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1.
Curr Biol ; 34(11): R536-R539, 2024 Jun 03.
Article in English | MEDLINE | ID: mdl-38834026

ABSTRACT

A new study leads the way to a more ethical and ethologically meaningful way of investigating brain functions of complex behaviors in social animals.


Subject(s)
Neurosciences , Primates , Social Behavior , Animals , Primates/physiology , Brain/physiology , Wireless Technology/instrumentation , Behavior, Animal/physiology
2.
PLoS Biol ; 22(6): e3002501, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38843284

ABSTRACT

The ecological and evolutionary benefits of energy-saving in collective behaviors are rooted in the physical principles and physiological mechanisms underpinning animal locomotion. We propose a turbulence sheltering hypothesis that collective movements of fish schools in turbulent flow can reduce the total energetic cost of locomotion by shielding individuals from the perturbation of chaotic turbulent eddies. We test this hypothesis by quantifying energetics and kinematics in schools of giant danio (Devario aequipinnatus) and compared that to solitary individuals swimming under laminar and turbulent conditions over a wide speed range. We discovered that, when swimming at high speeds and high turbulence levels, fish schools reduced their total energy expenditure (TEE, both aerobic and anaerobic energy) by 63% to 79% compared to solitary fish (e.g., 228 versus 48 kj kg-1). Solitary individuals spend approximately 22% more kinematic effort (tail beat amplitude•frequency: 1.7 versus 1.4 BL s-1) to swim in turbulence at higher speeds than in laminar conditions. Fish schools swimming in turbulence reduced their three-dimensional group volume by 41% to 68% (at higher speeds, approximately 103 versus 33 cm3) and did not alter their kinematic effort compared to laminar conditions. This substantial energy saving highlights that schooling behaviors can mitigate turbulent disturbances by sheltering fish (within schools) from the eddies of sufficient kinetic energy that can disrupt locomotor gaits. Therefore, providing a more desirable internal hydrodynamic environment could be one of the ecological drivers underlying collective behaviors in a dense fluid environment.


Subject(s)
Energy Metabolism , Swimming , Animals , Swimming/physiology , Energy Metabolism/physiology , Biomechanical Phenomena , Behavior, Animal/physiology , Locomotion/physiology , Cyprinidae/physiology , Hydrodynamics , Social Behavior
3.
Proc Natl Acad Sci U S A ; 121(25): e2305948121, 2024 Jun 18.
Article in English | MEDLINE | ID: mdl-38857400

ABSTRACT

For over a century, the evolution of animal play has sparked scientific curiosity. The prevalence of social play in juvenile mammals suggests that play is a beneficial behavior, potentially contributing to individual fitness. Yet evidence from wild animals supporting the long-hypothesized link between juvenile social play, adult behavior, and fitness remains limited. In Western Australia, adult male bottlenose dolphins (Tursiops aduncus) form multilevel alliances that are crucial for their reproductive success. A key adult mating behavior involves allied males using joint action to herd individual females. Juveniles of both sexes invest significant time in play that resembles adult herding-taking turns in mature male (actor) and female (receiver) roles. Using a 32-y dataset of individual-level association patterns, paternity success, and behavioral observations, we show that juvenile males with stronger social bonds are significantly more likely to engage in joint action when play-herding in actor roles. Juvenile males also monopolized the actor role and produced an adult male herding vocalization ("pops") when playing with females. Notably, males who spent more time playing in the actor role as juveniles achieved more paternities as adults. These findings not only reveal that play behavior provides male dolphins with mating skill practice years before they sexually mature but also demonstrate in a wild animal population that juvenile social play predicts adult reproductive success.


Subject(s)
Bottle-Nosed Dolphin , Reproduction , Sexual Behavior, Animal , Social Behavior , Animals , Male , Bottle-Nosed Dolphin/physiology , Female , Reproduction/physiology , Sexual Behavior, Animal/physiology , Western Australia , Vocalization, Animal/physiology , Play and Playthings
4.
Curr Opin Neurobiol ; 86: 102866, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38852986

ABSTRACT

A variety of organisms exhibit collective movement, including schooling fish and flocking birds, where coordinated behavior emerges from the interactions between group members. Despite the prevalence of collective movement in nature, little is known about the neural mechanisms producing each individual's behavior within the group. Here we discuss how a neurobiological approach can enrich our understanding of collective behavior by determining the mechanisms by which individuals interact. We provide examples of sensory systems for social communication during collective movement, highlight recent discoveries about neural systems for detecting the position and actions of social partners, and discuss opportunities for future research. Understanding the neurobiology of collective behavior can provide insight into how nervous systems function in a dynamic social world.


Subject(s)
Neurobiology , Social Behavior , Animals , Behavior, Animal/physiology , Humans , Animal Communication
5.
Hum Brain Mapp ; 45(8): e26710, 2024 Jun 01.
Article in English | MEDLINE | ID: mdl-38853713

ABSTRACT

Cross-situational inconsistency is common in the expression of honesty traits; yet, there is insufficient emphasis on behavioral dishonesty across multiple contexts. The current study aimed to investigate behavioral dishonesty in various contexts and reveal the associations between trait honesty, behavioral dishonesty, and neural patterns of observing others behave honestly or dishonestly in videos (abbr.: (dis)honesty video-watching). First, the results revealed limitations in using trait honesty to reflect variations in dishonest behaviors and predict behavioral dishonesty. The finding highlights the importance of considering neural patterns in understanding and predicting dishonest behaviors. Second, by comparing the predictive performance of seven types of data across three neural networks, the results showed that functional connectivity in the hypothesis-driven network during (dis)honesty video-watching provided the highest predictive power in predicting multitask behavioral dishonesty. Last, by applying the feature elimination method, the midline self-referential regions (medial prefrontal cortex, posterior cingulate cortex, and anterior cingulate cortex), anterior insula, and striatum were identified as the most informative brain regions in predicting behavioral dishonesty. In summary, the study offered insights into individual differences in deception and the intricate connections among trait honesty, behavioral dishonesty, and neural patterns during (dis)honesty video-watching.


Subject(s)
Deception , Magnetic Resonance Imaging , Nerve Net , Humans , Male , Female , Adult , Young Adult , Nerve Net/physiology , Nerve Net/diagnostic imaging , Connectome , Cerebral Cortex/physiology , Cerebral Cortex/diagnostic imaging , Video Recording , Social Behavior
6.
Sci Rep ; 14(1): 13186, 2024 06 08.
Article in English | MEDLINE | ID: mdl-38851769

ABSTRACT

Social facilitation is a well-known phenomenon where the presence of organisms belonging to the same species enhances an individual organism's performance in a specific task. As far as fishes are concerned, most studies on social facilitation have been conducted in standing-water conditions. However, for riverine species, fish are most commonly located in moving waters, and the effects of hydrodynamics on social facilitation remain largely unknown. To bridge this knowledge gap, we designed and performed flume experiments where the behaviour of wild juvenile Italian riffle dace (Telestes muticellus) in varying group sizes and at different mean flow velocities, was studied. An artificial intelligence (AI) deep learning algorithm was developed and employed to track fish positions in time and subsequently assess their exploration, swimming activity, and space use. Results indicate that energy-saving strategies dictated space use in flowing waters regardless of group size. Instead, exploration and swimming activity increased by increasing group size, but the magnitude of this enhancement (which quantifies social facilitation) was modulated by flow velocity. These results have implications for how future research efforts should be designed to understand the social dynamics of riverine fish populations, which can no longer ignore the contribution of hydrodynamics.


Subject(s)
Exploratory Behavior , Swimming , Animals , Swimming/physiology , Exploratory Behavior/physiology , Behavior, Animal/physiology , Hydrodynamics , Fishes/physiology , Artificial Intelligence , Water Movements , Social Behavior
7.
Proc Biol Sci ; 291(2024): 20240876, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38864319

ABSTRACT

The joint actions of animals in partnerships or social groups evolve under both natural selection from the wider environment and social selection imposed by other members of the pair or group. We used experimental evolution to investigate how jointly expressed actions evolve upon exposure to a new environmental challenge. Our work focused on the evolution of carrion nest preparation by pairs of burying beetles Nicrophorus vespilloides, a joint activity undertaken by the pair but typically led by the male. In previous work, we found that carrion nest preparation evolved to be faster in experimental populations without post-hatching care (No Care: NC lines) than with post-hatching care (Full Care: FC lines). Here, we investigate how this joint activity evolved. After 15 generations of experimental evolution, we created heterotypic pairs (NC females with FC males and NC males with FC females) and compared their carrion nest making with homotypic NC and FC pairs. We found that pairs with NC males prepared the nest more rapidly than pairs with FC males, regardless of the female's line of origin. We discuss how social coadaptations within pairs or groups could act as a post-mating barrier to gene flow.


Subject(s)
Coleoptera , Nesting Behavior , Animals , Male , Female , Coleoptera/physiology , Selection, Genetic , Social Behavior , Biological Evolution , Maternal Behavior , Paternal Behavior
8.
Proc Biol Sci ; 291(2024): 20240494, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38864332

ABSTRACT

Social organization, dispersal and fecundity coevolve, but whether they are genetically linked remains little known. Supergenes are prime candidates for coupling adaptive traits and mediating sex-specific trade-offs. Here, we test whether a supergene that controls social structure in Formica selysi also influences dispersal-related traits and fecundity within each sex. In this ant species, single-queen colonies contain only the ancestral supergene haplotype M and produce MM queens and M males, while multi-queen colonies contain the derived haplotype P and produce MP queens, PP queens and P males. By combining multiple experiments, we show that the M haplotype induces phenotypes with higher dispersal potential and higher fecundity in both sexes. Specifically, MM queens, MP queens and M males are more aerodynamic and more fecund than PP queens and P males, respectively. Differences between MP and PP queens from the same colonies reveal a direct genetic effect of the supergene on dispersal-related traits and fecundity. The derived haplotype P, associated with multi-queen colonies, produces queens and males with reduced dispersal abilities and lower fecundity. More broadly, similarities between the Formica and Solenopsis systems reveal that supergenes play a major role in linking behavioural, morphological and physiological traits associated with intraspecific social polymorphisms.


Subject(s)
Animal Distribution , Ants , Fertility , Social Behavior , Animals , Ants/physiology , Ants/genetics , Male , Female , Haplotypes
9.
PLoS One ; 19(6): e0304763, 2024.
Article in English | MEDLINE | ID: mdl-38848416

ABSTRACT

Identifying the factors that favor group living is central to studies of animal social behavior. One demographic parameter that is expected to substantially shape spatial and social relationships is population density. Specifically, high population densities may favor group living by constraining opportunities to live alone. In contrast, low densities may allow individuals to spread out within the habitat, leading to a reduction in the prevalence or size of social groups. Abrupt changes in density following natural catastrophic events provide important opportunities to evaluate the effects of population density on patterns of spatial and social organization. As part of long-term studies of the behavioral ecology of a population of highland tuco-tucos (Ctenomys opimus) at Monumento Natural Laguna de los Pozuelos, Jujuy Province, Argentina, we monitored the demographic and behavioral consequences of a flood that inundated our study site during December 2012. Unlike most species of Ctenomys studied to date, highland tuco-tucos are group living, meaning that multiple adults share burrow systems and nest sites. Despite a post-flood reduction in population density of ~75%, animals present on the study site during the 2013 breeding season continued to live in multi-adult social units (groups). No differences between pre- and post-flood home range sizes were detected and although between-unit spatial overlap was reduced in 2013, overlap within social units did not differ from that in pre-flood years. Animals assigned to the same social unit in 2013 had not lived together during 2012, indicating that post-flood groups were not simply the remnants of those present prior to the flood. Collectively, these findings indicate that group living in highland tuco-tucos is not driven by the density of conspecifics in the habitat. In addition to enhancing understanding of the adaptive bases for group living in Ctenomys, our analyses underscore the power of catastrophic events to generate insights into fundamental aspects of social behavior.


Subject(s)
Population Density , Social Behavior , Animals , Argentina , Ecosystem , Behavior, Animal/physiology , Floods , Rodentia/physiology , Female , Male
10.
Sci Rep ; 14(1): 12867, 2024 06 04.
Article in English | MEDLINE | ID: mdl-38834667

ABSTRACT

Online education has become increasingly popular in recent years, and video lectures have emerged as a common instructional format. While the importance of instructors' nonverbal social cues such as gaze, facial expression, and gestures for learning progress in face-to-face teaching is well-established, their impact on instructional videos is not fully understood. Most studies on nonverbal social cues in instructional videos focus on isolated cues rather than considering multimodal nonverbal behavior patterns and their effects on the learning progress. This study examines the role of instructors' nonverbal immediacy (a construct capturing multimodal nonverbal behaviors that reduce psychological distance) in video lectures with respect to learners' cognitive, affective, and motivational outcomes. We carried out an eye-tracking experiment with 87 participants (Mage = 24.11, SD = 4.80). Results of multilevel path analyses indicate that high nonverbal immediacy substantially increases learners' state motivation and enjoyment, but does not affect cognitive learning. Analyses of learners' eye movements show that learners allocate more attention to the instructor than to the learning material with increasing levels of nonverbal immediacy displayed by the instructor. The study highlights the importance of considering the role of multimodal nonverbal behavior patterns in online education and provides insights for effective video lecture design.


Subject(s)
Learning , Social Behavior , Humans , Male , Female , Learning/physiology , Adult , Young Adult , Nonverbal Communication/psychology , Video Recording , Motivation/physiology , Education, Distance/methods , Eye Movements/physiology , Facial Expression
11.
Sci Rep ; 14(1): 12801, 2024 06 04.
Article in English | MEDLINE | ID: mdl-38834710

ABSTRACT

We use complex systems science to explore the emergent behavioral patterns that typify eusocial species, using collective ant foraging as a paradigmatic example. Our particular aim is to provide a methodology to quantify how the collective orchestration of foraging provides functional advantages to ant colonies. For this, we combine (i) a purpose-built experimental arena replicating ant foraging across realistic spatial and temporal scales, and (ii) a set of analytical tools, grounded in information theory and spin-glass approaches, to explore the resulting data. This combined approach yields computational replicas of the colonies; these are high-dimensional models that store the experimental foraging patterns through a training process, and are then able to generate statistically similar patterns, in an analogous way to machine learning tools. These in silico models are then used to explore the colony performance under different resource availability scenarios. Our findings highlight how replicas of the colonies trained under constant and predictable experimental food conditions exhibit heightened foraging efficiencies, manifested in reduced times for food discovery and gathering, and accelerated transmission of information under similar conditions. However, these same replicas demonstrate a lack of resilience when faced with new foraging conditions. Conversely, replicas of colonies trained under fluctuating and uncertain food conditions reveal lower efficiencies at specific environments but increased resilience to shifts in food location.


Subject(s)
Ants , Feeding Behavior , Animals , Ants/physiology , Feeding Behavior/physiology , Computer Simulation , Spatio-Temporal Analysis , Social Behavior , Behavior, Animal/physiology , Models, Biological
12.
Biol Lett ; 20(6): 20240003, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38835239

ABSTRACT

In group-living species, reproductive variation among individuals of the same sex is widespread. By identifying the mechanisms underlying this reproductive skew, we gain fundamental insights into the evolution and maintenance of sociality. A common mechanism, social control, is typically studied by quantifying dominance, which is one of many attributes of sociality that describes how individuals exert influence on others and is an incomprehensive measure of social control as it accounts only for direct relationships. Here, we use the global reaching centrality (GRC), which quantifies the degree of hierarchy in a social network by accounting for both direct and indirect social relationships. Using a wild, free-living population of adult female yellow-bellied marmots (Marmota flaviventris), we found a positive relationship between the reproductive skew index and GRC: more despotic social groups have higher reproductive skew. The GRC was stronger predictor for skew than traditional measures of social control (i.e. dominance). This allows deeper insights into the diverse ways individuals control other group members' reproduction, a core component in the evolution of sociality. Future studies of skew across taxa may profit by using more comprehensive, network-based measures of social control.


Subject(s)
Marmota , Reproduction , Social Behavior , Animals , Marmota/physiology , Reproduction/physiology , Female , Social Dominance
13.
Proc Biol Sci ; 291(2024): 20232791, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38835273

ABSTRACT

Sociality underpins major evolutionary transitions and significantly influences the structure and function of complex ecosystems. Social insects, seen as the pinnacle of sociality, have traits like obligate sterility that are considered 'master traits', used as single phenotypic measures of this complexity. However, evidence is mounting that completely aligning both phenotypic and evolutionary social complexity, and having obligate sterility central to both, is erroneous. We hypothesize that obligate and functional sterility are insufficient in explaining the diversity of phenotypic social complexity in social insects. To test this, we explore the relative importance of these sterility traits in an understudied but diverse taxon: the termites. We compile the largest termite social complexity dataset to date, using specimen and literature data. We find that although functional and obligate sterility explain a significant proportion of variance, neither trait is an adequate singular proxy for the phenotypic social complexity of termites. Further, we show both traits have only a weak association with the other social complexity traits within termites. These findings have ramifications for our general comprehension of the frameworks of phenotypic and evolutionary social complexity, and their relationship with sterility.


Subject(s)
Isoptera , Social Behavior , Isoptera/physiology , Animals , Biological Evolution , Phenotype , Behavior, Animal
14.
Proc Biol Sci ; 291(2024): 20240358, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38835281

ABSTRACT

Communication governs the formation and maintenance of social relationships. The interpretation of communication signals depends not only on the signal's content but also on a receiver's individual experience. Experiences throughout life may interact to affect behavioural plasticity, such that a lack of developmental sensory exposure could constrain adult learning, while salient adult social experiences could remedy developmental deficits. We investigated how experiences impact the formation and direction of female auditory preferences in the zebra finch. Zebra finches form long-lasting pair bonds and females learn preferences for their mate's vocalizations. We found that after 2 weeks of cohabitation with a male, females formed pair bonds and learned to prefer their partner's song regardless of whether they were reared with ('normally reared') or without ('song-naive') developmental exposure to song. In contrast, females that heard but did not physically interact with a male did not prefer his song. In addition, previous work has found that song-naive females do not show species-typical preferences for courtship song. We found that cohabitation with a male ameliorated this difference in preference. Thus, courtship and pair bonding, but not acoustic-only interactions, strongly influence preference learning regardless of rearing experience, and may dynamically drive auditory plasticity for recognition and preference.


Subject(s)
Finches , Learning , Vocalization, Animal , Animals , Female , Male , Finches/physiology , Pair Bond , Social Behavior , Courtship
15.
Proc Biol Sci ; 291(2024): 20240435, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38835280

ABSTRACT

Extensive research has investigated the relationship between the social environment and cognition, suggesting that social complexity may drive cognitive evolution and development. However, evidence for this relationship remains equivocal. Group size is often used as a measure of social complexity, but this may not capture intraspecific variation in social interactions. Social network analysis can provide insight into the cognitively demanding challenges associated with group living at the individual level. Here, we use social networks to investigate whether the cognitive performance of wild Western Australian magpies (Gymnorhina tibicen dorsalis) is related to group size and individual social connectedness. We quantified social connectedness using four interaction types: proximity, affiliative, agonistic and vocal. Consistent with previous research on this species, individuals in larger groups performed better on an associative learning task. However, social network position was also related to cognitive performance. Individuals receiving aggressive interactions performed better, while those involved in aggressive interactions with more group members performed worse. Overall, this suggests that cognitive performance is related to specific types of social interaction. The findings from this study highlight the value of considering fine-grained metrics of sociality that capture the challenges associated with social life when testing the relationship between the social environment and cognition.


Subject(s)
Aggression , Cognition , Social Behavior , Animals , Western Australia , Male , Passeriformes/physiology , Female
16.
Cell Mol Biol (Noisy-le-grand) ; 70(6): 66-72, 2024 Jun 05.
Article in English | MEDLINE | ID: mdl-38836680

ABSTRACT

This study aimed to investigate the mechanism of the effect of TREM2 on cognitive function in autistic mice. TREM2 overexpression and knockdown viruses were given to autism spectrum disorder (ASD) mice and BV2 microglia cell line. To assess cognitive performance, all groups of mice took part in the open field, new object recognition, Morris water maze, and three-box social experiments. Double immunofluorescence labeling demonstrated co-localization of LC3II and NeuN. Proteins from the PI3K/Akt/mTOR pathway were identified. In vivo, behavior studies revealed that TREM2 could successfully improve ASD mice's social interaction and cognitive performance. Besides, we discovered that TREM2 could increase autophagy in ASD mice. In vitro, overexpressing TREM2 reduced the expression of PI3K/AKT/mTOR pathway proteins, whereas knocking down TREM2 increased the expression of PI3K/AKT/mTOR pathway proteins. In conclusion, TREM2 could inhibit PI3K/Akt/mTOR signaling pathway, enhance autophagy, and improve the social communication ability and cognitive function of ASD mice.


Subject(s)
Autophagy , Cognition , Membrane Glycoproteins , Microglia , Phosphatidylinositol 3-Kinases , Proto-Oncogene Proteins c-akt , Receptors, Immunologic , Signal Transduction , TOR Serine-Threonine Kinases , Animals , Cognition/physiology , Membrane Glycoproteins/metabolism , Membrane Glycoproteins/genetics , Phosphatidylinositol 3-Kinases/metabolism , Receptors, Immunologic/metabolism , Receptors, Immunologic/genetics , TOR Serine-Threonine Kinases/metabolism , Proto-Oncogene Proteins c-akt/metabolism , Mice , Microglia/metabolism , Male , Autistic Disorder/metabolism , Autistic Disorder/genetics , Autism Spectrum Disorder/metabolism , Autism Spectrum Disorder/genetics , Autism Spectrum Disorder/psychology , Disease Models, Animal , Behavior, Animal , Cell Line , Mice, Inbred C57BL , Social Behavior
17.
Nat Commun ; 15(1): 4779, 2024 Jun 05.
Article in English | MEDLINE | ID: mdl-38839782

ABSTRACT

Despite the profound implications of self-organization in animal groups for collective behaviors, understanding the fundamental principles and applying them to swarm robotics remains incomplete. Here we propose a heuristic measure of perception of motion salience (MS) to quantify relative motion changes of neighbors from first-person view. Leveraging three large bird-flocking datasets, we explore how this perception of MS relates to the structure of leader-follower (LF) relations, and further perform an individual-level correlation analysis between past perception of MS and future change rate of velocity consensus. We observe prevalence of the positive correlations in real flocks, which demonstrates that individuals will accelerate the convergence of velocity with neighbors who have higher MS. This empirical finding motivates us to introduce the concept of adaptive MS-based (AMS) interaction in swarm model. Finally, we implement AMS in a swarm of ~102 miniature robots. Swarm experiments show the significant advantage of AMS in enhancing self-organization of the swarm for smooth evacuations from confined environments.


Subject(s)
Birds , Robotics , Animals , Birds/physiology , Motion Perception/physiology , Behavior, Animal/physiology , Motion , Flight, Animal/physiology , Social Behavior
18.
Gut Microbes ; 16(1): 2359501, 2024.
Article in English | MEDLINE | ID: mdl-38841895

ABSTRACT

Autism spectrum disorder (ASD) is a neurodevelopmental disorder affecting over 1% of the global population. Individuals with ASD often exhibit complex behavioral conditions, including significant social difficulties and repetitive behaviors. Moreover, ASD often co-occurs with several other conditions, including intellectual disabilities and anxiety disorders. The etiology of ASD remains largely unknown owing to its complex genetic variations and associated environmental risks. Ultimately, this poses a fundamental challenge for the development of effective ASD treatment strategies. Previously, we demonstrated that daily supplementation with the probiotic Lactiplantibacillus plantarum PS128 (PS128) alleviates ASD symptoms in children. However, the mechanism underlying this improvement in ASD-associated behaviors remains unclear. Here, we used a well-established ASD mouse model, induced by prenatal exposure to valproic acid (VPA), to study the physiological roles of PS128 in vivo. Overall, we showed that PS128 selectively ameliorates behavioral abnormalities in social and spatial memory in VPA-induced ASD mice. Morphological examination of dendritic architecture further revealed that PS128 facilitated the restoration of dendritic arborization and spine density in the hippocampus and prefrontal cortex of ASD mice. Notably, PS128 was crucial for restoring oxytocin levels in the paraventricular nucleus and oxytocin receptor signaling in the hippocampus. Moreover, PS128 alters the gut microbiota composition and increases the abundance of Bifidobacterium spp. and PS128-induced changes in Bifidobacterium abundance positively correlated with PS128-induced behavioral improvements. Together, our results show that PS128 treatment can effectively ameliorate ASD-associated behaviors and reinstate oxytocin levels in VPA-induced mice, thereby providing a promising strategy for the future development of ASD therapeutics.


Subject(s)
Autism Spectrum Disorder , Disease Models, Animal , Probiotics , Social Behavior , Animals , Autism Spectrum Disorder/therapy , Autism Spectrum Disorder/microbiology , Mice , Probiotics/administration & dosage , Female , Male , Valproic Acid , Gastrointestinal Microbiome , Behavior, Animal/drug effects , Mice, Inbred C57BL , Hippocampus/metabolism , Pregnancy , Oxytocin/metabolism , Prefrontal Cortex/metabolism , Lactobacillus plantarum/physiology , Humans
19.
Nat Commun ; 15(1): 4531, 2024 Jun 12.
Article in English | MEDLINE | ID: mdl-38866749

ABSTRACT

Individuals with autism spectrum disorder (ASD) have a higher prevalence of social memory impairment. A series of our previous studies revealed that hippocampal ventral CA1 (vCA1) neurons possess social memory engram and that the neurophysiological representation of social memory in the vCA1 neurons is disrupted in ASD-associated Shank3 knockout mice. However, whether the dysfunction of Shank3 in vCA1 causes the social memory impairment observed in ASD remains unclear. In this study, we found that vCA1-specific Shank3 conditional knockout (cKO) by the adeno-associated virus (AAV)- or specialized extracellular vesicle (EV)- mediated in vivo gene editing was sufficient to recapitulate the social memory impairment in male mice. Furthermore, the utilization of EV-mediated Shank3-cKO allowed us to quantitatively examine the role of Shank3 in social memory. Our results suggested that there is a certain threshold for the proportion of Shank3-cKO neurons required for social memory disruption. Thus, our study provides insight into the population coding of social memory in vCA1, as well as the pathological mechanisms underlying social memory impairment in ASD.


Subject(s)
Autism Spectrum Disorder , CA1 Region, Hippocampal , Gene Editing , Memory , Mice, Knockout , Nerve Tissue Proteins , Social Behavior , Animals , Male , Nerve Tissue Proteins/genetics , Nerve Tissue Proteins/metabolism , CA1 Region, Hippocampal/metabolism , Autism Spectrum Disorder/genetics , Autism Spectrum Disorder/metabolism , Mice , Memory/physiology , Neurons/metabolism , Dependovirus/genetics , Microfilament Proteins/genetics , Microfilament Proteins/metabolism , Memory Disorders/genetics , Memory Disorders/metabolism , Memory Disorders/physiopathology , Mice, Inbred C57BL
20.
PLoS One ; 19(6): e0304726, 2024.
Article in English | MEDLINE | ID: mdl-38861570

ABSTRACT

The mechanisms that underpin human social behaviour are poorly understood, in part because natural social behaviour is challenging to study. The task of linking the mechanisms thought to drive social behaviour to specific social behaviours in a manner that maintains ecological validity poses an even greater challenge. Here we report evidence that the subjective value people assign to genuine smiles, as measured in the laboratory, determines their responsiveness to genuine smiles encountered in a naturalistic social interaction. Specifically, participants (university undergraduates; age 17 to 36) who valued genuine smiles to a greater degree also showed stronger attention capture effects to neutral faces that were previously associated with genuine smiles and faster reciprocity of a social partner's smiles in a real social interaction. Additionally, the faster participants responded to the partner's genuine smiles the higher the partner's ratings of interaction quality were after the interaction. These data suggest that individual differences in subjective value of genuine smiles, measured in the lab, is one element that underpins responsiveness to natural genuine smiles and subsequent social outcomes.


Subject(s)
Smiling , Social Behavior , Humans , Male , Female , Adult , Smiling/psychology , Adolescent , Young Adult , Social Interaction , Facial Expression , Interpersonal Relations , Attention/physiology
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