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Neuropeptide receptor distributions in male and female Eulemur vary between female-dominant and egalitarian species

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DataONE2025-03-04 更新2025-04-26 收录
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Aggression and its neurochemical modulators are most often studied in males, leaving the mechanisms of female competitive aggression largely unexplored. To better understand how female aggression is regulated in the primate brain, we used receptor autoradiography to compare the neural distributions of oxytocin and vasopressin receptors in members of female-dominant versus codominant species within the Eulemur genus, wherein dominance structure is a reliable proxy of female (and male) aggression. We found that oxytocin receptor binding in the central amygdala was predicted by dominance structure, with male and female members of three codominant species showing more oxytocin receptor binding in this region than their peers in four female-dominant species. Based on the rodent literature, this finding is consistent with the presence of a male-like neural circuit regulating competitive aggression in female Eulemur. We suggest that derived peacefulness in Eulemur stems from selective suppress..., , , # Neuropeptide receptor distributions in male and female Eulemur vary between female-dominant and egalitarian species [https://doi.org/10.5061/dryad.q2bvq83w4](https://doi.org/10.5061/dryad.q2bvq83w4) ## Description of the data and file structure Brains collected post-mortem and frozen at -80 °C following natural mortality at the Duke Lemur Center. Receptor autoradiography with competitive binding performed to quantify oxytocin and vasopressin receptor binding. ### Files and variables #### File: Compiled\_Data.csv **Description:**  ##### Variables * Animal: Individual name * Sex: biological sex of individual (F=female; M=male) * Species: Eulemur species of individual * Mating_system: mating system of species (mono=monogamous; nonmono= non-monogamous) * Female_dominant: dominance structure of species (FSD= female-dominant; CD= codominant) * Age_at_death: age of individual at death in years * Receptor: OXTR= oxytocin receptor; AVPR1a= vasopressin receptor 1a * Section: experimenta...
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2025-03-05
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