Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
69
datasets available to search
ShareScore release 0.9.0
Dataset results
69 results for “selfish”
Data from: Selfish partners: resource partitioning in male coalitions of Asiatic lions
Open the record for dataset details and reuse information.
Selfish herd effects depend on prey crypsis
Open the record for dataset details and reuse information.
Data from: Selfish evolution of cytonuclear hybrid incompatibility in Mimulus
Open the record for dataset details and reuse information.
Data from: Unexpected patterns of segregation distortion at a selfish supergene in the fire ant Solenopsis invicta
Open the record for dataset details and reuse information.
Selfish chromosomal drive shapes recent centromeric histone evolution in monkeyflowers
Open the record for dataset details and reuse information.
Data for: The suppression of a selfish genetic element increases a male's mating success in a fly
Open the record for dataset details and reuse information.
The impact of local population genetic background on the spread of the selfish element Medea-1 in red flour beetles
<p>Selfish genetic elements have been found in the genomes of many species, yet our understanding of their evolutionary dynamics is only partially understood. A number of distinct selfish <i>Medea</i> elements are naturally present in many populations of the red flour beetle (<i>Tribolium castaneum</i>). Although these <i>Medea</i> elements are predicted by models to increase in frequency within populations because any offspring of a <i>Medea</i>-bearing mother that do not inherit at least one <i>Medea</i> allele will die, experiments demonstrating an increase in a naturally occuring <i>Medea</i> element are lacking. Our survey of the specific <i>Medea </i>element<i>, </i>M<sup>1</sup>, in the United States showed that it had a patchy geographic distribution. From the survey it could not be determined if this distribution was caused by a slow process of M<sup>1</sup> colonization of discrete populations or if some populations lacked M<sup>1</sup> because they had genetic factors conferring resistance to the <i>Medea </i>mechanism. We show that populations with naturally low to intermediate M<sup>1</sup> frequencies likely represent transient states during the process of <i>Medea</i> spread. Furthermore, we find no evidence that genetic factors are excluding M<sup>1</sup> from US populations where the element is not presently found. We also show how a known suppressor of <i>Medea</i> can impair the increase of M<sup>1</sup> in populations and discuss the implications of our findings for pest-management applications of <i>Medea</i> elements.</p>
The insertion of a mitochondrial selfish element into the nuclear genome and its consequences: supporting data sets and scripts
<p>Supplementary data sets and script for the article "The insertion of a mitochondrial selfish element into the nuclear genome and its consequences".</p> <p>The original source code with versioning is available at https://gitlab.gwdg.de/molsysevol/umag_11064 .</p>
The distribution and spread of naturally occurring Medea selfish genetic elements in the United States
<p>Selfish genetic elements (SGEs) are DNA sequences that are transmitted to viable offspring in greater than Mendelian frequencies. <i>Medea</i> SGEs occur naturally in some populations of red flour beetle (<i>Tribolium castaneum</i>) and are expected to increase in frequency within populations and spread among populations. The large-scale USA distributions of <i>Medea-4</i> (M<sup>4</sup>) had been mapped based on samples from 1993-1995. We sampled beetles in 2011-2014 and show that the distribution of M<sup>4</sup> in the United States is dynamic and has shifted southward. By using a genetic marker of <i>Medea-1</i> (M<sup>1</sup>), we found five unique geographic clusters with high- and low M<sup>1</sup> frequencies in a pattern not predicted by microsatellite-based analysis of population structure. Our results indicate absence of rigid barriers to <i>Medea</i> spread in the USA, so assessment of what factors have limited its current distribution require further investigation. There is great interest in using synthetic SGEs, including synthetic <i>Medea</i>, to alter or suppress pest populations, but there is concern about unpredicted spread of these SGE's and potential for populations to become resistant to them. The finding of patchy distributions of <i>Medea</i> elements suggests that released synthetic SGEs cannot always be expected to spread uniformly, especially in target species with limited dispersal.</p>
Data from: Selfish mothers indeed! Resource-dependent conflict over extended parental care in free-ranging dogs
Parent–offspring conflict (POC) theory provides an interesting premise for understanding social dynamics in facultatively social species. In free-ranging dogs, mothers increase conflict over extended parental care with their pups beyond the weaning stage. In this study, we investigated whether resource quality affects POC in the dogs that typically live in a highly competitive environment as scavengers. We built a theoretical model to predict the alternative options available to the mother in the context of food sharing with her pups when protein-rich food (meat) is provided, as compared to carbohydrate-rich food (biscuits). We fit the mothers' response from experimental data to the model and show that the mothers choose a selfish strategy, which can in turn ensure higher lifetime reproductive success, while depriving the current litter access to better resources. These results have interesting implications for understanding the social dynamics of the dogs, and the emergence of facultative sociality in a species that evolved from strongly social ancestors. We speculate that the tendency of increased conflict in resource-rich conditions might have driven the process of domestication in the ancestors of dogs which defected from their groups in favour of richer resources around human settlements.
Data from: Polyandry and the decrease of a selfish genetic element in a wild house mouse population
Despite deleterious effects on individuals, the t haplotype is a selfish genetic element present in many house mouse populations. By distorting the transmission ratio, +/t males transmit the t haplotype to up to 90% of their offspring. However, t/t individuals perish in utero. Theoretical models based on these properties predict a much higher t frequency than observed, leading to the t paradox. Here, we use empirical field data and theoretical approaches to investigate whether polyandry is a female counterstrategy against the negative fitness consequences of such distorters. We found a significant decrease of the t frequency over a period of 5.5 years that cannot be explained by the effect of transmission ratio distortion and recessive lethals, despite significantly higher life expectancy of +/t females compared to +/+ females. We quantified life history data and homozygous and heterozygous fitness effects. Population subdivision and inbreeding were excluded as evolutionary force influencing the t system. The possible influence of polyandry on the t system was then investigated by applying a stochastic model to this situation. Simulations show that polyandry can explain the observed t dynamics, making it a biologically plausible explanation for low t frequencies in natural populations in general.
Data from: Selfish pups: weaning conflict and milk theft in free-ranging dogs
Parent-offspring conflict theory predicts the emergence of weaning conflict between a mother and her offspring arising from skewed relatedness benefits. Empirical observations of weaning conflict have not been carried out in canids. In a field-based study on free-ranging dogs we observed that nursing/suckling bout durations decrease, proportion of mother-initiated nursing bouts decrease and mother-initiated nursing/suckling terminations increase with pup age. We identified the 7th - 13th week period of pup age as the zone of conflict between the mother and her pups, beyond which suckling solicitations cease, and before which suckling refusals are few. We also report for the first time milk theft by pups who take advantage of the presence of multiple lactating females, due to the promiscuous mating system of the dogs. This behaviour, though apparently disadvantageous for the mothers, is perhaps adaptive for the dogs in the face of high mortality and competition for resources.
Data from: Genetic evidence for prevalence of alloparental care in a socially monogamous biparental cichlid fish, Perissodus microlepis, from Lake Tanganyika supports the "selfish shepherd effect" hypothesis
Alloparental care – care for unrelated young – is rare in animals, and its ecological or evolutionary advantages or, alternative maladaptive nature, remain unclear. We investigate alloparental care in the socially monogamous cichlid fish Perissodus microlepis from Lake Tanganyika that exhibits bi-parental care. In a genetic parentage analysis, we discovered a surprisingly high percentage of alloparental care represented by brood mixing, extra-pair paternity and extra-pair maternity in all broods that we investigated. The percentage of nondescendant juveniles of other parents, i.e., brood mixing, ranged from 5% to 57% (mean = 28%). The distribution of genetic parentage also suggests that this socially monogamous species has, in fact, polygamous mating system. The prevalence of genetically mixed broods can be best explained by two, not mutually exclusive hypotheses on farming-out and fostering behaviors. In the majority of broods, the sizes of the parents' own (descendant) offspring were significantly larger than those of the adopted (nondescendant) juveniles, supporting the 'selfish shepherd effect' hypothesis, i.e., that foster parents preferentially accept unrelated "smaller or not larger" young since this would tend to lower the predation risks for their own larger offspring. There was also a tendency for larger parents particularly mothers, more so than smaller parents, to care predominantly for their own offspring. Larger parents might be better at defending against cuckoldry and having foreign young dumped into their broods through farming-out behavior. This result might argue for maladaptive effects of allopatric care for the foster parents that only larger and possibly more experienced pairs can guard against. It needs to be determined why, apparently, the ability to recognize one's own young has not evolved in this species.
Sexual selection and the population genetics of a selfish gene
<p>The segregation distorter allele (SD) found in Drosophila melanogaster distorts Medelian inheritance in heterozygous males by causing developmental failure of non-SD spermatids, such that >90% of the surviving sperm carry SD. This within-individual advantage should cause SD to rapidly fix, and yet SD is typically rare in wild populations. Here, we explore whether this paradox can be resolved by sexual selection, by testing if males carrying three different variants of SD suffer reduced pre or postcopulatory reproductive success. We find that males carrying the SD allele are just as successful at securing matings as control males, but that one SD variant (SD-5) reduces sperm competitive ability and increases the likelihood of female remating. We then used these results to inform a theoretical model; we found that sexual selection could limit SD to the frequencies observed in nature when sperm competitive ability and female remating rate equalled the values observed for SD-5. However, sexual selection was unable to explain natural frequencies of the SD allele when the model was parameterized with the values found for two other SD variants, indicating that sexual selection alone is unlikely to explain the rarity of SD.</p>
Data for: A selfish genetic element and its suppressor causes abnormalities to testes in a fly
<p class="MsoNormal">Selfish genetic elements (SGEs), specifically X-chromosome meiotic drive (XCMD), create huge conflicts within a host's genome and can have profound effects on fertility. Suppressors are a common evolutionary response to XCMD to negate its costs. However, whether suppressors themselves can cause negative non-target effects remains understudied. Here, we examine whether the intragenomic conflicts created by XCMD and its suppressor affect gonad morphology in <em>Drosophila subobscura. </em>We found significant differences in testes, seminal vesicle, and accessory gland size depending on whether a male carried a non-driving X chromosome, an XCMD, and if the XCMD was suppressed. We also found the first evidence of abnormal testes development that is specifically associated with a suppressor of XCMD. Unlike other studies, our evidence suggests that XCMD in <em>D. subobscura </em>creates major abnormalities to male gonads. These abnormalities are most frequent if both XCMD and its suppressor are both present. While costs of suppression have importance in theoretical models, they have largely been ignored in empirical XCMD systems. Overall, this study highlights that genetic conflict, created by SGEs and their suppressors, is a potent evolutionary force that can have major impacts on gonad development and gametogenesis. <span><br></span></p>
Data for: A selfish genetic element and its suppressor causes abnormalities to testes in a fly
Open the record for dataset details and reuse information.
The distribution and spread of naturally occurring Medea selfish genetic elements in the United States
Open the record for dataset details and reuse information.
Data from: Polyandry and the decrease of a selfish genetic element in a wild house mouse population
Open the record for dataset details and reuse information.
Data from: Cues of maternal condition influence offspring selfishness
Open the record for dataset details and reuse information.
Data from: Selfish mothers indeed! Resource-dependent conflict over extended parental care in free-ranging dogs
Open the record for dataset details and reuse information.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.