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29 pages, 3999 KB  
Article
Virulence and Invasion Profiles of Escherichia coli Across One Health Reservoirs: Genomic Insights into High-Risk Clones and Their Defense Systems
by Sandra Martínez-Álvarez, Soraya Herrera-Espejo, Myriam Zarazaga, Ursula Höfle, María Eugenia Pachón-Ibáñez and Carmen Torres
Pathogens 2026, 15(8), 812; https://doi.org/10.3390/pathogens15080812 - 1 Aug 2026
Viewed by 341
Abstract
Escherichia coli is a genetically diverse species encompassing both commensal and pathogenic lineages capable of transitioning among various hosts. Within a One Health framework, we conducted a targeted screening of 38 E. coli strains isolated from wildlife, livestock, and food reservoirs to characterize [...] Read more.
Escherichia coli is a genetically diverse species encompassing both commensal and pathogenic lineages capable of transitioning among various hosts. Within a One Health framework, we conducted a targeted screening of 38 E. coli strains isolated from wildlife, livestock, and food reservoirs to characterize their pathogenic potential by integrating genomic and phenotypic approaches. In vitro functional assays, including biofilm formation, surface motility, and adherence and invasion of HEK-293 epithelial cells, were statistically evaluated using the non-parametric Mann–Whitney U test. Phenotypic analyses revealed that extraintestinal pathogenic (ExPEC) and uropathogenic E. coli (UPEC) strains, particularly those belonging to the high-risk ST117 clone, exhibited significantly enhanced adherence and internalization capacities. These virulent phenotypes strongly correlated with specific genetic signatures involved in iron acquisition and epithelial invasion (chuA, fyuA, vat, and tia), underscoring that the convergence of ExPEC/UPEC determinants drives increased colonization potential. Genomic characterization further revealed that despite high virulence and widespread antimicrobial resistance, the CRISPR/Cas subtype I-E system was highly prevalent (93.8%), displaying structural variations frequently driven by insertion sequences. Spacer analyses identified limited homology to plasmids and phages, suggesting past mobilome interactions rather than active restriction of current horizontal gene transfer. Overall, these findings illustrate how phenotypic traits of high-risk clones match their genomic virulence platforms. The convergence of multidrug resistance and pathogenic fitness across human, animal, and environmental interfaces underscores the need for integrated molecular surveillance in a One Health context. Full article
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16 pages, 736 KB  
Review
The Alleged Role of Bats in Successive Global Pandemics and Its Implications for Conservation
by Alfonso Balmori and Alfonso Balmori-de la Puente
Conservation 2026, 6(3), 80; https://doi.org/10.3390/conservation6030080 - 3 Jul 2026
Viewed by 846
Abstract
Bats (Chiroptera) account for approximately 25% of all known mammalian species and provide essential ecological services, including insect regulation, pollination, and seed dispersal. Despite their importance, they face significant conservation threats and persistently negative social perceptions. Owing to their innate immunity and tolerance, [...] Read more.
Bats (Chiroptera) account for approximately 25% of all known mammalian species and provide essential ecological services, including insect regulation, pollination, and seed dispersal. Despite their importance, they face significant conservation threats and persistently negative social perceptions. Owing to their innate immunity and tolerance, bats constitute a particularly efficient natural reservoir for a wide variety of potentially zoonotic viruses. Over the past two decades, bat-associated viruses have been central to multiple outbreaks of emerging infectious diseases. From severe acute respiratory syndromes to filoviral hemorrhagic fevers, bats have consistently acted as key reservoirs in pathogen emergence. This has further damaged the public perception of bats as dangerous animals and vectors of serious diseases, in some cases leading to increased persecution of their populations. However, spillover events should not be attributed to bats, but rather to human-driven environmental changes—including deforestation, land-use transformation, agricultural intensification, urban expansion, biodiversity loss, wildlife trade and research biosecurity—that amplify contact among humans, livestock, and wildlife or their potential zoonotic pathogens. Safeguarding bat populations, minimizing direct interactions with wildlife, and preserving intact ecosystems are critical not only for bat conservation but also for reducing zoonotic spillover risk. Furthermore, it is essential to strengthen social communication regarding the importance of bats, in order to counteract their negative reputation and promote greater public understanding of their ecological value. This article reviews health, sociological, and conservation dimensions of the issue, situating them within a broader context to provide an integrated, multidisciplinary understanding. Potential solutions and priority directions for future research are also discussed. Full article
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27 pages, 11238 KB  
Review
Targeting Zoonotic Spillover Drivers for Global Pandemic Prevention: A Narrative Review
by Alexandra Mpakosi, Vasileios Cholevas, Alexandra Lianou, Foteini Tziraki, Ioannis Vogiatzis, Stamatios Cholevas, Ioannis Tzouvelekis, Maria Mironidou-Tzouveleki, Konstantina A. Tsante, Deny Tsakri, Vasileios Petrakis, Petros Ioannou, Stefanos Bonovas, Rozeta Sokou and Andreas G. Tsantes
Microorganisms 2026, 14(6), 1316; https://doi.org/10.3390/microorganisms14061316 - 12 Jun 2026
Viewed by 1762
Abstract
Zoonoses account for the majority of recognized mammalian viral spillover events, primarily originating from bats, rodents, and primates. Human activities have significantly accelerated these transmissions. This narrative review synthesizes the evolutionary, ecological, pathogen-related, and anthropogenic drivers of viral zoonotic spillover to identify critical [...] Read more.
Zoonoses account for the majority of recognized mammalian viral spillover events, primarily originating from bats, rodents, and primates. Human activities have significantly accelerated these transmissions. This narrative review synthesizes the evolutionary, ecological, pathogen-related, and anthropogenic drivers of viral zoonotic spillover to identify critical leverage points for pandemic prevention. A narrative literature review was conducted. The analysis focused on factors enabling animal pathogens to transform into human pathogens, examining host species, pathogen traits, human–animal interactions, and environmental impacts. Pathogen transformation depends on host traits, contact frequency, and viral characteristics. Anthropogenic drivers—including livestock expansion, the bushmeat trade, wet markets, and the exotic pet industry—significantly elevate spillover risks. Effective pandemic prevention requires targeted interventions at the wildlife–livestock–human interfaces. A holistic, multidisciplinary collaboration between national governments and international organizations is essential to mitigate future risks. Full article
(This article belongs to the Special Issue Bats and Their Microbial Diversity)
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33 pages, 4077 KB  
Article
A Stochastic Model of East Coast Fever Incorporating a Wildlife–Livestock Interface
by Mirirai Chinyoka, Gift Muchatibaya, Mlyashimbi Helikumi, Steady Mushayabasa, Prosper Jambwa and Adquate Mhlanga
Mathematics 2026, 14(12), 2054; https://doi.org/10.3390/math14122054 - 9 Jun 2026
Viewed by 294
Abstract
East Coast Fever (ECF) causes approximately one million livestock deaths annually in sub-Saharan Africa, posing a significant threat to livestock. The wildlife–livestock interface complicates disease management, as wildlife serve as reservoirs. This study developed a Continuous Time Markov Chain (CTMC) model incorporating the [...] Read more.
East Coast Fever (ECF) causes approximately one million livestock deaths annually in sub-Saharan Africa, posing a significant threat to livestock. The wildlife–livestock interface complicates disease management, as wildlife serve as reservoirs. This study developed a Continuous Time Markov Chain (CTMC) model incorporating the wildlife–livestock interface to analyze ECF dynamics. Using the Galton–Watson approximation, we assessed the probability of disease extinction following the introduction of infected hosts or vectors. The probability of disease extinction calculated from the branching process is shown to be in good agreement with the probability approximated from numerical simulations. The disease dynamics of the deterministic model and the CTMC model are compared to ascertain the effect of demographic stochasticity on ECF dynamics. Differences in model predictions and asymptotic dynamics between stochastic and deterministic models were evident. The deterministic and stochastic formulations should therefore be viewed as complementary modeling frameworks, with the deterministic model characterizing average epidemic dynamics and the CTMC model capturing the probabilistic variability and extinction behavior inherent in real transmission processes. These differences are crucial for intervention strategies earmarked to prevent outbreaks. Our analysis revealed a high probability of ECF extinction if the disease emerges from recovered carrier cattle. Finite time to ECF disease extinction is estimated using 10,000 sample paths, and it is shown that the epidemic duration is shortest if the disease is introduced by infectious cattle. The epidemic duration is longest when the disease is introduced by infectious ticks. Additionally, we observed that host interactions at the wildlife–livestock interface play a critical role in shaping ECF transmission and informing control strategies. Full article
(This article belongs to the Section E3: Mathematical Biology)
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20 pages, 1241 KB  
Review
Tick Microbiome and Its Role in Emerging Zoonotic Diseases and Transmissibility
by So Youn Youn, Hyang-Sim Lee, Mi-Sun Yoo and Yun Sang Cho
Microorganisms 2026, 14(6), 1281; https://doi.org/10.3390/microorganisms14061281 - 5 Jun 2026
Viewed by 1240
Abstract
Ticks are important arthropod vectors that transmit various pathogens to humans, livestock, and wildlife, thereby contributing significantly to the global burden of vector-borne diseases. The tick microbiome, consisting of bacteria, viruses, protozoa, and other microorganisms, plays a crucial role in pathogen transmission dynamics [...] Read more.
Ticks are important arthropod vectors that transmit various pathogens to humans, livestock, and wildlife, thereby contributing significantly to the global burden of vector-borne diseases. The tick microbiome, consisting of bacteria, viruses, protozoa, and other microorganisms, plays a crucial role in pathogen transmission dynamics and the emergence of new zoonotic diseases. This review examines the characteristics of tick vectors, the composition and dynamics of tick-associated microbiomes, and their implications for zoonotic disease transmission. We analyze current knowledge of tick-borne pathogens, including Borrelia burgdorferi sensu lato, Rickettsia species, Anaplasma species, and Coxiella species, and highlight the potential for microbiome constituents to serve as reservoirs for emerging pathogens. The complex interactions between tick hosts, their microbiomes, and vertebrate hosts create opportunities for pathogen evolution and interspecies transmission. Recent advances in molecular techniques have revealed previously unknown microbial diversity within tick populations, suggesting that many potential zoonotic pathogens remain undiscovered. We discuss future research directions, including field screening methodologies for pathogen detection, microbiome-based risk assessment approaches, and the development of novel prevention strategies, including tick vaccines. Full article
(This article belongs to the Special Issue Ticks, Tick Microbiome and Tick-Borne Diseases)
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22 pages, 1741 KB  
Article
One Health Genomic Surveillance at Human–Animal Interfaces in Rural Ghana Reveals Underreported Viruses of Zoonotic and Economic Concern
by Julia E. Paoli, Nídia S. Trovão, Theophilus Odoom, Quaneeta Mohktar, Kwame Boamah Buabeng, Bright Adu, William Tasiame, Benita Anderson, Daniel Nana Yaw Tawiah-Yingar, Kuttichantran Subramaniam, Michael E. von Fricken, Gloria Ivy Mensah, Mario Mietzsch, Robert McKenna, Sherry Ama Mawuko Johnson and Carla N. Mavian
Viruses 2026, 18(6), 644; https://doi.org/10.3390/v18060644 - 3 Jun 2026
Viewed by 1532
Abstract
Under a One Health framework, viruses of veterinary and zoonotic importance pose significant threats to animal and human health, food security, and livelihoods, particularly in regions with intense human–animal interactions. In West Africa, despite recent advances in surveillance programs, important gaps remain in [...] Read more.
Under a One Health framework, viruses of veterinary and zoonotic importance pose significant threats to animal and human health, food security, and livelihoods, particularly in regions with intense human–animal interactions. In West Africa, despite recent advances in surveillance programs, important gaps remain in understanding viral diversity and cross-species transmission at wildlife–livestock interfaces. We conducted metagenomic surveillance to characterize viruses circulating across livestock, domestic animals, and wildlife in rural Ghana in 165 animals sampled across five regions. Viral RNA from serum and tissue samples was sequenced with the Illumina platform, and genomes were de novo assembled with MEGAHIT. Phylogenetic relationships were reconstructed using Bayesian approaches. We report the first genomic sequences of porcine parvovirus 3, canine parvovirus, rotavirus A genotype R16, and bovine hepacivirus subtype B from Ghana in over a decade. Phylogenetic analyses revealed intercontinental linkages between Africa and Europe for parvoviruses, persistence of hepacivirus lineages, and evidence of cross-species transmission for rotavirus. Notably, detection in apparently healthy animals highlights underrecognized circulation, gaps in vaccination effectiveness, trade-related biosecurity vulnerabilities, and the role of wildlife in viral maintenance and transmission. Our findings reveal dynamic viral diversity and connectivity across animal populations and ecological interfaces, emphasizing the fluid and interconnected nature of pathogen circulation within One Health systems. By integrating metagenomics and phylogenetics, this study provides a scalable framework for enhancing surveillance capacity, enabling the early detection of emerging threats and informing targeted strategies to mitigate zoonotic and economically important viral diseases in West Africa. Full article
(This article belongs to the Special Issue Controlling Zoonotic Viral Diseases from One Health Perspective 2026)
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15 pages, 7237 KB  
Article
Human–African Civet (Civettictis civetta) Conflict: Patterns, Drivers, and Conservation Implications in Ethiopia
by Melese Merewa, Petra Chaloupková, Divyadharshini Shanthakrishnan and Barbora Černá Bolfíková
Conservation 2026, 6(2), 66; https://doi.org/10.3390/conservation6020066 - 28 May 2026
Viewed by 1762
Abstract
Human–wildlife conflict research has focused mainly on large mammals, whereas smaller carnivores remain comparatively understudied despite frequent interactions with people. Among them is the African civet (Civettictis civetta (Schreber, 1776)), a widespread mesocarnivore occurring in human-modified landscapes. This study examined human–African civet [...] Read more.
Human–wildlife conflict research has focused mainly on large mammals, whereas smaller carnivores remain comparatively understudied despite frequent interactions with people. Among them is the African civet (Civettictis civetta (Schreber, 1776)), a widespread mesocarnivore occurring in human-modified landscapes. This study examined human–African civet interactions in the Sidama Region of southern Ethiopia, focusing on reported conflict, traditional uses, local knowledge, and attitudes toward the species. Data were collected through structured interviews and analyzed using descriptive statistics and Pearson’s chi-square tests. A majority of respondents (N = 328; 72%) reported conflict, although most described direct encounters as rare. Livestock depredation (n = 237; 59%) was identified as the main driver of conflict, whereas crop damage (n = 237; 26%) played a secondary role. African civets were not perceived only negatively: traditional uses, especially musk extraction (N = 328; 57%) and traditional medicine (N = 328; 37%), were common, and reported killing was relatively limited (N = 328; 9%), although some lethal responses were documented. Knowledge of the species was generally low and uneven, and conflict experience was significantly associated with both length of residence and African civet familiarity. These findings suggest that human–African civet interactions are shaped not only by ecological overlap and access to household resources, but also by how local communities understand and value the species. Full article
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24 pages, 3020 KB  
Review
A Narrative Review of Microplastics in Terrestrial Ecosystems: Impacts on Wild Herbivores and Emerging Conservation Priorities, Supported by Evidence from Livestock and Experimental Mammals
by Subrata Saha, Rachita Saha, Manjil Gupta, Debangana Saha, Ananya Paul, Surovi Roy, Alolika Bose, Sulagna Chandra, Koustav Kundu, Elena I. Korotkova, Muhammad Saqib and Pradip Kumar Kar
Microplastics 2026, 5(2), 79; https://doi.org/10.3390/microplastics5020079 - 27 Apr 2026
Viewed by 1213
Abstract
Microplastic (MP) and nanoplastic (NP) pollution has emerged as a pervasive and still insufficiently quantified pressure on terrestrial ecosystems, yet its consequences for wild herbivores remain incompletely understood. As key links between primary producers and higher trophic levels, wild herbivores occupy a critical [...] Read more.
Microplastic (MP) and nanoplastic (NP) pollution has emerged as a pervasive and still insufficiently quantified pressure on terrestrial ecosystems, yet its consequences for wild herbivores remain incompletely understood. As key links between primary producers and higher trophic levels, wild herbivores occupy a critical ecological position and may serve both as exposed receptors and as biological vectors of plastic contamination. This manuscript presents a narrative review that synthesizes recent advances in understanding the physiological, behavioural, and ecological implications of MP and/or NP exposure in free-ranging herbivorous mammals, integrating evidence from field surveys, experimental studies, ecological modelling, and supportive mechanistic findings from livestock and experimental mammalian systems. Available evidence indicates that MPs and NPs are consistently detected in wild herbivores from both human-modified and protected landscapes, demonstrating widespread terrestrial exposure. Reported biological effects include oxidative stress, digestive dysfunction, inflammatory and immune responses, altered gut microbial communities, impaired nutrient assimilation, and organ-level damage, although much of the mechanistic evidence derives from controlled laboratory or livestock-based studies rather than direct wildlife investigations. Behavioural responses remain comparatively underexplored, particularly in large-bodied herbivores, with limited evidence for altered foraging, habitat use, and stress-related behaviours. At the ecosystem level, emerging studies suggest that herbivores may contribute to the landscape-scale redistribution of MPs and NPs through movement and faecal deposition, with potential downstream effects on soil processes, nutrient cycling, and plant–herbivore interactions. However, the current evidence base is constrained by major methodological and conceptual limitations, including the lack of standardized detection and reporting protocols, limited ecological realism in exposure studies, taxonomic and geographic biases, and poor resolution of long-term population-level and food-web consequences. Overall, the available literature indicates that MP and NP pollution represent a multifaceted and emerging risk to wild herbivores and the ecosystems they inhabit. Future research should prioritize standardized contamination-controlled monitoring, non-invasive faecal surveillance, ecologically realistic chronic exposure studies, and integrated conservation frameworks that recognize wild herbivores as sentinel species for terrestrial plastic pollution. Full article
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19 pages, 848 KB  
Article
Economic Impact of Malignant Catarrhal Fever on Cattle Production in Lephalale Municipality, Limpopo Province, South Africa
by Walter Shiba, Itumeleng Matle, Siphe Zantsi and Emmanuel Seakamela
Vet. Sci. 2026, 13(3), 305; https://doi.org/10.3390/vetsci13030305 - 23 Mar 2026
Viewed by 1112
Abstract
Malignant catarrhal fever (MCF) is a highly lethal viral disease of cattle that poses a persistent threat to livestock production in wildlife–livestock interface areas of Southern Africa. Despite its recognized clinical severity, the economic burden of the disease remains poorly quantified in South [...] Read more.
Malignant catarrhal fever (MCF) is a highly lethal viral disease of cattle that poses a persistent threat to livestock production in wildlife–livestock interface areas of Southern Africa. Despite its recognized clinical severity, the economic burden of the disease remains poorly quantified in South African production systems. This study assessed the long-term economic impact of malignant catarrhal fever on cattle production in Lephalale Municipality, Limpopo Province, South Africa, using a retrospective analysis covering the period from 2001 to 2021. The study combined confirmed case records, estimated mortalities, and region-specific production parameters to quantify both direct and indirect economic losses. Direct losses included mortality-related financial costs and the expenditure on treatment, while indirect losses encompassed reduced productivity, diminished milk yields, and associated declines in overall herd performance. The results show that MCF imposed substantial financial burdens on cattle producers, with mortality contributing to more than ninety percent of total losses. The total economic losses over the study period were substantial, amounting to approximately R 1.55 million, driven primarily by high mortality-related costs. Annual losses displayed considerable variability, reflecting the sporadic nature of the outbreaks and the fluctuations in the wildlife–livestock interactions. The spatial analysis revealed that most cases occur in wards situated adjacent to wildlife conservation areas, where cattle are exposed to virus-carrying wildebeest populations. Seasonal patterns indicated a higher disease occurrence during the spring and winter, aligning with established transmission dynamics. Although a gradual decline in both cases and associated losses was observed over the study period, episodic outbreaks continued to exert significant economic shocks on affected farming households. The findings reaffirm MCF as a persistent and high-impact constraint to cattle production in interface zones and highlight the need for improved surveillance, integrated land-use planning, and sustained investment in targeted disease control measures. Full article
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17 pages, 10478 KB  
Article
Urban Edge Predators: Wolf Spatial and Temporal Ecology at the Wildland–Urban Interface in Mongolia
by Jeff Dolphin, Maria Vittoria Mazzamuto, Gantulga Gankhuyag, Delgerchimeg Davaasuren, Bayaraa Munkhtsog, Ulam-Urnukh Bayanmunkh, Gansukh Sukhchuluun and John L. Koprowski
Biology 2025, 14(9), 1292; https://doi.org/10.3390/biology14091292 - 18 Sep 2025
Viewed by 1580
Abstract
Mongolia’s rapidly expanding capital is encroaching on Bogd Khan Mountain, a UNESCO Biosphere Reserve and the oldest protected area in Eurasia. Gray wolves (Canis lupus) in this wildland–urban interface are locally near-threatened due to hunting, local beliefs, and human–wildlife conflict. In [...] Read more.
Mongolia’s rapidly expanding capital is encroaching on Bogd Khan Mountain, a UNESCO Biosphere Reserve and the oldest protected area in Eurasia. Gray wolves (Canis lupus) in this wildland–urban interface are locally near-threatened due to hunting, local beliefs, and human–wildlife conflict. In 2022 and 2023, we deployed 72 camera traps (11,539 trap nights) to investigate how wolves respond to overlapping pressures from free-ranging dogs, livestock, and human activity. Using a random habitat-stratified camera design and abundance modeling, we assessed diel activity and spatial co-occurrence. Wolves exhibited nocturnal and crepuscular activity, with the greatest temporal overlap with wild prey (wapiti: ∆4 = 0.73; Siberian roe deer: ∆4 = 0.79), moderate overlap with dogs (∆4 = 0.60) and horses (∆4 = 0.68), and minimal overlap with cattle (∆4 = 0.40) and people (∆4 = 0.43). Mean wolf abundance estimates ranged from λ = 0.91 (CI 95%, 0.05–1.77) in 2022 to λ = 1.52 (CI 95%, 0.44–3.53) in 2023. Wolves were more abundant at higher relative abundance of wild ungulates and in areas with more people. Wolves co-occurred with dogs at 11 sites and were more abundant in areas with a higher number of dogs. Our findings highlight the complex dynamics between wildlife, livestock, and human-associated disturbances at the wildland–urban interface, underscoring the need for integrated management strategies that address both ecological and human dimensions of conservation. Full article
(This article belongs to the Special Issue Biology, Ecology, Management and Conservation of Canidae)
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18 pages, 4652 KB  
Article
Spatio-Temporal Overlap of Cattle, Feral Swine, and White-Tailed Deer in North Texas
by Jacob G. Harvey, Aaron B. Norris, John M. Tomeček and Caitlyn E. Cooper-Norris
Sustainability 2025, 17(18), 8354; https://doi.org/10.3390/su17188354 - 17 Sep 2025
Viewed by 1644
Abstract
Livestock interactions with wildlife have been a concern for managers historically. Invasive feral swine represent an additional management concern in the realm of resource competition as well as zoonotic disease spread between livestock and wildlife. Our study deployed game cameras on a ranch [...] Read more.
Livestock interactions with wildlife have been a concern for managers historically. Invasive feral swine represent an additional management concern in the realm of resource competition as well as zoonotic disease spread between livestock and wildlife. Our study deployed game cameras on a ranch in the Rolling Plains of North Texas to obtain a better understanding of the possibility of interspecies interactions among cattle, feral swine, and white-tailed deer across spatial, temporal, and seasonal variables. Species’ use of bottomlands, shallow uplands, and deep uplands within the ranch were monitored continuously over the course of a year. Cattle and feral swine exhibited high diel activity overlap with the greatest overlap estimates occurring in bottomlands (Δ = 0.889) and wintertime (Δ = 0.875). Cattle and deer exhibited lower diel overlap (Δ = 0.596–0.836, depending on the season and vegetation type), which could be a sign of niche partitioning between the two ungulates. Image captures and overlap estimates suggest interactions between cattle and the other two species occur less frequently in shallow upland sites relative to the other vegetation types. Though image captures of the three species were 17–69% lower in summer relative to fall, indirect interactions may remain high due to competition for shared resources and greater reliance on watering sites. Results suggest that land managers should focus on bottomland sites for feral swine eradication efforts and as areas of increased contact among species. Results can be used to guide livestock and wildlife management and herd health decisions, which can improve ranch economic, environmental, and social sustainability. Full article
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19 pages, 1087 KB  
Article
Environmental and Societal Impacts of Protecting Traditional Pastoralism from Wolf Predation in Spain
by F. Javier Pérez-Barbería and Raúl Bodas
Sustainability 2025, 17(18), 8189; https://doi.org/10.3390/su17188189 - 11 Sep 2025
Cited by 1 | Viewed by 2004
Abstract
Assessing the externalities of nature conservation policies, conceived as unintended socio-economic and ecological effects, is essential for evaluating societal costs and improving conservation strategies. This is particularly relevant in the case of wolf conservation and its interaction with traditional pastoralism, an animal farming [...] Read more.
Assessing the externalities of nature conservation policies, conceived as unintended socio-economic and ecological effects, is essential for evaluating societal costs and improving conservation strategies. This is particularly relevant in the case of wolf conservation and its interaction with traditional pastoralism, an animal farming system that provides valuable ecosystem services but is rapidly declining across Europe. We used structured questionnaires with Spanish herders to evaluate the environmental and societal impacts of livestock-guarding dogs (LGDs) as a measure to prevent wolf attacks. On average, farms with 750 sheep employed five mastiffs and three sheepdogs, with LGD numbers increasing in wolf-abundant areas. The number of mastiffs rose proportionally with herd size (0.6 mastiffs per 100 sheep), whereas sheepdog numbers plateaued. The estimated annual cost per LGD was €364, with LGDs contributing approximately 7% of a farm’s carbon emissions. Sixty-one percent of herders reported minor societal conflicts involving LGDs, primarily dogs chasing pedestrians or cyclists, while 1% involved minor bites. The likelihood of societal conflict increased with the number of LGDs on a farm. Additionally, each LGD caused an estimated 0.71 wildlife fatalities per year, mostly involving small mammals such as rabbits, hares, and young ungulates. These findings highlight the need for urgent coexistence strategies to balance effective wolf conservation with the sustainability of traditional pastoralism. Without targeted intervention, the continued expansion of Spain’s wolf population may increase costs to herders and foster growing public opposition to wolf conservation efforts. Full article
(This article belongs to the Section Sustainable Management)
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14 pages, 653 KB  
Review
Cadmium-Induced Bone Toxicity: Deciphering the Osteoclast–Osteoblast Crosstalk
by Shuangjiang He and Kanglei Zhang
Biology 2025, 14(8), 1051; https://doi.org/10.3390/biology14081051 - 14 Aug 2025
Cited by 7 | Viewed by 3204
Abstract
Cadmium (Cd), a pervasive environmental and industrial toxicant, bioaccumulates and exerts severe detrimental effects on skeletal integrity across diverse animal species. Cd-induced bone injury manifests as osteoporosis, osteomalacia, and increased fracture risk, posing significant health and welfare concerns for wildlife and livestock inhabiting [...] Read more.
Cadmium (Cd), a pervasive environmental and industrial toxicant, bioaccumulates and exerts severe detrimental effects on skeletal integrity across diverse animal species. Cd-induced bone injury manifests as osteoporosis, osteomalacia, and increased fracture risk, posing significant health and welfare concerns for wildlife and livestock inhabiting contaminated ecosystems. The pathogenesis hinges critically on the disruption of bone remodeling, a tightly regulated process orchestrated by osteoclasts (OCs) responsible for bone resorption and osteoblasts (OBs) responsible for bone formation. This comprehensive review synthesizes the latest mechanistic insights into how Cd disturbs OC and OB function and their intricate crosstalk, leading to net bone loss. Cd directly impairs OB proliferation, differentiation, and mineralization capacity through multiple pathways, including the inhibition of Wnt/β-catenin signaling, induction of oxidative stress and mitochondrial dysfunction, promotion of apoptosis and senescence, and disruption of extracellular matrix protein synthesis. Simultaneously, Cd potently stimulates excessive OC formation and activity. It achieves this by upregulating the RANKL/OPG axis, enhancing reactive oxygen species (ROS) production which activates key OC transcription factors, modulating key signaling pathways, and promoting pro-osteoclastogenic inflammatory cytokine release from bone marrow and immune cells. Critically, Cd disrupts the vital communication between OBs and OCs, perturbing the coupling signals essential for balanced remodeling. Emerging evidence highlights roles for Cd-induced epigenetic modifications and autophagy/mitophagy flux alterations. This narrative review integrates the findings from in vivo animal models and in vitro cellular studies, providing potential therapeutic interventions and mitigation strategies for Cd-induced bone toxicity. Understanding these complex and interacting mechanisms provides a foundation for identifying potential therapeutic targets to mitigate Cd bone toxicity in animals and informs ecological risk assessment and management strategies in contaminated environments. Full article
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20 pages, 3065 KB  
Article
The Double-Edged Sword: Local Perspectives on the Spread, Impact, Management, and Uses of the Invasive Chromolaena odorata in Southern Nigeria
by Jane I. Otabor, Ikponmwosa Egbon, Michael D. Toews and Osariyekemwen Uyi
Sustainability 2025, 17(8), 3514; https://doi.org/10.3390/su17083514 - 14 Apr 2025
Cited by 2 | Viewed by 2879
Abstract
In Nigeria, Chromolaena odorata poses significant threats to agriculture by disrupting ecosystem structure and function, thereby altering ecosystem services. However, our understanding of its impact, potential uses, and control measures, particularly from the perspective of local communities who interact directly with the plant, [...] Read more.
In Nigeria, Chromolaena odorata poses significant threats to agriculture by disrupting ecosystem structure and function, thereby altering ecosystem services. However, our understanding of its impact, potential uses, and control measures, particularly from the perspective of local communities who interact directly with the plant, presents opportunities for a balanced approach to sustainable management. The aim of this study was to document the knowledge and perceptions of the introduction and spread of C. odorata, its ethnopharmacological applications, and its effects on crops, livestock, and wildlife, as well as discuss control strategies. Using participatory rural appraisal techniques, we administered semi-structured questionnaires to 150 respondents across six villages in Edo State, Nigeria. The findings reveal that C. odorata is a well-recognized invasive species that has been present for several decades and is commonly referred to by its local name, “Awolowo weed”. Although many respondents were unsure of the reasons behind its introduction, most were familiar with its mode of dispersal. A significant proportion of respondents view the weed as a serious threat to agriculture and a major hindrance to human movement by foot to and from their farmlands where C odorata is dominant. However, many also reported its relative ease of management. Interestingly, 92.7% acknowledged the medicinal value of C. odorata, citing its use in treating fever, wounds, and stomach aches, while 84% reported its ability to enhance soil fertility. Most respondents did not perceive the plant as harmful to livestock or wildlife. Though many believe that the plant has continued to spread, 83.8% oppose its complete eradication. Instead, they highlighted Elephant grass (Pennisetum purpureum Schumach) as a more problematic weed that requires immediate intervention. In summary, exploring the local benefits of C. odorata highlights the importance of leveraging local knowledge and practices to develop a robust, integrated approach for its sustainable long-term management. Full article
(This article belongs to the Section Sustainability, Biodiversity and Conservation)
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15 pages, 10516 KB  
Article
The Spatial Relationship Between Two Sympatric Pheasant Species and Various Human Disturbance Activities
by Lanrong Wang, Yuting Lu, Yinfan Cai, Liling Ji, Dapeng Pang, Meisheng Zhou, Yang Cheng, Faguang Pu and Baowei Zhang
Animals 2025, 15(1), 95; https://doi.org/10.3390/ani15010095 - 3 Jan 2025
Cited by 7 | Viewed by 2428
Abstract
Establishing and managing nature reserves to mitigate wildlife habitat loss and fragmentation is challenging, particularly in the face of increasing human activity. To understand how wildlife coexists in environments affected by anthropogenic disturbances, we conducted a 19-month survey examining the Reeves’s pheasant ( [...] Read more.
Establishing and managing nature reserves to mitigate wildlife habitat loss and fragmentation is challenging, particularly in the face of increasing human activity. To understand how wildlife coexists in environments affected by anthropogenic disturbances, we conducted a 19-month survey examining the Reeves’s pheasant (Syrmaticus reevesii) and Koklass pheasant (Pucrasia macrolopha) in the Anhui Tianma National Nature Reserve, China. Previous studies of large terrestrial birds focused primarily on livestock impacts, with less attention given to other human activities. We used occupancy models and performed daytime activity rhythm analysis based on camera trap data to examine the spatiotemporal responses of these species to human activities, livestock, and domestic dogs. The results showed that human disturbance activities within the reserve impact the distribution patterns of Reeves’s pheasant and Koklass pheasant, but the effect was not significant. In high-disturbance environments, both species adjusted their activity times to avoid direct or indirect interactions with humans, livestock, and dogs. These findings provide insights for replanning core and creation of buffer zones within the reserve and have broader implications for conservation strategies in similar habitats. Our study suggests that well-designed conservation objectives can balance species protection with sustainable human presence. Full article
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