relative contributions of offspring quality and environmental quality to adult field performance
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Data from: Fur seal microbiota are shaped by the social and physical environment, show mother-offspring similarities and are associated with host genetic quality
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.