AbstractStriking examples of local adaptation at fine geographic scales are increasingly being documented in natural populations. However, the relative contributions made by natural selection, phenotype-dependent dispersal (when individuals disperse with respect to a habitat preference), and mate preference in generating and maintaining microgeographic adaptation and divergence are not well studied. Here, we develop quantitative genetics models and individual-based simulations (IBSs) to uncover the evolutionary forces that possibly drive microgeographic divergence. We also perform Bayesian estimation of the parameters in our IBS using empirical data on habitat-specific variation in bill morphology in the island scrub-jay () to apply our models to a natural system. We find that natural selection and phenotype-dependent dispersal can generate the patterns of divergence we observe in the island scrub-jay. However, mate preference for a mate with similar bill morphology, even though observed in the species, does not play a significant role in driving divergence. Our modeling approach provides insights into phenotypic evolution occurring over small spatial scales relative to dispersal ranges, suggesting that adaptive divergence at microgeographic scales may be common across a wider range of taxa than previously thought. Our quantitative genetic models help to inform future theoretical and empirical work to determine how selection, habitat preference, and mate preference contribute to local adaptation and microgeographic divergence.
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Cureus
November 2024
Medical Affairs, Lupin Limited, Mumbai, IND.
Objectives The study was conducted to generate real-world data on prescription patterns and patient profiles for sitagliptin-based therapies in real-world outpatient settings across India. Method A cross-sectional, observational, multicenter, real-world prescription event monitoring (PEM) study was conducted at 1058 sites across India over six months, from 1 August 2023 to 16 January 2024. Adult type 2 diabetes patients receiving sitagliptin-based mono or combination therapies were included in the study.
View Article and Find Full Text PDFArch Sex Behav
December 2024
Department of Human Behavior, Ecology and Culture, Max Planck Institute for Evolutionary Anthropology, Deutscher Platz 6, 04103, Leipzig, Germany.
From the evolutionary perspective, maintaining a committed relationship is beneficial for reproductive success but involves risks such as losing a partner or infidelity. People typically prefer partners with similar mate value (MV) to avoid rejection. However, when a mate value discrepancy (MVD) arises, the partner with lower MV might employ mate retention strategies to maintain the relationship.
View Article and Find Full Text PDFEvolution
December 2024
Department of Biology, Indiana University, Bloomington, Indiana.
Females that mate multiply make postmating choices about which sperm fertilize their eggs (cryptic female choice); however, the male characteristics they use to make such choices remain unclear. In this study, we sought to understand female sperm use patterns by evaluating whether Drosophila melanogaster females adjust sperm use (second male paternity) in response to four main factors: male genotype, male courtship effort, male pheromone alteration, and male postmating reproductive morphology. Our experiment was replicated across four different D.
View Article and Find Full Text PDFBrain Behav Evol
December 2024
Background The origin and maintenance of species is a unifying theme in evolutionary biology. Mate choice and selection on sexual signals have emerged as powerful drivers of reproductive isolation-the key pillar of the Biological Species Concept. The mechanistic underpinnings of isolating behaviors lie in the circuit- and cellular-level properties of the brain and yet remain relatively understudied.
View Article and Find Full Text PDFAnimals (Basel)
November 2024
Fisheries College, Jimei University, Xiamen 361021, China.
Visual signals are crucial for animals to obtain information about their environment, and they play a significant role in mate choice. However, individual variability and factors such as movement patterns can hinder research flexibility. A key challenge in this field is the accurate simulation of specific movements and behaviors.
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