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24 pages, 683 KB  
Article
Heavy Metal Contamination in Commercial Coffee Products in Saudi Arabia: Prevalence, Carcinogenic and Non-Carcinogenic Risk Assessment, and Implications for Diabetes and Cardiovascular Disease
by Azizah A. Algreiby, Suzan Makawi, Ahmed H. Bakheit and Abdullah H. Alluhayb
Toxics 2026, 14(9), 761; https://doi.org/10.3390/toxics14090761 - 26 Aug 2026
Abstract
Coffee is deeply embedded in Saudi culture and is among the most consumed beverages worldwide. However, contamination by toxic heavy metals may represent an underrecognized public health concern, particularly in regions already burdened by diabetes mellitus and cardiovascular disease. This study evaluated concentrations [...] Read more.
Coffee is deeply embedded in Saudi culture and is among the most consumed beverages worldwide. However, contamination by toxic heavy metals may represent an underrecognized public health concern, particularly in regions already burdened by diabetes mellitus and cardiovascular disease. This study evaluated concentrations of lead (Pb), cadmium (Cd), arsenic (As), chromium (Cr), and nickel (Ni) in 21 commercial coffee samples representing seven product categories marketed in Saudi Arabia. Samples were prepared using EPA Method 3050B acid digestion and analyzed by inductively coupled plasma mass spectrometry (ICP-MS). Health risks were assessed through estimated daily intake (EDI), hazard quotient (HQ), hazard index (HI), and incremental lifetime cancer risk (ILCR) using USEPA exposure parameters and Saudi-specific coffee consumption data. All metals were detected in every sample. Mean concentrations (mg/kg dry weight) were 1.638 for Pb, 0.560 for Cd, 0.622 for Cr, 0.536 for Ni, and 0.034 for As. Cadmium exceeded the European Union maximum limit for roasted coffee in all samples, while elevated Pb levels were observed in dark roast and Yemeni coffees. Although the overall non-carcinogenic risk remained below the accepted threshold (HI = 0.438), the combined ILCR for As, Cd, and Pb was 5.84 × 10−5. Inclusion of a conservative screening-level chromium contribution, calculated by assuming that all measured total Cr was present as Cr(VI), increased the upper-bound total ILCR to 9.38 × 10−5. This value remained within, but approached the upper boundary of, the risk-management range applied in this study. These findings highlight the need for strengthened monitoring and regulatory control of coffee products in Saudi Arabia. Full article
(This article belongs to the Section Agrochemicals and Food Toxicology)
18 pages, 255 KB  
Article
Green Nudging in Platform-Mediated Sustainable Consumption: Ethical Boundaries and Governance Requirements
by Shan Jing
Sustainability 2026, 18(17), 8721; https://doi.org/10.3390/su18178721 - 26 Aug 2026
Abstract
As consumption becomes increasingly mediated by digital platforms, green nudging has emerged as an important tool for promoting sustainable consumption. Platform green nudging is characterised by datafication, interface design, algorithmisation, and commercial embedding. These features reshape the choice architecture of sustainable consumption and [...] Read more.
As consumption becomes increasingly mediated by digital platforms, green nudging has emerged as an important tool for promoting sustainable consumption. Platform green nudging is characterised by datafication, interface design, algorithmisation, and commercial embedding. These features reshape the choice architecture of sustainable consumption and may reduce the cognitive and behavioural costs associated with green choices. Yet they may also compress complex environmental practices into simple symbols, producing a green interface impression that exceeds what the available environmental evidence can support. This paper combines normative ethical analysis with an illustrative case analysis to examine the ethical boundaries of platform green nudging and to develop corresponding governance requirements. It argues that its ethical legitimacy should be assessed against welfare, transparency, and autonomy. Its goals should serve the environmental public good and consumers’ genuine interests; green information should be clear and substantiated; and consumers should retain room to understand, compare, reflect on, and refuse platform suggestions. Using Booking.com’s “Travel Sustainable” programme, the paper identifies transparency as the most clearly supported ethical risk, while welfare and autonomy concerns are treated primarily as structural risks requiring further empirical examination. It proposes evidentiary grounding, interface calibration, choice safeguards, and platform accountability to support credible green information, autonomous judgment, and long-term sustainable consumption. Full article
(This article belongs to the Special Issue Research in Sustainable Marketing and Digital Economy)
16 pages, 1751 KB  
Article
A Stochastic Framework for Economic Risk Assessment in Ornamental Aquaculture: Evidence from Betta splendens Production
by Hemilly Cristina Menezes de Sá, Isabela Thaiane Vieira Santos, Mikaelly Ferreira Miranda, Paulo Edson Camilo Mol de Oliveira, Guilherme Campos Tavares, Daniela Chemim de Melo Hoyos and Luciano Soares de Lima
Fishes 2026, 11(9), 496; https://doi.org/10.3390/fishes11090496 - 25 Aug 2026
Viewed by 35
Abstract
Ornamental aquaculture represents a high-value segment of global aquaculture and plays an important role in income diversification for small-scale producers. Despite its economic relevance, investment decisions in ornamental fish farming are often supported by limited economic information and rarely incorporate risk and uncertainty [...] Read more.
Ornamental aquaculture represents a high-value segment of global aquaculture and plays an important role in income diversification for small-scale producers. Despite its economic relevance, investment decisions in ornamental fish farming are often supported by limited economic information and rarely incorporate risk and uncertainty into economic assessments. This study developed and applied a stochastic framework to evaluate the economic performance and investment risk of intensive ornamental aquaculture using Betta splendens production as a representative case study. A representative production system was developed from technical and economic surveys conducted on 20 commercial family operated farms located in one of Brazil’s major ornamental fish production clusters. The production system comprised three greenhouse units with an estimated annual output of 162,288 marketable fish. Production costs were estimated using conventional cost-accounting procedures, whereas economic risk was assessed through Monte Carlo simulation incorporating uncertainty in biological, productive, and market variables. The estimated total production cost was US$0.14 fish−1, while the weighted average selling price reached US$0.18 fish−1, resulting in a benefit–cost ratio of 1.33, a profitability of 25.09%, and an annual return on invested capital (ROIC) of 23.90% under the deterministic baseline scenario. Monte Carlo simulation estimated a mean annual ROIC of 22.46%, with a 98.53% probability of positive economic returns. Sensitivity analysis identified labor demand, the selling price of premium males, and reproductive productivity as the principal drivers of economic risk. The results indicate that economic returns in B. splendens farming are primarily influenced by managerial efficiency, labor requirements, and market conditions rather than production volume alone. The proposed framework provides a robust tool for evaluating economic viability and investment risk in ornamental fish farming under uncertainty and may support decision-making in small-scale aquaculture systems. Full article
(This article belongs to the Section Fishery Economics, Policy, and Management)
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9 pages, 756 KB  
Communication
Cryogenic Characterisation of a Commercial Low-Noise Amplifier (LNA) for MKID Readout Systems
by Dylan E. Santos-Verzilli, Diego Portero-Rodríguez, Hugo García-Vázquez, José Manuel Rodríguez Ramos and Luis Fernando Rodríguez Ramos
Sensors 2026, 26(17), 5356; https://doi.org/10.3390/s26175356 - 25 Aug 2026
Viewed by 116
Abstract
The use of non-certified commercial electronics for cryogenic applications may be attractive due to their reduced cost and high availability, but they also carry risks related to reliability, performance, and thermal compatibility. The decision to use commercial components that are not certified for [...] Read more.
The use of non-certified commercial electronics for cryogenic applications may be attractive due to their reduced cost and high availability, but they also carry risks related to reliability, performance, and thermal compatibility. The decision to use commercial components that are not certified for cryogenics instead of components specifically designed for such applications must be carefully weighed based on specific project needs and risk tolerances. This work presents the characterisation of a Low-Noise Amplifier (LNA) at cryogenic temperatures for use in astronomical instrumentation applications with a microwave kinetic inductance detector (MKID) readout system. The cooling system comprises a cryostat, a cold head operating in a closed-cycle helium refrigeration system based on the Gifford–McMahon principle, a compressor, connectors, cables, a vacuum pump, pressure and temperature sensors, and a temperature control system. The circuit was characterised over the temperature range of 295.4 K to 78.3 K. Full article
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20 pages, 1373 KB  
Article
Corporate Tax Loss Carryforward and Company Regulation Under UAE Law: Rethinking the Tax Accounting Treatment of VirtualAssets—A Comparative Study
by Tarek Abdelsalam, Ahmed Moustafa Aldabousi, Haytham Mohamed Sherif, Mohammad Hamdy Alawady, Doaa Mohammad Sayed El Khosht and Abdelrehim Awad
Laws 2026, 15(5), 104; https://doi.org/10.3390/laws15050104 - 25 Aug 2026
Viewed by 85
Abstract
This article re-examines corporate tax loss carryforward and company regulation under United Arab Emirates law as applied to virtual assets. It uses Egypt as one functional benchmark among several, alongside the United States, the United Kingdom, Singapore, the European Union, and OECD reporting [...] Read more.
This article re-examines corporate tax loss carryforward and company regulation under United Arab Emirates law as applied to virtual assets. It uses Egypt as one functional benchmark among several, alongside the United States, the United Kingdom, Singapore, the European Union, and OECD reporting standards. The study asks whether the UAE’s general loss architecture—especially Articles 37–40 of Federal Decree-Law No. 47 of 2022—can address transaction-level problems involving classification, realization, valuation, beneficial ownership, custody, related parties, and evidentiary traceability without departing unnecessarily from tax neutrality. Using a doctrinal, comparative, and policy-oriented method, the article finds that the comparators generally apply ordinary tax categories while supplementing them with crypto-specific guidance, market supervision, and information reporting; they do not establish a general virtual-asset loss ring-fence. The UAE framework already contains substantial safeguards, including a 75% utilization cap, ownership and continuity conditions, transfer-pricing and anti-abuse rules, and the exclusion of exempt persons and Qualifying Free Zone Persons from Article 38 loss transfers. The identified concern is therefore a prospective institutional vulnerability rather than a demonstrated pattern of UAE abuse. The article’s original contribution lies in its UAE-focused synthesis and implementation architecture, not in originating the case for restricting crypto-losses. It proposes a neutrality-first, risk-triggered model: genuine losses remain subject to ordinary law, while enhanced proof and scrutiny apply where identifiable markers arise, including self-custody without reliable records, non-independent valuation, illiquid tokens, related-party crystallization, unlicensed platforms, abrupt ownership changes, acquisition of loss companies, or transactions lacking commercial purpose. Asset-class ring-fencing or special continuity rules should be considered only if future UAE evidence demonstrates that these technologically neutral safeguards are inadequate. This calibrated approach protects the tax base while preserving legal certainty, proportionality, and the UAE’s attractiveness as a digital-finance hub. Full article
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22 pages, 4203 KB  
Article
Mobility Network Analysis of the Poultry Sector in Morocco: A Tool for the Surveillance and Prevention of Highly Pathogenic Avian Influenza
by Fadoua Boudouma, Yahya Farhi, Mohamed Dehhaoui, Hicham Hajji, Oumayma Arbani, Kenza Aitelkadi and Siham Fellahi
Vet. Sci. 2026, 13(9), 858; https://doi.org/10.3390/vetsci13090858 - 24 Aug 2026
Viewed by 126
Abstract
Background: Highly pathogenic avian influenza (HPAI) poses a critical global threat to both the poultry industry and public health. Although Morocco currently maintains HPAI-free status, the country faces substantial risk due to its location along major migratory flyways and its extensive commercial trade [...] Read more.
Background: Highly pathogenic avian influenza (HPAI) poses a critical global threat to both the poultry industry and public health. Although Morocco currently maintains HPAI-free status, the country faces substantial risk due to its location along major migratory flyways and its extensive commercial trade networks within the poultry sector. Available data indicate that the links between live bird markets, production farms, and related facilities in the poultry sector constitute a pivotal determinant of disease epidemiology. This study aimed to analyze these movements and determine how they can influence the spread of the disease and to guide policymakers in developing effective risk-based surveillance and control strategies tailored to the local context.: A questionnaire-based cross-sectional survey was conducted across the Casablanca-Settat region, including nine provinces and 138 municipalities, to investigate the movement patterns within the poultry sector in this region. Social network analysis (SNA) was employed to construct a movement network, and findings were spatially visualized using Geographic Information Systems (GIS) and analyzed through network analysis in R.: A total of 945 transport routes were recorded in 126 municipalities. Centrality measures identified three predominant network nodes exhibiting high degree and betweenness centrality values. Our findings indicate that although the network has a low density, the transmission of IAHP remains critical due to frequent bidirectional links and a heterogeneous network structure. The high concentration of movements by a few “hub” municipalities leads to an early emergence and rapid dissemination.: The identification of highly influential nodes allows veterinary authorities to prioritize and target surveillance activities toward municipalities with the greatest likelihood of disease introduction or persistence. The network’s structural connectivity suggests a theoretical potential for rapid HPAI spread, underscoring the importance of the frequent bidirectional links identified between municipalities. This protects both Morocco’s poultry industry and public health. Full article
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25 pages, 983 KB  
Review
Hooves, Sensors, and Signals: Precision Approaches to Automated Lameness Detection in Dairy Cattle
by Chloe C. Hudson, Molly C. Nicodemus, Marcus M. McGee, Madeline G. McKnight and Kelsey M. Harvey
Animals 2026, 16(17), 2643; https://doi.org/10.3390/ani16172643 - 24 Aug 2026
Viewed by 199
Abstract
Lameness remains one of the most significant welfare and economic challenges in modern dairy production. Traditional detection methods, particularly visual locomotion scoring, are limited by subjectivity, inconsistent application, and infrequent monitoring, which often delays the recognition of painful lesions. This review synthesizes recent [...] Read more.
Lameness remains one of the most significant welfare and economic challenges in modern dairy production. Traditional detection methods, particularly visual locomotion scoring, are limited by subjectivity, inconsistent application, and infrequent monitoring, which often delays the recognition of painful lesions. This review synthesizes recent validation studies of automated lameness detection (ALD) technologies and evaluates their diagnostic performance, validation design, and practical implementation across dairy systems. Studies were screened for relevance by a single reviewer based on title, abstract, and full-text content. Included studies represented sensor-based, pressure-based, vision-based, and multimodal detection platforms, with reported accuracies ranging from approximately 70% to 98% depending on modality and environmental setting. Vision-based systems demonstrated strong performance in controlled conditions, whereas field-validated systems showed more moderate but potentially more generalizable accuracy. Pressure-based platforms reported high diagnostic discrimination via area under the curve (AUC) analysis but face infrastructural limitations in commercial settings. Risk-of-bias assessment indicated that controlled experimental studies without external validation may overestimate deployment performance. Despite technological advances, variability in validation protocols, lesion thresholds, and environmental robustness limits direct comparison across systems. Future research should prioritize multi-farm external validation, standardized benchmarking frameworks, and multimodal integration within precision livestock farming ecosystems to improve reliability and adoption. Full article
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12 pages, 342 KB  
Article
Measles and Rubella Immunity Profile of Healthcare Workers in Bulgaria: A Cross-Sectional Study
by Stefka Krumova, Zhivka Getsova, Lora Veleva, Radostina Stefanova, Tencho Tenev and Elitsa Golkocheva-Markova
Vaccines 2026, 14(9), 727; https://doi.org/10.3390/vaccines14090727 - 23 Aug 2026
Viewed by 133
Abstract
Healthcare workers (HCWs) and medical providers are regularly exposed to a wide range of infectious diseases in the course of their duties. This occupational risk is significant in the context of highly contagious infections such as measles, which can spread rapidly in healthcare [...] Read more.
Healthcare workers (HCWs) and medical providers are regularly exposed to a wide range of infectious diseases in the course of their duties. This occupational risk is significant in the context of highly contagious infections such as measles, which can spread rapidly in healthcare institutions. This study aimed to assess the seroprevalence of protective anti-measles and anti-rubella IgG antibodies and factors influencing immunity among HCWs across all 28 districts in Bulgaria. Methods: A total of 1854 individuals, including 540 (29%) doctors and 1314 (71%) medical specialists from all 28 districts in Bulgaria, were screened for protective immunity against measles and rubella. Serum samples were analyzed for the presence of protective IgG antibodies by ELISA (Enzyme-Linked Immunosorbent Assay) using commercial EUROIMMUN Anti-Measles/Anti-Rubella Virus IgG ELISA kits. According to the manufacturer’s instructions, the results were interpreted semi-quantitatively as positive, negative, and equivocal. Results: Anti-measles protective IgG antibodies were detected in 86.1% of participants for measles and in 95.2% for rubella. Our study found a statistically significant difference when analyzing demographic factors (age) for measles: the samples from older participants (over 50-year-old persons) were characterized by higher immunity levels; staff working in non-infectious-disease wards (n+ = 95.7%) were more frequently positive for rubella IgG antibodies compared to staff employed in infectious wards; and region locations varied for both groups. Gender and professional roles were not significant predictors. Conclusions: HCWs are at a greater risk of contracting infections than the general public because they have contact with sick patients or infectious material. Their vaccination or IgG immunity status must be strictly monitored, especially to limit the spread of nosocomial infections in hospital settings. Full article
(This article belongs to the Special Issue Measles Outbreak: Causes and Vaccination Strategies to Overcome)
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34 pages, 2874 KB  
Review
Biochar Beyond Soil: State of the Art and Future Perspectives of Foliar Applications
by Igor Palčić, Qaiser Javed, Dominik Anđelini, Danko Cvitan, Melissa Prelac and Smiljana Goreta Ban
Horticulturae 2026, 12(8), 1042; https://doi.org/10.3390/horticulturae12081042 - 20 Aug 2026
Viewed by 450
Abstract
Biochar has traditionally been investigated as a soil amendment for improving fertility, carbon sequestration, and nutrient retention. However, recent advances in fine milling, colloidal stabilization, and nanotechnology have enabled the development of biochar-derived materials for foliar application. Unlike conventional soil application, foliar delivery [...] Read more.
Biochar has traditionally been investigated as a soil amendment for improving fertility, carbon sequestration, and nutrient retention. However, recent advances in fine milling, colloidal stabilization, and nanotechnology have enabled the development of biochar-derived materials for foliar application. Unlike conventional soil application, foliar delivery enables direct interaction with leaf tissues, potentially providing faster physiological responses, improved resource-use efficiency, and complementary functions to existing plant biostimulants. This review critically evaluates the scientific basis, agronomic performance, and regulatory implications of foliar biochar applications across diverse crop systems. We synthesize and compare major formulation types, including finely milled suspensions, aqueous extracts, nano-biochar dispersions, and biochar-based composite carriers, based on their formulation characteristics, application methods, and reported biological effects. Across multiple crops, foliar biochar has been associated with enhanced chlorophyll content, improved gas exchange, strengthened antioxidant systems, better osmotic adjustment, and increased nutrient uptake, particularly under abiotic stresses such as salinity, drought, and heat. Mechanistically, these responses are linked to surface deposition effects, redox-active functional groups, modulation of leaf microclimate, and delivery of soluble bioactive compounds. Nevertheless, outcomes remain highly context-dependent, influenced by feedstock origin, pyrolysis conditions, particle size, formulation chemistry, dose, and crop species. Potential risks including phytotoxicity, nanoparticle exposure, environmental fate, and regulatory ambiguity especially for nano-scale formulations pose additional challenges for large-scale adoption. By integrating physiological, agronomic, environmental, and legislative perspectives, this review also highlights key barriers to commercialization, including formulation stability, limited field-scale validation, environmental safety, and regulatory uncertainty, while identifying research priorities needed to determine whether foliar biochar can become a scalable and scientifically validated biostimulant for sustainable agriculture. Full article
(This article belongs to the Special Issue Driving Sustainable Agriculture Through Scientific Innovation)
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31 pages, 3303 KB  
Systematic Review
Hidden Allies: Endophytic Fungi in Fruit Orchards as Biological Control Agents of Agricultural Pests—A Systematic Review
by Pablo Parra-Verdugo, Daniel Martínez-Cisterna, Ignacio Matamala, Valeria Asencio-Cancino, Manuel Chacón-Fuentes, Emilio Hormazábal Uribe and Leonardo Bardehle
Appl. Sci. 2026, 16(16), 8285; https://doi.org/10.3390/app16168285 - 20 Aug 2026
Viewed by 160
Abstract
Fruit production represents a major agricultural sector worldwide; however, it is severely affected by pests that reduce fruit yield, quality, and marketability. The intensive use of chemical insecticides has generated environmental contamination, resistance in pest populations, and risks to human health, increasing the [...] Read more.
Fruit production represents a major agricultural sector worldwide; however, it is severely affected by pests that reduce fruit yield, quality, and marketability. The intensive use of chemical insecticides has generated environmental contamination, resistance in pest populations, and risks to human health, increasing the demand for sustainable alternatives. In this context, endophytic fungi (EF) have gained relevance as biological control agents due to their ability to colonize plant tissues and produce bioactive metabolites that affect agricultural pests. This systematic review aimed to evaluate the current scientific knowledge regarding EF as biological control agents against pests in fruit crops and to analyze the tripartite interactions among fungi, plants, and pests. The review was conducted following PRISMA guidelines using the databases Web of Science, Scopus, PubMed, and OpenAlex. Studies were selected according to predefined exclusion criteria focused on the simultaneous presence of endophytic fungi, fruit crops, and agricultural pests. A total of 24 fruit species, 51 endophytic fungi, and 33 agricultural pest species were identified. The most frequently reported fungal genera were Penicillium, Cladosporium, Fusarium, Aspergillus, Gnomoniopsis, and Trichoderma, while a broad diversity of pest species affected by these fungi was recorded. Interaction analyses revealed complex and highly interconnected tripartite relationships, in which some fungi exhibited strong host specificity whereas others displayed broader interaction ranges. The findings demonstrate that EF possess significant potential as sustainable biological control agents in fruit production systems. However, research in this field remains limited and fragmented, highlighting the need to develop standardized models, validate their efficacy under field conditions, and conduct studies focused on the commercial scalability of EF-based management strategies. Full article
(This article belongs to the Special Issue Applications of Plant–Insect Interactions)
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21 pages, 2188 KB  
Article
Automated License Plate Readers and Data Centers as Networked Mass Surveillance Infrastructure: The Systemic Erosion of Privacy and Free Expression
by Haris Alibašić
Systems 2026, 14(8), 1019; https://doi.org/10.3390/systems14081019 - 18 Aug 2026
Viewed by 438
Abstract
Automated license plate readers (ALPRs) are often evaluated as discrete police tools, although their public power arises from cross-vendor socio-technical infrastructure. This article examines roadside and mobile sensors, vehicle-attribute classification, cloud archives, commercial databases, real-time crime center integration, interagency access, automated alerts, and [...] Read more.
Automated license plate readers (ALPRs) are often evaluated as discrete police tools, although their public power arises from cross-vendor socio-technical infrastructure. This article examines roadside and mobile sensors, vehicle-attribute classification, cloud archives, commercial databases, real-time crime center integration, interagency access, automated alerts, and police action. Flock Safety supplies the principal documentary case because unusually extensive public records permit system-level tracing; Axon/Fusus, Motorola Vigilant/VehicleManager, and federal access to commercial ALPR data establish the wider vendor-independent boundary. A structured documentary analysis of 59 sources triangulates official records, peer-reviewed research, vendor materials used only for stated functions, and record-based investigations. It integrates boundary critique, control-structure mapping, feedback analysis, constitutional doctrine, a STRIDE-informed threat model, and empirical research on policing effectiveness and surveillance effects through 3 August 2026. The analysis identifies four conditional mechanisms: infrastructure aggregation, authority diffusion, asymmetric feedback, and rights invisibility. The article reformulates the Rights Control Deficit (RCD) as a non-arithmetic profile relation between operational demands and effective governance capacity and applies it to three documented configurations and a clearly labeled normative benchmark. Seven falsifiable propositions specify variables, indicators, suitable methods, and disconfirming conditions for later empirical study. A rights-preserving hybrid-intelligence architecture combines bounded automation with judicial authorization, short retention, sensitive-location protections, immutable audit, availability safeguards, independent review, contestability, sanctions, and credible termination authority. The evidence identifies capabilities, activated pathways, and conditional risks; it does not estimate population prevalence or a universal ALPR-specific causal effect. Meaningful human oversight is an institutional control property, not merely an officer’s presence at an interface. Full article
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46 pages, 6895 KB  
Review
Mediterranean Ornamental Horticulture Under Climate Change: Impacts and Adaptation Strategies—A Systematic Review
by Emmanouela Kamperi, Apostolos-Emmanouil Bazanis and Konstantinos Bertsouklis
Climate 2026, 14(8), 167; https://doi.org/10.3390/cli14080167 - 18 Aug 2026
Viewed by 771
Abstract
Climate change increasingly threatens Mediterranean ornamental horticulture and green infrastructure through elevated temperatures, prolonged drought conditions, soil salinity, and more frequent extreme weather events. As a result, plant growth, phenology and landscape sustainability are significantly affected. This systematic review aimed to identify and [...] Read more.
Climate change increasingly threatens Mediterranean ornamental horticulture and green infrastructure through elevated temperatures, prolonged drought conditions, soil salinity, and more frequent extreme weather events. As a result, plant growth, phenology and landscape sustainability are significantly affected. This systematic review aimed to identify and qualitatively synthesize the available evidence on the responses of ornamental plants and their production and end use systems to climate-related stress, with emphasis on Mediterranean native species and their potential contribution to climate-resilient landscaping. The review was conducted and reported in accordance with PRISMA 2020. An adapted Population–Exposure–Outcome framework was used to operationalize the overarching review question and guide eligibility assessment. Scopus and the Web of Science Core Collection were systematically searched for peer-reviewed English-language articles published between 1 January 2001 and 31 May 2026. Eligible publications examined ornamental plants, floricultural species, or native and endemic taxa with potential ornamental or landscape use and addressed climate-related stressors, plant resilience, adaptation strategies, cultivation or propagation practices, green-infrastructure applications, or related ecological trade-offs in Mediterranean-relevant contexts. Two reviewers independently assessed titles, abstracts, and full texts using predefined eligibility criteria. The review used a structured qualitative narrative synthesis organized into thematic domains to systematically identify, select, and synthesize the available evidence. Meta-analysis was not undertaken because of substantial heterogeneity in plant material, environmental stressors, study designs, and reported outcomes. A total of ninety studies were included and organized into five domains: climate stress and plant responses (n = 14), native Mediterranean ornamental species (n = 21), adaptation and resilience strategies (n = 16), urban landscaping and green infrastructure (n = 25), and ecological risks and invasive species (n = 14). The review revealed that several native Mediterranean plants possess morphological, physiological, or ecological characteristics associated with tolerance to drought, salinity, and other climate-related stresses, supporting their potential use in sustainable ornamental horticulture. Water-efficient irrigation, alternative water sources and substrates, nursery preconditioning, non-microbial biostimulants, and genotype or physiological screening showed adaptation potential, but their effectiveness depended on species, genotype, intervention intensity, and application context. Evidence remained limited for compound stresses, combined interventions, nursery-to-landscape transfer, long-term field performance, commercial scalability, and environmental trade-offs. Overall, climate-resilient ornamental horticulture requires the integration of plant selection, propagation, production, controlled stress screening, landscape validation, and ecological-risk assessment. This review proposes an evidence-to-application framework to support research, nursery production, landscape planning, and the responsible deployment of climate-adapted ornamental plants. Full article
(This article belongs to the Special Issue Climate Variability in the Mediterranean Region (Second Edition))
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13 pages, 531 KB  
Article
Examining Community Engagement Strategies Used in the Climate Impact on Lung Cancer via Exposure to Radon (CLOVER) Study
by Mary Srivastava, Andrea Thoumi, Yadurshini Raveendran, Phillip Gibson, Jules Iradukunda, Ashwini Joshi, Suur D. Ayangeakaa, Jeffrey M. Clarke, Amie Koch, Junfeng (Jim) Zhang and Tomi Akinyemiju
Int. J. Environ. Res. Public Health 2026, 23(8), 1072; https://doi.org/10.3390/ijerph23081072 - 18 Aug 2026
Viewed by 203
Abstract
Background: Residential radon exposure is a leading risk factor for lung cancer, and climate change may exacerbate this risk by increasing radon entry into homes. In North Carolina (NC), disparities in lung cancer outcomes and low radon awareness disproportionately affect racially and ethnically [...] Read more.
Background: Residential radon exposure is a leading risk factor for lung cancer, and climate change may exacerbate this risk by increasing radon entry into homes. In North Carolina (NC), disparities in lung cancer outcomes and low radon awareness disproportionately affect racially and ethnically diverse and low-income populations. However, little is known about how use of conventional address-based sampling (ABS) compares with community-engaged recruitment strategies for enrolling historically underrepresented populations into such research. Community-engaged approaches are used to improve participation in environmental health research, yet few studies compare their effectiveness with traditional approaches in NC. This manuscript compares recruitment outcomes between ABS and community-engaged approaches within the CLOVER study to address this gap. Materials and Methods: The Climate Impact on Lung Cancer via Exposure to Radon (CLOVER) study is a cross-sectional study examining climate-impacted radon exposure and lung cancer risk in NC. Participants were recruited using either ABS through a commercial address database or targeted community-engaged approaches implemented through partnerships with community organizations and culturally responsive, in-person outreach events. After providing informed consent, participants completed a household survey and a 7-day home radon test. Recruitment outcomes—consent, survey completion, and radon test return—were stratified by race and ethnicity and compared across strategies. Results: Of 236 consented participants, community-engaged recruitment enrolled a higher proportion of Non-Hispanic (NH) Black, Hispanic/Latino, and American Indian participants than ABS (57.3% vs. 41.9%). Community-engaged recruitment also had a higher consent rate than ABS (10.2% vs. 1.3%). Of the 145 participants who completed the survey, ABS participants completed surveys at a higher rate than community-engaged participants (73.3% vs. 54.7%), while of the 86 who returned the radon test kits, community-engaged participants did so at twice the rate of ABS participants (44.7% vs. 22.1%). Conclusions: Community-engaged recruitment enrolled a more racially and ethnically diverse sample and achieved higher consent and return rates than ABS, though ABS participants completed surveys at a higher rate. These findings highlight the importance of community partnerships and in-person recruitment strategies to improve participation of historically underrepresented populations in environmental health research and support equitable approaches to radon mitigation and lung cancer prevention. Full article
(This article belongs to the Section Environmental Health)
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15 pages, 3772 KB  
Review
Environmental Risk Assessment and Confinement of Genetically Engineered Trees with an Emphasis on Vegetative Reproduction
by Yongil Yang and C. Neal Stewart
Plants 2026, 15(16), 2496; https://doi.org/10.3390/plants15162496 - 18 Aug 2026
Viewed by 253
Abstract
Genetic engineering (GE) and gene editing may endow traits to trees such as increased biomass and the production of novel biomaterials. Long-lived organisms such as trees might be subject to biotechnology-related risks that could be different than those of annual row crops. Those [...] Read more.
Genetic engineering (GE) and gene editing may endow traits to trees such as increased biomass and the production of novel biomaterials. Long-lived organisms such as trees might be subject to biotechnology-related risks that could be different than those of annual row crops. Those risks could be relevant to production in engineered plantations and beyond plantations to natural forests. Therefore, appropriate risk regulation is important to assure biosafety of commercialized engineered trees. In addition to gene flow via sexual reproduction, vegetative reproduction might play an additional role in environmental “exposure” risk relative to transgene dispersal in GE tree plantations. While vegetative reproduction is beneficial for preserving desired genetic traits during tree propagation, it may lead to proximal clonal spread in the field. Although the environmental risks associated with vegetative reproduction of GE trees are recognized in commercial forestry, there are few field-based environmental risk assessment (ERA) studies on dispersal risks of self-propagated GE trees. GE or gene editing of target genes involved in the vegetative propagation processes may be useful to mitigate environmental risks of clonal spread through vegetative reproduction. This review provides updates for recent field test results of GE and gene edited trees. Gene candidates related to vegetative reproduction including adventitious shooting (AS) and adventitious rooting (AR) are discussed herein as a means to mitigate unintended clonal spread from GE tree plantations. Full article
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Article
Trade-Offs of Soil Quality, Wheat Yield and Nutrient Efficiency Under Long-Term Combined Chemical and Manure Fertilization in Vertisols
by Jiacheng Gu, Yuekai Wang, Xun Xiao, Yue Zhang, Zhenkang Zhou, Xinyu Zhao, Daozhong Wang and Fengmin Li
Agronomy 2026, 16(16), 1588; https://doi.org/10.3390/agronomy16161588 - 18 Aug 2026
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Abstract
Organic fertilization is a key strategy for improving soil structure and fertility in China’s Vertisols, yet the trade-offs among soil quality enhancement, grain yield performance, and nutrient use efficiency under different organic amendment regimes remain insufficiently elucidated. Based on a unique 43-year field [...] Read more.
Organic fertilization is a key strategy for improving soil structure and fertility in China’s Vertisols, yet the trade-offs among soil quality enhancement, grain yield performance, and nutrient use efficiency under different organic amendment regimes remain insufficiently elucidated. Based on a unique 43-year field fertilization experiment, this study systematically evaluated the effects of long-term chemical fertilization (NPK) alone, low-dose (NPKLS) and high-dose straw incorporation (NPKHS), combined chemical fertilizer with cattle manure (NPKCM), and pig manure (NPKPM) fertilization on soil physical, chemical properties, crop yields and plant nutrient utilization efficiency. The results showed that NPKCM and NPKPM significantly improved soil physical properties by reducing soil bulk density, improving soil pore structure, and enhancing soil water retention capacity and saturated hydraulic conductivity. Although long-term manure application led to slight soil salt accumulation, the rate of accumulation remained substantially lower than that associated with commercial organic fertilizers and did not approach the crop salinity damage threshold, suggesting low ecological risk. Compared with NPK treatment, manure amendment effectively counteracted soil acidification induced by prolonged chemical fertilization, while also significantly increasing soil total phosphorus and available phosphorus content, and elevated the proportion of active phosphorus (PAC). The improved soil phosphorus activation capacity and comprehensive soil quality further contributed to substantial increases in wheat grain yield under NPKCM and NPKPM treatments. Despite these agronomic benefits, the additional nitrogen and phosphorus inputs from manure resulted in soil nutrient surpluses, which considerably reduced nitrogen and phosphorus partial factor productivity as well as agronomic efficiency. In contrast, straw incorporation treatments (NPKLS, NPKHS) sustained stable crop yield without notable declines in nutrient efficiency, positioning them as a greener and more sustainable approach to balancing grain production with resource use efficiency. These findings highlight the need to integrate nutrient credits from manure into fertilization program. Given the 43-year evidence, fertilization strategy should consider not only the nutrients supplied by manure but also the quantities exported through harvested products, with adjustments based on annual soil fertility analyses. Such nutrient budgeting is essential to maximize fertilizer use efficiency, prevent excessive phosphorus accumulation, and maintain balanced soil fertility over time. Full article
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