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Biology subjects

Macedo, G.

Publications and source records attributed to Macedo, G..

7 recordsLinked to original sources

Habitat specialization structures population divergence and demographic variation in Amazonian floodplain birds

Understanding how species respond to environmental change requires linking ecological traits to gene flow and demographic history across dynamic landscapes. Using population genomic data from twelve co-distributed Amazonian riverine island birds, we show that habitat specialization predicts genetic structure, divergence, and effective population size. Species specialized on dynamic sandbar scrub habitats exhibit higher gene flow, and higher genetic diversity despite smaller effective population sizes. These patterns are consistent with dispersal tracking shifting resources, which decouples genetic diversity from population size. In contrast, river-edge forest specialists show stronger spatial genetic structure and lower genetic diversity despite larger populations, consistent with long-term isolation in more stable habitats. We also detect regional variation in effective population sizes and genetic diversity across Amazonian river sub-basins, potentially reflecting historical differences in floodplain habitat availability. Overall, our results highlight how non-equilibrium dynamics shape genomic variation and emphasize habitat-driven dispersal in diversification and persistence in seasonal systems.

evolutionary biology↗

Song sparrows fail to discriminate between current and historical songs

Song evolves rapidly in songbirds, as has been proven for a substantial number of songbird species by demonstrating acoustic differences between current songs and "historical" songs recorded 20 or 30 years previously. In two species of songbirds, white-crowned sparrows and savannah sparrows, it has been further shown that evolutionary changes over such time spans are sufficient to affect the response of receivers, with territorial males responding more aggressively to current songs than to historical ones. These two species, however, have especially low population variability in song, with most males in any population singing the same, single song type; this background of song uniformity makes it especially easy to discern temporal changes. Here we examine response to temporal change in song in a third sparrow species, the song sparrow, in which population variation in song is much higher: males sing 5-13 song types each, with low song-sharing between males, so that hundreds of distinct song types occur in a local population. We find evidence that temporal change has occurred in the songs of our study population, in that 24 song current song types share more introductory phrases with other current song types than do 24 historical song types recorded 27-29 years earlier. Nevertheless, in a song playback experiment, current males showed no difference in response to current and historical songs. The results are in accord with the hypothesis that high levels of population variability in song make temporal changes in song difficult to discern. Significance statementThe song of songbirds is shaped by social learning, making birdsong a model system for the study of cultural evolution. Because cultural evolution is thought to occur more rapidly than genetic evolution, many studies have examined changes in song over time periods thought too short to allow measurable genetic evolution. Here we show that song has evolved in our study population of song sparrows, with the relative abundance of introductory phrases changing over a period of just 27-29 years. We find, however, that the song sparrows themselves fail to discern these changes, responding just as strongly to the old ("historical") song types as to current ones. Measurable cultural evolution thus occurs but without functional consequences.

animal behavior and cognition↗

Response to geographic variation in song is associated with differential gene expression in the blood of a songbird

Birdsong mediates territory acquisition and mate choice. In agonistic interactions, local songs generally elicit stronger responses than songs from more distant populations. However, the molecular mechanisms associated with differential responses to local vs. foreign songs are poorly understood. We addressed this knowledge gap by combining behavioral assays in the field with blood transcriptomic analysis, using a within-subjects design to ask whether male song sparrows (Melospiza melodia) show differential gene expression when exposed to playback of local and foreign songs. Transcriptomic profiles reflected the difference in behavioral response to local vs. foreign songs, with individuals exposed to local songs showing greater expression of genes associated with song perception and production, anti-inflammatory responses and energy metabolism. Our study suggests that changes in expression of key molecular pathways correlate with behavioral responses to geographic song variation, providing insight into the potential mechanisms regulating signal recognition and response to social challenges. HighlightsO_LIGene expression in sparrow blood was measured after simulated territorial intrusion. C_LIO_LIStronger response to local songs was associated with differential gene expression. C_LIO_LISong-associated genes (FOXP2, NRXN1) had higher expression when birds heard local songs. C_LIO_LIGene expression in the blood contains potential biomarkers of song recognition. C_LI

molecular biology↗

Functional remodeling of the parasubthalamic nucleus drives alcohol drinking escalation in dependence

The neurocircuitry changes mediating the development and maintenance of an alcohol use disorder are complex and dynamic. The parasubthalamic nucleus (PSTN), a small nucleus of the posterior lateral hypothalamus best known for suppressing appetite, is interconnected with brain regions disrupted in addiction; yet its potential role in the regulation of alcohol consumption had never been examined. Here we show that the PSTN exerts potent control over alcohol drinking in mice. Remarkably, the influence of endogenous PSTN activity on voluntary alcohol consumption switches from inhibitory to stimulatory upon induction of alcohol dependence. Among PSTN cells, Crh neurons represent a unique subpopulation that promotes alcohol drinking and fires more in dependent mice. Alcohol intake escalation driven by PSTN Crh neurons involves thalamic output and behavioral disinhibition. Based on our results, PSTN Crh neurons could represent a critical node in the brain circuitry overactive in alcohol addiction driven by reward seeking in humans.

neuroscience↗

Not all sexual monomorphisms evolve equally: female and male ornamentation in Tyranni passerines

Female animals often have ornaments such as conspicuous coloration. However, the evolution of female ornamentation and its contribution to sexual dimorphism are understudied relative to male ornamentation. We addressed this knowledge gap by investigating plumage ornamentation of Tyranni (Suboscines). We hypothesized that greater ornamentation is associated with stronger sociosexual selection in females and males, and that sexual dimorphism emerges when selection pressures differ between sexes. We tested associations of ornamentation and sexual dimorphism with territoriality, mating system, parental care, nest type, migratory behavior, and climatic seasonality. We found that females and males show similarly high ornamentation (elaborate monomorphism) in territorial, non-migratory, monogamous species with biparental care, and species nesting in cavities. In contrast, males show higher ornamentation than females in migratory and polygynous species with female-only parental care and in more seasonal climates, though these cases were less common than elaborate monomorphism. Our findings suggest that when the sexes share sociosexual selection pressures, they show similar ornamentation, whether elaborate or inconspicuous. Conversely, sexual dimorphism is greater when males face stronger sociosexual selection pressures than females. Our study provides a framework for testing how sociosexual selection shapes female traits, which is key to understanding the evolution of sex differences and similarities.

evolutionary biology↗

The Speed Limit of Visual Perception: Bidirectional influence of image memorability and processing speed on perceived duration and memory recall

Visual stimuli are known to vary in their perceived duration, with some stimuli engendering so-called "time dilation" and others "time compression" effects. Previous theories have suggested these effects rely on the level of attention devoted to stimuli, magnitude of the stimulus dimension, or intensity of the population neural response, yet cannot account for the full range of experimental effects. Recently, we demonstrated that perceived time is affected by the image properties of scene clutter, size, and memorability (Ma, et al. 2024), with the former compressing and latter two dilating duration. Further, perceived duration also predicted recall of images 24h later, on top of memorability. To explain the memorability effect, we found that a recurrent convolutional neural network (rCNN) could recapitulate the time dilation effect by indexing the rate of entropy collapse, or "speed", across successive timesteps, with more memorable stimuli associated with faster speeds. Here, we replicate and extend these findings via three experiments (n=20ea.) where subjects performed a sub-second temporal bisection task using memorability stimuli with increasing memorability, but a constant speed (exp 1), increasing speed, but constant memorability (exp 2), or increasing in both (exp 3), each followed by a surprise memory test 24hr later. We found that either increasing memorability or speed alone led to time dilation effects, with faster/slower speeds shifting memory recall by [~]8.4% in either direction. However, when both metrics increased, memorability dilated time while speed compressed it, while still improving recall overall. These findings can be explained by a model wherein the visual system is tuned to a preferred speed for processing stimuli that scales with the magnitude of visual response, such that stimuli closer to this speed are dilated in time. Overall, these findings provide a new lens for interpreting time dilation/compression effects and how visual stimuli are prioritized at temporal scales. Author SummaryRecent work has demonstrated a link between perceived duration and memory recall, with memorable images dilating time, and perceived duration in turn affecting memory. The link between these two can be indexed by the speed at which images are processed in recurrent convolutional neural networks, yet the limits of this link remain untested. Here, we tested three groups on a timing task using three sets of stimuli selected according to both their memorability and speed. We find that when one factor is held constant, both memorability and speed still dilate perceived duration, with speed alone accounting for a shift in memory recall of [~]17%. However, when speeds are raised to their highest limits, perceived duration is instead compressed. An inverted-U shape rule between time dilation and compression over speed that is moderated by memorability explains this effect and suggests the visual system shifts between these modes to both gather more information and conserve energy, respectively.

neuroscience↗

Mouse parasubthalamic Crh neurons drive alcohol drinking escalation and behavioral disinhibition

Corticotropin-releasing factor (CRF, encoded by Crh) signaling is thought to play a critical role in the development of excessive alcohol drinking and the emotional and physical pain associated with alcohol withdrawal. Here, we investigated the parasubthalamic nucleus (PSTN) as a potential source of CRF relevant to the control of alcohol consumption, affect, and nociception in mice. We identified PSTN Crh neurons as a neuronal subpopulation that exerts a potent and unique influence on behavior by promoting not only alcohol but also saccharin drinking, while PSTN neurons are otherwise known to suppress consummatory behaviors. Furthermore, PSTN Crh neurons are causally implicated in the escalation of alcohol and saccharin intake produced by chronic intermittent ethanol (CIE) vapor inhalation, a mouse model of alcohol use disorder. In contrast to our predictions, the ability of PSTN Crh neurons to increase alcohol drinking is not mediated by CRF1 signaling. Moreover, the pattern of behavioral disinhibition and reduced nociception driven by their activation does not support a role of negative reinforcement as a motivational basis for the concomitant increase in alcohol drinking. Finally, silencing Crh expression in the PSTN slowed down the escalation of alcohol intake in mice exposed to CIE and accelerated their recovery from withdrawal-induced mechanical hyperalgesia. Altogether, our results suggest that PSTN Crh neurons may represent an important node in the brain circuitry linking alcohol use disorder with sweet liking and novelty seeking.

neuroscience↗