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Keywords = Mediterranean biodiversity assessment

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13 pages, 17048 KB  
Article
The Mediterranean as a Refuge for the Endangered Sand Tiger Shark Odontaspis ferox in a Warming Ocean
by Cemal Turan and Alen Soldo
Diversity 2026, 18(7), 436; https://doi.org/10.3390/d18070436 - 20 Jul 2026
Viewed by 153
Abstract
The endangered Odontaspis ferox remains a poorly understood large predatory shark, with limited knowledge of its ecological niche and vulnerability to climate change. This study aimed to assess its current and future habitat suitability across the Mediterranean Sea and global oceans using a [...] Read more.
The endangered Odontaspis ferox remains a poorly understood large predatory shark, with limited knowledge of its ecological niche and vulnerability to climate change. This study aimed to assess its current and future habitat suitability across the Mediterranean Sea and global oceans using a species distribution modeling framework. A total of 303 occurrence records were compiled from multiple biodiversity databases and literature sources, and 12 environmental predictors were selected following multicollinearity filtering. Among the tested algorithms, the Random Forest model demonstrated high predictive performance, indicating strong accuracy and reliability. Current projections reveal a highly fragmented distribution, with suitability hotspots concentrated in the eastern and central Mediterranean, particularly in the Aegean Sea, Hellenic Trench, and Ionian Sea, as well as in specific coastal regions globally. Future projections under the SSP2-4.5 scenario (2020–2100) indicate a clear spatial reorganization. Core habitats in the southeastern Mediterranean are projected to persist, while substantial expansion into the northern and central Mediterranean suggests a poleward shift in habitat suitability. In contrast, global projections indicate an overall contraction of suitable habitats. Temperature and primary productivity emerged as the main drivers of distribution patterns. Overall, the results suggest that the Mediterranean Sea may act as a critical climate refuge for O. ferox, highlighting its increasing conservation importance under future ocean warming. Full article
(This article belongs to the Section Marine Diversity)
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17 pages, 2623 KB  
Article
Structural Traits of Old-Growth Beech Forests in the Central Apennines (Italy)
by Giovanni Pelino, Alessandro Vitali, Enrico Tonelli, Fabio Gennaretti and Carlo Urbinati
Land 2026, 15(7), 1291; https://doi.org/10.3390/land15071291 - 19 Jul 2026
Viewed by 178
Abstract
Old-growth forests are recognized as key reference systems for biodiversity conservation and sustainable forest management, yet they remain rare and highly fragmented ecosystems across Europe. In this study, we developed and applied a quantitative, measurement-based framework to assess candidate old-growth beech stands by [...] Read more.
Old-growth forests are recognized as key reference systems for biodiversity conservation and sustainable forest management, yet they remain rare and highly fragmented ecosystems across Europe. In this study, we developed and applied a quantitative, measurement-based framework to assess candidate old-growth beech stands by comparing their structural attributes with reference old-growth forests and with a broader set of beech forests from the National Forest Inventory (NFI). Specifically, we compared the structural attributes of two candidate old-growth (COG) beech stands to assess their degree of naturalness and their similarity to three reference old-growth (ROG) beech forests in the central Apennines. The approach integrated field-based structural measurements, deadwood quantification, dendrochronological assessment of dominant trees and diachronic aerial imagery evaluation, comparing COG stands with both ROG and other beech forests from the NFI database. The two COG stands differ clearly from common beech forests, exhibiting lower stem density, larger size variability, higher occurrence of large trees and of standing wood biomass. Stem diameter distributions followed a reverse J-shaped pattern, typical of uneven-aged and scarcely managed forests. Some very old trees were also found, especially at one of the two COG sites. These characteristics are largely comparable to the ROG beech forests, except for deadwood volumes, lower at the two COG forests. In addition, historical aerial imagery and tree-ring analysis suggested that these forests are intermediate stages along an old-growth gradient. Our findings demonstrate that a prolonged forest management abandonment of over 70 years can induce the development of old-growth attributes in Mediterranean mountain beech forests, even in stands previously coppiced or pastured for a long time. This study provides a replicable measurement-based approach for identifying and validating candidate old-growth forests, under current Italian regulations and contributes to conservation targets consistent with the EU Biodiversity Strategy for 2030. Full article
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18 pages, 3417 KB  
Article
Soil Nematode-Mediated Carbon and Energy Fluxes Along a Continental Gradient in Arid Ecosystems
by Amina Braimi, Hinde Benjlil, Ilyass Filali Alaoui, Tayeb Obidari, Amine Idhmida, Mouna Belmouden, Sarhane Larbi, ElMehdi Elhadda, Hajar Issouktane, Mohamed Ait Hamza, Abdelhamid El Mousadik, Fouad Msanda, Sergio Saia and El Hassan Mayad
Soil Syst. 2026, 10(7), 73; https://doi.org/10.3390/soilsystems10070073 - 30 Jun 2026
Viewed by 305
Abstract
Environmental gradients associated with continentality shape terrestrial ecosystems by modifying biodiversity patterns, community structure, and ecosystem functioning. In arid ecosystems, where water and thermal constraints are pronounced, soil organisms represent sensitive indicators of environmental change. Soil nematodes, due to their functional diversity encompassing [...] Read more.
Environmental gradients associated with continentality shape terrestrial ecosystems by modifying biodiversity patterns, community structure, and ecosystem functioning. In arid ecosystems, where water and thermal constraints are pronounced, soil organisms represent sensitive indicators of environmental change. Soil nematodes, due to their functional diversity encompassing bacterivores, fungivores, herbivores, omnivores, and predators, constitute effective bioindicators of soil health. We hypothesized that increasing continentality (thermal amplitude) would progressively reduce nematode diversity and functional complexity while altering CUE and metabolic footprints through community compositional shifts. A total of 130 soil samples were collected across three bioclimatic zones (island, coastal, and semi-continental) within the Arganeraie Biosphere Reserve, Morocco, and analyzed for nematode abundance, diversity, trophic structure, ecological indices, and functional traits. Nematode abundance and richness were significantly higher in the island zone compared to the coastal and semi-continental zones, while Shannon diversity did not differ significantly. The island zone exhibited a balanced trophic structure with higher proportions of bacteribores, fungivores, herbivores, and omnivores–predators, than the coastal and semi-continental zones. CUE values were consistently low (<0.5) across all zones, with the widest distribution in the island zone. Thermal amplitude was negatively associated with nematode biomass (R = −0.36), production (R = −0.27), and all trophic footprints, with herbivores showing the steepest decline (R = −0.51). Notably, total energy flux remained relatively stable despite reductions in diversity and trophic complexity, suggesting functional redundancy within dominant bacterivore guilds. These findings support the hypothesis that increasing continentality is associated with reduced nematode diversity and functional complexity, alongside altered carbon processing efficiency. This study underscores the value of integrating trophic, metabolic, and energetic approaches for assessing soil health vulnerability in Mediterranean agroecosystems under climate change. Full article
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17 pages, 1789 KB  
Article
Projected Habitat Contraction and Distributional Shifts of the near Threatened Undulate Ray Raja undulata Under Climate Change
by Cemal Turan and Alen Soldo
Biology 2026, 15(13), 1035; https://doi.org/10.3390/biology15131035 - 29 Jun 2026
Cited by 1 | Viewed by 305
Abstract
Climate-driven changes in oceanographic conditions are increasingly affecting the distribution of marine species, particularly vulnerable elasmobranchs. The undulate ray, Raja undulata, is a Near Threatened batoid species distributed throughout the northeastern Atlantic Ocean and parts of the Mediterranean Sea, yet its potential [...] Read more.
Climate-driven changes in oceanographic conditions are increasingly affecting the distribution of marine species, particularly vulnerable elasmobranchs. The undulate ray, Raja undulata, is a Near Threatened batoid species distributed throughout the northeastern Atlantic Ocean and parts of the Mediterranean Sea, yet its potential response to future climate change remains poorly understood. This study assessed current and future habitat suitability using species distribution modelling approaches and CMIP6 climate projections under the SSP245 scenario. Species occurrence records were compiled from biodiversity databases and published sources, and environmental predictors were selected following multicollinearity screening. Among twelve evaluated modelling algorithms, MaxEnt showed the highest predictive performance (AUC = 0.99; TSS = 0.95) and was selected for subsequent analyses. Current habitat suitability was concentrated along the Iberian Peninsula, the Bay of Biscay, the English Channel, and parts of the western Mediterranean Sea. Future projections indicated substantial habitat contraction, with habitat loss (57.3%) greatly exceeding habitat gain (2.2%), resulting in a southward redistribution of suitable habitats. Minimum phytoplankton concentration, sea surface temperature, and silicate concentration were identified as the most influential environmental predictors. Areas predicted to remain suitable under both current and future conditions may represent important climate refugia for the species. Overall, the results indicate that R. undulata is highly vulnerable to future environmental change and highlight the need to incorporate climate-driven habitat shifts into conservation planning, fisheries management, and long-term monitoring strategies. Full article
(This article belongs to the Section Conservation Biology and Biodiversity)
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15 pages, 771 KB  
Article
HeRA: A New Tool for Assessing the Invasiveness Potential of Non-Native Species
by Argyrios Sapounidis, Manos Koutrakis and Ioannis D. Leonardos
Appl. Sci. 2026, 16(13), 6428; https://doi.org/10.3390/app16136428 - 27 Jun 2026
Viewed by 221
Abstract
With over 140 species of primary freshwater fish, including 73 that are endemic, Greece is recognized as a biodiversity hotspot in Europe. However, like freshwater systems worldwide, these ecosystems face serious threats, particularly from the introduction of non-native species. This ongoing increase in [...] Read more.
With over 140 species of primary freshwater fish, including 73 that are endemic, Greece is recognized as a biodiversity hotspot in Europe. However, like freshwater systems worldwide, these ecosystems face serious threats, particularly from the introduction of non-native species. This ongoing increase in invasive species has heightened scientific and policy-maker awareness, as such introductions can lead to population declines and even extinctions of native fish. In response to this growing concern, various risk assessment tools have been developed to evaluate the potential hazards posed by non-native species, both those already established and those likely to be introduced. These tools are critical for informing policy decisions and managing biological invasions effectively. In the current study, a new tool, the Hellenic Risk Assessment (HeRA), is proposed. Unlike its predecessors, HeRA places greater emphasis on assessing the biological traits of introduced species and incorporates region-specific considerations tailored to the Mediterranean basin. Its scoring system evaluates both the likelihood of a species establishing itself and its potential environmental impact, making it a valuable resource for stakeholders in prioritizing management actions and making informed decisions regarding the import of live fish species. Full article
(This article belongs to the Special Issue Monitoring and Conservation of Freshwater Biodiversity)
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31 pages, 5209 KB  
Article
Patterns of Plant Biodiversity Recovery in Post-Fire Rehabilitation Microsites: A Two-Year Study in Ancient Olympia (Greece)
by Alexandra D. Solomou, Nikolaos Proutsos, Panagiotis Michopoulos, Athanassios Bourletsikas and Panagiotis Lattas
Ecologies 2026, 7(2), 59; https://doi.org/10.3390/ecologies7020059 - 22 Jun 2026
Viewed by 470
Abstract
Post-fire rehabilitation structures are widely used in Mediterranean burned landscapes to reduce runoff and sediment transfer, yet their ecological associations with early vegetation recovery remain insufficiently documented. This observational study assessed vascular plant composition, species richness, vegetation cover, plant density, aboveground biomass, and [...] Read more.
Post-fire rehabilitation structures are widely used in Mediterranean burned landscapes to reduce runoff and sediment transfer, yet their ecological associations with early vegetation recovery remain insufficiently documented. This observational study assessed vascular plant composition, species richness, vegetation cover, plant density, aboveground biomass, and soil properties across log barriers, wattles, and log dams in the burned landscape of Ancient Olympia, western Greece. The study area belongs to the humid climatic class of the United Nations Environment Programme (UNEP) aridity framework based on the Thornthwaite aridity index, providing a comparatively wetter Mediterranean post-fire context. Paired depositional and eroded microsites in operationally restored post-fire areas were monitored in 2022 and 2023. The sampling design comprised nine plots and 18 microsites (n = 9 plots, 18 microsites). Generalized estimating equations (GEE), change-score models, principal component analysis (PCA) and permutational multivariate analysis of variance (PERMANOVA) were performed to examine associations of monitoring year, microsite condition and rehabilitation structure type with soil and vegetation patterns. A total of 27 vascular plant species belonging to 16 families were recorded. The average vegetation cover increased from 39.17 ± 21.44% in 2022 to 75.11 ± 12.90% in 2023. Model-based marginal estimates with 95% confidence intervals indicated a large positive increase in vegetation cover over this period. Further, rapid early recovery was indicated by large increases in species richness, plant density and biomass. Depositional microsites were associated with stronger recovery signals than eroded ones, characterized by a larger increase in vegetation cover, density, biomass and species richness. Among rehabilitation structures, log dams showed the highest cumulative floristic richness and a broader observed floristic spectrum, although the species-level contingency analysis provided only marginal evidence for structure-associated differences in floristic composition. Changes in selected soil properties including total nitrogen (total N), ammonium nitrogen (NH4-N), nitrate nitrogen (NO3-N), pH, electrical conductivity (EC), and exchangeable calcium (Ca), magnesium (Mg), and potassium (K), were detected between 2022 and 2023; the multivariate soil pattern was driven primarily by mineral nitrogen, pH, and EC. These findings suggest that, under operational post-fire restoration conditions, rehabilitation structures are associated not only with erosion-control functions but also with microsite differentiation that may shape early plant establishment and biodiversity recovery in Mediterranean burned landscapes. Full article
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2 pages, 144 KB  
Abstract
Fish Community Structure of Native and Alien Species in Eastern Iberian Rivers
by Xavi Giménez-Borrás, Adrián Pérez, Ángela Brotons, Eduardo Belda, Pilar Risueño and Victor Gallego
Proceedings 2026, 146(1), 39; https://doi.org/10.3390/proceedings2026146039 - 17 Jun 2026
Viewed by 133
Abstract
Introduction: Studying the structure and dynamics of living communities is essential from both ecological and wildlife management perspectives. Objective: The main objective of this study was to analyze the fish community structure inhabiting different river sections across several basins in the [...] Read more.
Introduction: Studying the structure and dynamics of living communities is essential from both ecological and wildlife management perspectives. Objective: The main objective of this study was to analyze the fish community structure inhabiting different river sections across several basins in the Mediterranean area. The data collected here contributed to: (i) creating a regional and national reference inventory to assess ichthyological biodiversity; (ii) generating digital cartographic information on species distribution and potential habitats; and (iii) providing scientific data to update national legal protection for governments. Methodology: Fish assemblages were monitored using electrofishing, which ensures reproducible data and long-term comparability. The study period extended until autumn 2025, with intensive sampling at 30 sites across major water bodies in the Valencian Community and selected rivers in Mijares, Turia, Jucar and Palancia basins. Results: The results reveal notable ichthyological richness in the studied basins (Turia, Júcar, Palancia, Mijares), with 12 native species identified. Cyprinidae and Leuciscidae were the most representative families, both in species number and spatial distribution, consistent with their dominance in Mediterranean river systems. Areas with the highest species richness corresponded to the middle and lower river sections and to ecologically valuable coastal wetlands. However, the study also detected 10 invasive alien species, representing 45% of the total fish fauna recorded. This high proportion reflects the significant ecological alteration affecting rivers and wetlands in these basins and underscores the urgent need for management actions to limit the spread of invasive species and reduce their impact on native biodiversity. The most widespread IAS were the bleak (A. alburnus), mainly in the Júcar basin, and the mosquitofish (G. holbrooki), predominantly in coastal wetlands. Conclusions: This study contributes directly to updating the Atlas of Ichthyofauna of the Valencian Community, providing a robust and current information base to support environmental decision-making at regional and national levels. The findings highlight the importance of strengthening proactive conservation measures, particularly in areas where biodiversity is most vulnerable. Full article
(This article belongs to the Proceedings of The XI Iberian Congress of Ichthyology)
2 pages, 172 KB  
Abstract
Hydraulic Head Drop and Social Context Shape Fishway Attractivity in Luciobarbus bocagei
by Renan Leite, Filipe Romão, Isabel Boavida, José Maria Santos, Paulo Branco and Ana Quaresma
Proceedings 2026, 146(1), 42; https://doi.org/10.3390/proceedings2026146042 - 16 Jun 2026
Viewed by 124
Abstract
Introduction: Freshwater ecosystems are among the most threatened worldwide, with river fragmentation, primarily caused by dams and weirs, identified as a major driver of biodiversity loss. This issue is particularly acute in Europe, where more than one million instream barriers disrupt longitudinal connectivity [...] Read more.
Introduction: Freshwater ecosystems are among the most threatened worldwide, with river fragmentation, primarily caused by dams and weirs, identified as a major driver of biodiversity loss. This issue is particularly acute in Europe, where more than one million instream barriers disrupt longitudinal connectivity and compromise the movement of migratory fish. Fishways are widely implemented to mitigate these impacts, yet attraction efficiency at fishway entrances remains poorly understood, especially for Iberian potamodromous cyprinids, a group facing severe conservation pressures. Objective: This study aims to investigate how hydraulic conditions and social context influence the attraction and passage behavior of Luciobarbus bocagei, a rheophilic potamodromous cyprinid endemic to the Iberian Peninsula, in an experimental Vertical slot fishway (VSF) entrance. Methodology: Experiments were conducted in a controlled flume equipped with a VSF entrance design. Two hydraulic scenarios were tested, a Low Head Drop (LD) and a High Head Drop (HD), under a constant discharge of 34 L/s. A computational fluid dynamics (CFD) model was used to characterize and compare the flow field hydrodynamics. Fish were tested individually and in groups of three to assess the role of social dynamics. The metrics collected included time to first approach, first attempt, time to first successful passage, attraction efficiency, and passage efficiency. Cox proportional hazards models were applied to evaluate treatment effects. Results: Preliminary results showed that social context influenced fish attraction behavior. In the two hydraulic scenarios, individuals tested alone tend to exhibit lower likelihoods of approaching, attempting, and successfully negotiating the fishway compared to fish in schools. Delays were also evident for attempts and successful passages, with LD_Ind performing the worst. Conclusions: These findings highlight the importance of hydraulic conditions and social behavior in shaping attraction efficiency. They underscore the need to integrate species-specific behavioral ecology into fishway design, operation, and attraction assessment, acknowledging that fish attractivity is influenced by environmental and ecological factors beyond fishway structure, particularly in Mediterranean river systems where fragmentation pressures are high and potamodromous cyprinids are at risk. Full article
(This article belongs to the Proceedings of The XI Iberian Congress of Ichthyology)
59 pages, 5375 KB  
Review
The Mediterranean Diet as a Sustainable Dietary Pattern: A State-of-the-Art Narrative Review of Health, Environmental and Socioeconomic Dimensions
by Georgios K. Vasios, Maria Gialeli, Georgios Antasouras and Constantinos Giaginis
Nutrients 2026, 18(12), 1925; https://doi.org/10.3390/nu18121925 - 13 Jun 2026
Viewed by 606
Abstract
Background/Objectives: The increasing burden of non-communicable diseases, together with accelerating environmental degradation, highlights the urgent need for sustainable dietary patterns that promote both human and planetary health. The Mediterranean diet (MedDiet), traditionally followed in countries bordering the Mediterranean basin, has gained recognition [...] Read more.
Background/Objectives: The increasing burden of non-communicable diseases, together with accelerating environmental degradation, highlights the urgent need for sustainable dietary patterns that promote both human and planetary health. The Mediterranean diet (MedDiet), traditionally followed in countries bordering the Mediterranean basin, has gained recognition as a model of sustainable nutrition due to its well-documented health benefits and relatively low environmental impact. However, its broader role within sustainable food systems requires comprehensive and interdisciplinary evaluation. The aim of this review is to provide a state-of-the-art synthesis of the evidence on the MedDiet as a sustainable dietary pattern, integrating its health, environmental, economic, and socio-cultural dimensions. Methods: This state-of-the-art narrative review synthesizes evidence from peer-reviewed literature on the MedDiet and sustainability. Relevant studies were identified through major scientific databases, focusing on publications addressing nutritional, environmental, economic, and socio-cultural dimensions. Both observational and interventional studies, as well as modeling and life cycle assessment analyses, were included. Additional sources from international organizations and policy reports were incorporated to contextualize global trends and challenges. Results: High adherence to the MedDiet is consistently associated with a reduced risk of cardiovascular disease, type 2 diabetes, cancer, and all-cause mortality. From an environmental perspective, the MedDiet is associated with lower greenhouse gas emissions, reduced land and water use, and enhanced biodiversity conservation compared with Western dietary patterns. Economically, it may represent a cost-effective dietary model and support local food systems when grounded in traditional practices, although affordability varies across contexts. Socio-culturally, the MedDiet promotes food heritage, culinary skills, and social cohesion. Nevertheless, globalization, urbanization, and the increasing consumption of ultra-processed foods have contributed to declining adherence, posing significant challenges to its sustainability and scalability. Moreover, the sustainability benefits of the MedDiet seem to be context-dependent rather than intrinsic, raising several challenges and limitations for its adoption. Conclusions: The MedDiet should be viewed not as a definitive solution to global food-system challenges but as a valuable reference model that illustrates how dietary practices can contribute simultaneously to human health, environmental sustainability, and cultural continuity. Modern sustainable dietary strategies should build upon the strengths of the MedDiet while recognizing its limitations, embracing contextual adaptation, and addressing the structural determinants that shape food choices. Full article
(This article belongs to the Section Nutritional Policies and Education for Health Promotion)
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23 pages, 1466 KB  
Article
Moving in the Same Direction: A Shared Path for Sustainable Tourism and Nature-Based Solutions
by Giulia Mura, Chiara Catalano and Nunzia Borrelli
Sustainability 2026, 18(12), 5822; https://doi.org/10.3390/su18125822 - 8 Jun 2026
Viewed by 256
Abstract
The contemporary debate on the climate crisis increasingly emphasizes the need to protect and enhance nature and biodiversity through the active involvement of local communities, including in tourism initiatives. In this context, there is growing demand for models and methodologies able to systematically [...] Read more.
The contemporary debate on the climate crisis increasingly emphasizes the need to protect and enhance nature and biodiversity through the active involvement of local communities, including in tourism initiatives. In this context, there is growing demand for models and methodologies able to systematically support more sustainable approaches to territorial governance. This study explores how reflections developed in tourism studies, ecosystem restoration, and museology reveal converging interests and could benefit from a more explicit alignment of efforts. More specifically, we examine whether nature-based solutions (NbS) can support a local turn in tourism and whether ecomuseums can be considered NbS. The analysis combines a review of theoretical contributions with their application to ecomuseum experiences. Comparing the founding principles and criteria of each field, we identified four shared dimensions: place-based governance, community engagement, environmental sustainability, and education and awareness. Analysis of 94 questionnaires collected from Mediterranean ecomuseums showed how these dimensions are reflected in institutional practices. Results revealed a strong correlation between place-based governance and community engagement, and between environmental sustainability and education and awareness. Finally, an Integrated Ecomuseum Performance (IEP) Index was developed to assess the capacity of ecomuseums to act as community-based NbS and sustainable tourism actors. Ecomuseums, NbS, and the local turn in tourism are therefore presented as interconnected approaches promoting holistic, inclusive, and environmentally responsible development. The proposed criteria and index could be used as a tool to diagnose and strengthen ecomuseums’ role in sustainable tourism governance and NbS implementation at the local level. Full article
(This article belongs to the Section Social Ecology and Sustainability)
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16 pages, 2558 KB  
Article
Waste-Derived Fertilizers Enhance Soil Functionality: A Multi-Indicator Assessment in Mediterranean Agroecosystems
by Mariateresa Oliva, Federica Marra, Ludovica Santoro, Angela Maffia, Santo Battaglia, Emilio Attinà, Carmelo Mallamaci and Adele Muscolo
Environments 2026, 13(6), 315; https://doi.org/10.3390/environments13060315 - 4 Jun 2026
Viewed by 525
Abstract
Soil degradation and organic matter depletion threaten the sustainability of Mediterranean agroecosystems, highlighting the need for effective and sustainable soil restoration strategies. This study evaluated the short-term effects of composts and vermicomposts derived from chestnut sawdust and food waste on soil functionality and [...] Read more.
Soil degradation and organic matter depletion threaten the sustainability of Mediterranean agroecosystems, highlighting the need for effective and sustainable soil restoration strategies. This study evaluated the short-term effects of composts and vermicomposts derived from chestnut sawdust and food waste on soil functionality and broccoli quality under field conditions using a multi-indicator assessment framework. Six fertilization treatments, including composts, vermicomposts, horse manure, mineral NPK fertilization, and an unfertilized control, were tested in broccoli-cultivated plots. Organic amendments significantly improved soil chemical, biochemical, and biological properties compared with mineral fertilization and the unfertilized control. Vermicompost 10/90 (10% sawdust:90% wet waste) produced the strongest effects, increasing soil organic carbon and organic matter by about 85%, cation exchange capacity by 45%, and dehydrogenase activity by 83% compared with the unfertilized control. Compost and vermicompost treatments also enhanced microbial biomass carbon, enzymatic activities, and QBS-ar values, indicating improved soil biological quality and microarthropod diversity. Broccoli quality was significantly influenced by fertilization regime. Vermicompost 10/90 increased vitamin C by 154%, vitamin E by 54%, total proteins by 18%, and total carbohydrates by 17% compared with the unfertilized control. Organic amendments also enhanced total phenolics, flavonoids, and antioxidant activity relative to NPK and control treatments. Principal component and correlation analyses revealed strong positive relationships among organic matter accumulation, microbial activity, enzymatic processes, soil biodiversity, and crop nutritional quality. Overall, the integrated multi-indicator approach demonstrated that waste-derived organic amendments improve soil functionality and crop quality simultaneously, supporting their use as sustainable tools for circular and resilient Mediterranean agricultural systems. Full article
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29 pages, 32637 KB  
Article
Satellite-Based Assessment of Potential Microclimatic Effects of Photovoltaic (PV) Power Plants in Vulnerable Agroecosystems
by Ioannis Faraslis, Nicolas R. Dalezios, Marios Spiliotopoulos, Nikolaos Alpanakis, Stavros Sakellariou, Vagelis Brisimis and Nicholas Dercas
Atmosphere 2026, 17(6), 562; https://doi.org/10.3390/atmos17060562 - 29 May 2026
Viewed by 413
Abstract
There is a strong global increase in the installation of renewable energy power plants, due to increasing energy demand in the electricity generation sector and fast cost reduction. Recent studies indicate that the installation and operation of photovoltaic (PV) power plants have negligible [...] Read more.
There is a strong global increase in the installation of renewable energy power plants, due to increasing energy demand in the electricity generation sector and fast cost reduction. Recent studies indicate that the installation and operation of photovoltaic (PV) power plants have negligible microclimatic effects, although there are minor effects on night temperature in some cases, which, however, do not justify climate or environmental change. The development of solar energy and the installation and operation of PV power plants serve as a key solution for the energy transition to reduce carbon emissions and to address global warming. Despite the benefit of emission reduction, the deployment of solar energy through the installation of solar power plants causes land cover changes and may have minor effects on the surface energy balance by modifying roughness and albedo, biodiversity by disturbing habitats, and water resources by requiring water for cooling and cleaning. These changes may also lead to minor climatic, ecological, and social impacts. The objective of the paper consists of assessing the potential microclimatic effects of photovoltaic power plants based on satellite-based land surface temperature (LST) analyses. Specifically, the potential change in the land surface temperature, both under photovoltaic panels and on the panels, in relation to the temperature of the surrounding area is being examined in this study. The implementation is conducted in Mediterranean ecosystems, which are considered vulnerable agroecosystems due to increased climate variability. The final Landsat-based time series analysis further supports this synthesis, reporting that monthly LST differences between the PV Park and surrounding area are negligible and do not indicate a meaningful microclimate alteration attributable to PV operations. Accordingly, the evidence supports the core conclusion: utility-scale PV deployment does not constitute a driver of climate change, and the documented effects are best understood as localized surface–atmosphere energy-balance perturbations whose sign and magnitude depend on land cover, seasonality, and operation. Full article
(This article belongs to the Section Biometeorology and Bioclimatology)
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17 pages, 7495 KB  
Article
Remnants of Semi-Natural Habitats Sustain Nocturnal Lepidoptera Diversity Within a Mediterranean Vineyard System
by Giada Zucco, Sara La Cava, Marco Infusino and Stefano Scalercio
Land 2026, 15(6), 898; https://doi.org/10.3390/land15060898 - 22 May 2026
Viewed by 423
Abstract
Agricultural intensification has led to landscape homogenization and the widespread loss of semi-natural habitats, contributing to biodiversity decline in agroecosystems. Semi-natural areas embedded within croplands may mitigate these effects by acting as reservoirs and steppingstones for species providing ecosystem services such as pollination. [...] Read more.
Agricultural intensification has led to landscape homogenization and the widespread loss of semi-natural habitats, contributing to biodiversity decline in agroecosystems. Semi-natural areas embedded within croplands may mitigate these effects by acting as reservoirs and steppingstones for species providing ecosystem services such as pollination. We assessed the role of remnants of semi-natural habitats in sustaining the diversity and abundance of nocturnal Lepidoptera within a Mediterranean vineyard landscape (southern Italy) using monthly light trap sampling over almost one year. Assemblages were compared between vineyards and adjacent semi-natural patches. Multivariate analyses revealed marked differences in community composition between semi-natural habitat types. Species richness was consistently higher in semi-natural habitats, even when represented by small residual patches. Vineyard assemblages were characterized by reduced richness and a predominance of generalist species with high dispersal ability, indicating a simplified community structure. Nevertheless, some taxa of biogeographical interest were recorded. These findings demonstrate the importance of semi-natural habitats in maintaining nocturnal Lepidoptera diversity in vineyard-dominated landscapes and support their integration into sustainable agricultural management to enhance biodiversity conservation and the provision of ecosystem services. Full article
(This article belongs to the Section Landscape Ecology)
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15 pages, 1841 KB  
Article
Climate-Driven Range Dynamics and Spatial Reorganization of the Oriental Hornet (Vespa orientalis) in the Western Palearctic Under Current and Future Scenarios
by Hossam F. Abou-Shaara and Areej A. Al-Khalaf
Diversity 2026, 18(5), 290; https://doi.org/10.3390/d18050290 - 12 May 2026
Viewed by 955
Abstract
Understanding the climate-driven range dynamics of the oriental hornet (Vespa orientalis) is essential for ecological risk assessment and biodiversity management. This study utilized Maximum Entropy (MaxEnt) modeling to estimate current and future (2050) habitat suitability across the Western Palearctic. The model [...] Read more.
Understanding the climate-driven range dynamics of the oriental hornet (Vespa orientalis) is essential for ecological risk assessment and biodiversity management. This study utilized Maximum Entropy (MaxEnt) modeling to estimate current and future (2050) habitat suitability across the Western Palearctic. The model demonstrated strong predictive performance, yielding a mean cross-validation AUC of 0.95 ± 0.01 and a TSS of 0.78 ± 0.02, indicating high stability and discriminatory capacity. Jackknife analysis and response curves identified temperature annual range (bio7) and annual precipitation (bio12) as the primary environmental drivers. The species exhibits a distinct preference for moderate thermal variability and balanced moisture regimes, while extreme summer heat (bio5) and warm winter conditions (bio11) impose significant constraints. Current projections identify a high-suitability core concentrated within the Mediterranean basin. By mid-century, projections indicate a spatial reorganization marked by localized gains mainly in the eastern part of the study region alongside suitability losses across North Africa and parts of southern Europe. Multivariate Environmental Similarity Surface (MESS) analysis confirmed high model transferability across most expansion zones, despite increased uncertainty in hyper-arid and high-altitude regions. These findings underscore the dynamic nature of the V. orientalis climatic niche and provide a critical baseline for proactive biosecurity and monitoring in emerging high-risk regions. Given the global decline in Hymenoptera diversity, this study provides timely insights into species-specific responses to climate change, supporting broader efforts in biodiversity conservation and ecological risk assessment. Full article
(This article belongs to the Special Issue Advances in Hymenoptera Diversity and Biology)
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27 pages, 39743 KB  
Article
Forecasting Habitat Shifts in Euro-Mediterranean Orchids Protected Under Directive 92/43/EEC
by Giovanni-Breogán Ferreiro-Lera, Ángel Penas and Sara del Río
Diversity 2026, 18(5), 287; https://doi.org/10.3390/d18050287 - 11 May 2026
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Abstract
While the main diversification centers of Orchidaceae Juss. are located in neotropical-like climates, Europe, and particularly the Mediterranean basin, has remarkable orchid biodiversity. The present study aims to model the habitat suitability of Mediterranean orchid species listed under the Directive 92/43/EEC: Cypripedium calceolus [...] Read more.
While the main diversification centers of Orchidaceae Juss. are located in neotropical-like climates, Europe, and particularly the Mediterranean basin, has remarkable orchid biodiversity. The present study aims to model the habitat suitability of Mediterranean orchid species listed under the Directive 92/43/EEC: Cypripedium calceolus L., Dactylorhiza kalopissii E.Nelson, Himantoglossum adriaticum H.Baumann, Himantoglossum jankae Somlyay, Kreutz & Óvári, Liparis loeselii (L.) Rich., Ophrys argolica H.Fleischm., Ophrys kotschyi H.Fleischm. & Soó, Ophrys lunulata Parl. and Spiranthes aestivalis (Poir.) Reich. The Bayesian Additive Regression Trees algorithm is employed to conduct automated variable selection and, subsequently, to model the current potential distribution. Solar radiation and the continentality index stand out as the most important distribution predictors. The Miller calibration slope is found to be inadequate (>2.0) for taxa with limited occurrences. Finally, the medium- (2051–2075) and long-term (2076–2100) viability under climate change scenarios SSP2-4.5 and SSP5-8.5 is assessed for high-prevalence orchids (Cypripedium calceolus, Himantoglossum adriaticum, Liparis loeselii and Spiranthes aestivalis). Our results reveal a marked contraction of suitable areas for Cypripedium calceolus (21–55%), Spiranthes aestivalis (29–60%), and, especially, Liparis loeselii (57–87%), which would reach the critically endangered status under the SSP5-8.5 scenario. Our findings underscore the urgent need to incorporate refined ecological modeling into conservation strategies, thereby informing management decisions and policy frameworks aimed at safeguarding one of Europe’s most emblematic and vulnerable plant lineages. Full article
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