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result(s) for
"Chinn, Sarah M."
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DNA metabarcoding reveals consumption of diverse community of amphibians by invasive wild pigs (Sus scrofa) in the southeastern United States
by
Beasley, James C.
,
Canright, Vienna R.
,
Piaggio, Antoinette J.
in
631/158
,
631/158/2178
,
adults
2023
Invasive wild pigs (
Sus scrofa
) are one of the most widespread, destructive vertebrate species globally. Their success can largely be attributed to their generalist diets, which are dominated by plant material but also include diverse animal taxa. Wild pigs are demonstrated nest predators of ground-nesting birds and reptiles, and likely pose a threat to amphibians given their extensive overlap in wetland use. DNA metabarcoding of fecal samples from 222 adult wild pigs culled monthly from 2017 to 2018 revealed a diverse diet dominated by plant material, with 166 plant genera from 56 families and 18 vertebrate species identified. Diet composition varied seasonally with availability for plants and was consistent between sexes. Amphibians were the most frequent vertebrate group consumed and represented the majority of vertebrate species detected, suggesting amphibians are potentially vulnerable to predation by wild pigs in our study region. Mammal, reptile, and bird species were also detected in pig diets, but infrequently. Our results highlight the need for research on the impacts of wild pigs on amphibians to better inform management and conservation of imperiled species.
Journal Article
Influence of intrinsic and extrinsic attributes on neonate survival in an invasive large mammal
2021
Understanding factors influencing survival of neonates for wild species is important for successful management, particularly for determining drivers of population dynamics. Wild pigs (
Sus scrofa
) are invasive and populations are rapidly increasing in part due to high reproductive capacity. Survival of adults is generally high, however, survival of piglets, and particularly neonates, is largely unknown. We located neonates at the natal nest and quantified survival in relation to individual and maternal biological attributes, and environmental variables. During 2017–2020, we captured 50 neonates from 13 litters and documented 28 mortalities (56%) over six weeks. Survival was positively influenced by pelage coloration, likely as a form of camouflage from predators. Male neonates had higher survival. They were born larger than females, which could be beneficial for thermoregulation and competition for milk. Neonates born to larger sows had lower survival. Sow size was positively correlated with litter size, and this finding may reflect the increased nutritional demands of sustaining large litters, or difficulties in defending more neonates against predators. Neonates born in warmer months had higher survival than those born in cooler months. Neonates are inefficient thermoregulators, thus being born in warmer months could be beneficial for maintaining homeostasis as well as access to more food resources. These are the largest and most complete data for neonate wild pig survival and will inform population models for the development of management strategies to reduce negative impacts of this destructive invasive species on native ecosystems.
Journal Article
Variance in offspring sex ratio and maternal allocation in a highly invasive mammal
by
Smyser, Timothy
,
Beasley, James C.
,
Chinn, Sarah M.
in
ancestry
,
Animal reproduction
,
BASIC BIOLOGICAL SCIENCES
2023
Skewed sex ratios at birth are widely reported in wild populations, however, the extent to which parents are able to modulate the sex ratio of offspring to maximize their own fitness remains unclear. This is particularly true for highly polytocous species as maximizing fitness may include trade‐offs between sex ratio and the size and number of offspring in litters. In such cases, it may be adaptive for mothers to adjust both the number of offspring per litter and offspring sex to maximize individual fitness. Investigating maternal sex allocation in wild pigs (Sus scrofa) under stochastic environmental conditions, we predicted that under favorable conditions, high‐quality mothers (larger and older) would produce male‐biased litters and invest more in producing larger litters with more males. We also predicted sex ratio would vary relative to litter size, with a male‐bias among smaller litters. We found evidence that increasing wild boar ancestry, maternal age and condition, and resource availability may weakly contribute to male‐biased sex ratio, however, unknown factors not measured in this study are assumed to be more influential. High‐quality mothers allocated more resources to litter production, but this relationship was driven by adjustment of litter size, not sex ratio. There was no relationship between sex ratio and litter size. Collectively, our results emphasized that adjustment of litter size appeared to be the primary reproductive characteristic manipulated in wild pigs to increase fitness rather than adjustment of offspring sex ratio. Skewed sex ratios at birth in highly polytocous species are complicated since maximizing fitness may include trade‐offs between sex ratio and the size and number of offspring in litters. We investigated the offspring sex ratio and maternal allocation in wild pigs (Sus scrofa) in relation to maternal quality and stochastic environmental conditions. Maternal genetics, age, and body condition may weakly skew the sex ratio toward males and allocation to litter production, but adjustment of litter size appeared to be the primary reproductive characteristic manipulated to increase maternal fitness rather than adjustment of offspring sex ratio.
Journal Article
Lactation and resource limitation affect stress responses, thyroid hormones, immune function, and antioxidant capacity of sea otters (Enhydra lutris)
by
Monson, Daniel H.
,
Staedler, Michelle M.
,
Crocker, Daniel E.
in
Animal behavior
,
Antioxidants
,
Aquatic mammals
2018
Lactation is the most energetically demanding stage of reproduction in female mammals. Increased energetic allocation toward current reproduction may result in fitness costs, although the mechanisms underlying these trade‐offs are not well understood. Trade‐offs during lactation may include reduced energetic allocation to cellular maintenance, immune response, and survival and may be influenced by resource limitation. As the smallest marine mammal, sea otters (Enhydra lutris) have the highest mass‐specific metabolic rate necessitating substantial energetic requirements for survival. To provide the increased energy needed for lactation, female sea otters significantly increase foraging effort, especially during late‐lactation. Caloric insufficiency during lactation is reflected in the high numbers of maternal deaths due to End‐Lactation Syndrome in the California subpopulation. We investigated the effects of lactation and resource limitation on maternal stress responses, metabolic regulation, immune function, and antioxidant capacity in two subspecies of wild sea otters (northern: E. l. nereis and southern: E. l. kenyoni) within the California, Washington, and Alaska subpopulations. Lactation and resource limitation were associated with reduced glucocorticoid responses to acute capture stress. Corticosterone release was lower in lactating otters. Cortisol release was lower under resource limitation and suppression during lactation was only evident under resource limitation. Lactation and resource limitation were associated with alterations in thyroid hormones. Immune responses and total antioxidant capacity were not reduced by lactation or resource limitation. Southern sea otters exhibited higher concentrations of antioxidants, immunoglobulins, and thyroid hormones than northern sea otters. These data provide evidence for allocation trade‐offs during reproduction and in response to nutrient limitation but suggest self‐maintenance of immune function and antioxidant defenses despite energetic constraints. Income‐breeding strategists may be especially vulnerable to the consequences of stress and modulation of thyroid function when food resources are insufficient to support successful reproduction and may come at a cost to survival, and thereby influence population trends. We examined the physiological effects of lactation on an extreme income breeder, the sea otter, and energy allocation trade‐offs between responses to stress, regulation of metabolism, immune response, and antioxidant capacity with reproduction. This study provides the first evidence for physiological mechanisms that may underlie End‐Lactation Syndrome (ELS) a significant cause of mortality for the threatened southern subspecies and for the effects of resource limitation on the most expensive life‐history stage on a species already at the edge of it energetic limits. For income‐breeding strategists, where reproductive effort is directly linked to energy acquisition during lactation, and real‐time nutrient limitation will have direct repercussions on parental investment and lactation duration, the physiological trade‐offs during lactation may affect survival of offspring, as well as survival of the female and ultimately manifest in more profound population‐level consequences.
Journal Article
Factors influencing pregnancy, litter size, and reproductive parameters of invasive wild pigs
by
Beasley, James C.
,
Schlichting, Peter E.
,
Chinn, Sarah M.
in
ancestry
,
Availability
,
BASIC BIOLOGICAL SCIENCES
2022
Reproduction is the most energetically expensive life stage with the demands of productivity representing a balance between physiological requirements and environmental conditions. Wild pigs (Sus scrofa) throughout most of North America are genetic hybrids of feral domestic pigs and wild boar and have the highest reproductive potential of any wild ungulate. The phenology of reproduction, extent of multiple reproductive events per year, how individual and extrinsic factors contribute to variability in productivity, and impact of genetic lineage on these parameters is not well understood in wild pigs. We quantified reproductive parameters in wild pigs relative to a suite of individual and environmental attributes across seasons and multiple years in South Carolina, USA, from March 2017 and May 2020. We hypothesized that individual attributes (mass, age class, number of teats, rump fat, relative genetic association to wild boar vs. domestic pigs) and extrinsic factors (mast availability) would influence probability of pregnancy and fetal litter size. Wild pigs produced offspring throughout all months with peaks in conception corresponding to a seasonal pulse in food availability. The likelihood of pregnancy was influenced by female mass and nutritional condition and was greatest during years with abundant resources. Similarly, litter size increased with female mass and age, implying larger and older females represent the most important group for population recruitment. In evaluating the relationship between reproductive output and ancestral associations to domestic pigs versus wild boar, the proportion of wild boar ancestry was not an important influence on productivity in our population. We determined juveniles reach a physiological threshold of sexual maturity at approximately 30 kg. Average litter size was comparable to other populations, and wild pigs maintain an average fetal litter size of 5.43 offspring despite 13.6% embryonic mortality. A thorough understanding of biotic and extrinsic factors influencing reproduction are important for realistic population models, which are necessary for identifying areas to focus management needs and implementation.
Journal Article
Serological evidence of SARS-CoV-2 exposure in marine mammals in the United States between 2020 and 2025
by
Deming, Alissa C.
,
Callan, Sarah
,
Cedillo, Claudia
in
ACE2
,
Angiotensin-converting enzyme 2
,
Animal species
2026
Natural infections of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) have been documented in over 60 animal species, some distantly related. Several marine mammals have been predicted as highly susceptible to SARS-CoV-2 infection based on the homology of their ACE2 receptors to those of humans. To assess potential exposure of marine mammals to SARS-CoV-2, we conducted an opportunistic survey from 2020 to 2025 and tested 1,808 swabs and 378 serum samples from 21 marine mammal species in the United States. All the swabs tested by RT-qPCR were negative, indicating the absence of active infection. A low level of SARS-CoV-2 neutralizing antibodies was detected in three pinniped species, including Phoca vitulina (harbor seal, 13.6%, 95% CI: 5.2–27.4%), Zalophus californianus (California sea lion, 7%, 95% CI: 1.9–17.0%), and Halichoerus grypus (grey seal, 3.7%, 95% CI: 0.5–12.7%). These findings represent the first serological evidence of SARS-CoV-2 exposure in marine mammals in the United States, highlighting the need for continued monitoring of these populations and further research on SARS-CoV-2 transmission dynamics in wildlife.
Journal Article
Predicting functional responses in agro-ecosystems from animal movement data to improve management of invasive pests
by
Wilber, Mark Q.
,
Miller, Ryan S.
,
Snow, Nathan P.
in
Agricultural ecosystems
,
Agricultural management
,
Agricultural resources
2020
Functional responses describe how changing resource availability affects consumer resource use, thus providing a mechanistic approach to prediction of the invasibility and potential damage of invasive alien species (IAS). However, functional responses can be context dependent, varying with resource characteristics and availability, consumer attributes, and environmental variables. Identifying context dependencies can allow invasion and damage risk to be predicted across different ecoregions. Understanding how ecological factors shape the functional response in agro-ecosystems can improve predictions of hotspots of highest impact and inform strategies to mitigate damage across locations with varying crop types and availability. We linked heterogeneous movement data across different agro-ecosystems to predict ecologically driven variability in the functional responses. We applied our approach to wild pigs (Sus scrofa), one of the most successful and detrimental IAS worldwide where agricultural resource depredation is an important driver of spread and establishment. We used continentalscale movement data within agro-ecosystems to quantify the functional response of agricultural resources relative to availability of crops and natural forage. We hypothesized that wild pigs would selectively use crops more often when natural forage resources were low. We also examined how individual attributes such as sex, crop type, and resource stimulus such as distance to crops altered the magnitude of the functional response. There was a strong agricultural functional response where crop use was an accelerating function of crop availability at low density (Type III) and was highly context dependent. As hypothesized, there was a reduced response of crop use with increasing crop availability when non-agricultural resources were more available, emphasizing that crop damage levels are likely to be highly heterogeneous depending on surrounding natural resources and temporal availability of crops. We found significant effects of crop type and sex, with males spending 20% more time and visiting crops 58% more often than females, and both sexes showing different functional responses depending on crop type. Our application demonstrates how commonly collected animal movement data can be used to understand context dependencies in resource use to improve our understanding of pest foraging behavior, with implications for prioritizing spatiotemporal hotspots of potential economic loss in agro-ecosystems.
Journal Article
Effects of Intrinsic and Environmental Attributes on the Reproductive Ecology of Invasive Wild Pigs (Sus scrofa)
2021
Population dynamics reflect the unique interactions between individual physiology and behavior with the environment and thus success, which regulates the number, spatial distribution, and genetic composition of populations. Identifying drivers of population dynamics of wild animals is important for determining why and how populations fluctuate spatially and temporally under changing conditions. Therefore, a comprehensive understanding of reproduction and the conditions contributing to successful reproductive events is critical, especially for invasive species because they can significantly alter ecosystems upon establishment in new habitats. Wild pigs are ecological generalists with the highest reproductive potential of any large ungulate, making them one of the most successful invasive species in North America. As populations continue to increase and expand, elucidating factors that influence reproduction will improve population models that can be used to inform management strategies. To address these gaps in knowledge, I conducted a broad assessment of the reproductive ecology of wild pigs across multiple seasons and years to identify individual and environmental attributes that contribute to female reproductive success and juvenile recruitment. I found that reproduction occurred throughout the year, with peaks in conception followed by farrowing that coincided with seasonal food availability. Further, hormone quantification and fetal counts revealed many wild pigs were reproductively mature and contributed to population growth prior to one year of age, although increases in mass and age positively influenced litter size. I found that adjustment of litter size appeared to be the primary reproductive characteristic manipulated to increase fitness rather than adjustment of offspring sex ratio. Females decreased home range size from gestation to farrowing and gradually increased home range post-farrowing during the neonatal care period. Wild pigs selected for both upland and bottomland hardwood forests and avoided pine forests and developed areas during reproduction. I also present the first successful study of known-fate neonate survival, which revealed survival was dependent on neonate sex, pelage coloration, environmental attributes (temperature), and maternal traits (size). Together, these data provide a comprehensive picture of wild pig reproductive ecology in their invasive range that can be used to develop effective management policies that reduce the negative impacts of wild pigs.
Dissertation