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38 pages, 345 KB  
Review
African American Family Fishing as Food Provision, Communal Learning, Wellness, and Social-Sustainability Exploration
by Darrell Norman Burrell
Sustainability 2026, 18(17), 9102; https://doi.org/10.3390/su18179102 - 4 Sep 2026
Viewed by 113
Abstract
This narrative literature review examines African American family fishing as a historically grounded practice of food provision, cultural continuity, place-based learning, and environmental stewardship, and considers its conceptual relationship to the United Nations Sustainable Development Goals (SDGs). The review synthesizes an analytical corpus [...] Read more.
This narrative literature review examines African American family fishing as a historically grounded practice of food provision, cultural continuity, place-based learning, and environmental stewardship, and considers its conceptual relationship to the United Nations Sustainable Development Goals (SDGs). The review synthesizes an analytical corpus of 41 works spanning history, fishing participation, food insecurity, food sovereignty, foodways, place attachment, environmental education, and social-ecological systems. The literature indicates that Black fishing cannot be understood as recreation alone; historically and contemporarily, it has connected food acquisition, family interaction, livelihood, cultural memory, and community identity. These functions are conceptually aligned with SDGs 2, 3, and 10 through plausible pathways involving culturally meaningful food access, family-centered outdoor activity, and attention to racial disparities in food security, environmental access, and institutional representation. Family fishing may also provide a place-based learning context relevant to SDG 4, while responsible harvesting, reduced waste, and ecological literacy may contribute to SDG 12. Repeated engagement with local waters may cultivate belonging and stewardship; freshwater relationships are most directly relevant to SDG 6, whereas coastal, estuarine, and marine contexts may contribute to SDG 14. These are interpretive alignments, not measured SDG outcomes. The review concludes that family-centered pilot initiatives may productively integrate cultural history, ecological education, food skills, mentorship, and community leadership, subject to feasibility testing and empirical evaluation. Contemporary family-level research is needed to examine harvest, food sharing, learning, health, access, and stewardship across generations. Full article
23 pages, 13848 KB  
Article
Life-History Trade-Offs in the Pearl Oyster Pinctada radiata: Growth Limitation and Reproductive Persistence in a Hypersaline Semi-Enclosed Sea
by Mohamed Yusuf, Layla Hazeem and Hashim Al-Sayed
Hydrobiology 2026, 5(3), 25; https://doi.org/10.3390/hydrobiology5030025 - 12 Aug 2026
Viewed by 293
Abstract
Hypersaline semi-enclosed seas impose physiological constraints on marine bivalves by increasing osmotic regulation costs and limiting somatic growth. This study examined life-history variation in natural populations of the pearl oyster Pinctada radiata across contrasting salinity regimes along the eastern and western coasts of [...] Read more.
Hypersaline semi-enclosed seas impose physiological constraints on marine bivalves by increasing osmotic regulation costs and limiting somatic growth. This study examined life-history variation in natural populations of the pearl oyster Pinctada radiata across contrasting salinity regimes along the eastern and western coasts of Bahrain in the Arabian Gulf. Environmental conditions, shell morphometrics, growth modeling, oocyte abundance, physiological condition indicators, and the production-to-biomass ratio (P:B) were assessed to determine whether high salinity constrains somatic growth while reproductive persistence is maintained. Monthly surveys were conducted from June 2021 to May 2022 at one pearl oyster bed on each coast, comprising 12 surveys per coast. The two coasts formed a salinity gradient, averaging approximately 42‰ in the east and 55‰ in the west. Oysters from the western coast were smaller, with a mean shell height decreasing from 63.12 ± 6.47 mm in the east to 45.88 ± 3.41 mm in the west. The Gompertz model indicated a lower asymptotic shell height in the more saline population. The population-level P:B ratio was 0.23 yr−1 on the eastern coast and 7.46 yr−1 on the western coast. Despite reduced shell size, western oysters maintained strong seasonal oocyte abundance. The higher biomass turnover in the west partly reflected greater oyster density. This pattern is consistent with osmoregulatory costs and constrained shell biomineralization under chronic hypersalinity. Reproductive activity followed a bimodal pattern on both coasts. These findings are consistent with a life-history trade-off in which pearl oysters exposed to chronic salinity stress maintain reproductive activity despite constrained growth. Overall, this study links environmental forcing, growth limitation, population-level biomass turnover, and reproductive activity, providing field-based evidence that chronic hypersalinity constrains somatic growth while reproductive persistence is maintained in a benthic bivalve inhabiting hypersaline coastal systems under climate-related stress. Full article
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21 pages, 31182 KB  
Article
Unraveling the Evolution of a Submerged Coastal Karst Basin in the Adriatic Sea: Insights from Geomorphology and Seismic Stratigraphy
by Dea Brunović, Ozren Hasan, Nikolina Ilijanić and Slobodan Miko
J. Mar. Sci. Eng. 2026, 14(15), 1360; https://doi.org/10.3390/jmse14151360 - 24 Jul 2026
Viewed by 332
Abstract
Although recent studies have significantly improved our understanding of submerged landscapes along the karstified eastern Adriatic coast, many aspects of their evolution and response to post-glacial relative sea-level rise remain poorly understood. Thus, the present study offers new insights into the Late Quaternary [...] Read more.
Although recent studies have significantly improved our understanding of submerged landscapes along the karstified eastern Adriatic coast, many aspects of their evolution and response to post-glacial relative sea-level rise remain poorly understood. Thus, the present study offers new insights into the Late Quaternary paleoenvironmental history of Pirovac Bay, a submerged coastal karst basin in the central Adriatic, by integrating high-resolution seismic data with chronologically constrained sediment cores. The results revealed the existence of two morphologically distinct karst depressions that provided accommodation space for the formation of diverse depositional environments. The Late Glacial and Holocene sedimentary succession documents an evolution from subaerial and fluvially influenced settings to lacustrine and ultimately fully marine environmental conditions. The identified fluvio-karst valley highlights the largely unexplored role of fluvio-karst processes in the development of coastal karst basins, while the discovered Pirovac paleolake is the youngest submerged Holocene lake known along the eastern Adriatic coast. The present-day embayment appears to be characterized by erosional processes and active submarine groundwater discharge, reflecting highly dynamic hydrological conditions. These findings contribute to a better understanding of the interactions between karstification, sea-level rise, sedimentary processes, and groundwater dynamics in coastal karst basins. They also provide an important framework for future paleoenvironmental and hydrogeological investigations along the eastern Adriatic coast. Full article
(This article belongs to the Section Geological Oceanography)
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21 pages, 6539 KB  
Article
Age Structure and Growth Responses of the Pearl Oyster (Pinctada radiata) Under Contrasting Salinity Regimes in Bahrain Waters, Arabian Gulf
by Mohamed Yusuf, Hashim Al-Sayed and Layla Hazeem
J. Mar. Sci. Eng. 2026, 14(13), 1186; https://doi.org/10.3390/jmse14131186 - 28 Jun 2026
Cited by 1 | Viewed by 511
Abstract
Understanding age and growth in marine bivalves is essential for interpreting population dynamics and environmental responses. The analysis of sclerochronological growth increments within internal shell layers provides a reliable approach for reconstructing age and growth history and preserves long-term records of environmental variability [...] Read more.
Understanding age and growth in marine bivalves is essential for interpreting population dynamics and environmental responses. The analysis of sclerochronological growth increments within internal shell layers provides a reliable approach for reconstructing age and growth history and preserves long-term records of environmental variability and stress. This study presents the first assessment of age structure and growth history of the pearl oyster Pinctada radiata in Bahrain waters using shell growth-line analysis. Pearl oysters from two contrasting salinity regimes in Bahrain waters, the Northern Area (~40‰) and the hypersaline Western Coast (~55‰), were examined using acetate peel replicas and internal shell growth-line analysis. Age determination was conducted from shell cross-sections, and growth patterns were evaluated through morphometric analysis and von Bertalanffy growth modelling. Oysters from the Northern Area attained larger shell sizes and exhibited estimated life spans of up to 5–6 years, whereas hypersaline populations displayed reduced life spans (3–4 years), thinner shells, and lower asymptotic growth despite rapid early development. A strong correlation between shell height and umbo height supported the reliability of internal growth increments as age proxies. These findings suggest that pearl oysters inhabiting naturally hypersaline habitats may exhibit a dwarf-like growth pattern and reduced life span associated with persistent hypersalinity. The results improve understanding of growth responses and physiological limits of P. radiata under naturally hypersaline conditions in the Arabian Gulf. Full article
(This article belongs to the Section Marine Biology)
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26 pages, 7006 KB  
Article
Assessing Coral Reef Stress in Indonesia by Combining SST and Ocean Color Data
by Ni Putu Praja Chintya, Seungil Baek and Wonkook Kim
Remote Sens. 2026, 18(12), 2019; https://doi.org/10.3390/rs18122019 - 17 Jun 2026
Viewed by 497
Abstract
Coral reefs support marine biodiversity, fisheries, tourism, and coastal protection, but they are increasingly threatened by environmental stress and bleaching. Satellite-based reef monitoring has mainly relied on thermal metrics, especially Degree Heating Weeks (DHW), to represent bleaching risk. However, thermal exposure alone may [...] Read more.
Coral reefs support marine biodiversity, fisheries, tourism, and coastal protection, but they are increasingly threatened by environmental stress and bleaching. Satellite-based reef monitoring has mainly relied on thermal metrics, especially Degree Heating Weeks (DHW), to represent bleaching risk. However, thermal exposure alone may not fully describe reef stress in optically complex coastal waters, where light availability, water clarity, and water-quality conditions can modify coral response. This limitation is important in Indonesia, where reefs span diverse coastal environments and many bleaching observations occur under relatively low DHW. In this study, we develop the Coral Reef Environmental Stress Index (CRESI), implemented as CRESI-Mamba, to estimate coral reef stress in Indonesia as a continuous and interpretable satellite-based stress index. CRESI-Mamba uses 26-week sequences of thermal variables from NOAA Coral Reef Watch and ocean-color variables from NASA Visible Infrared Imaging Radiometer Suite (VIIRS). The model decomposes the inferred stress into thermal, optical, and water-quality pathways, and maps the resulting stress index to bleaching probability for event-based evaluation. CRESI-Mamba was trained and evaluated using 8424 reef observations from eight Indonesian regions. In Leave-One-Region-Out cross-validation (LORO-CV), the model achieved a mean area under the receiver operating characteristic curve (AUC) of 0.795±0.087. In grouped 5-fold cross-validation, it achieved an AUC of 0.802±0.024, exceeding the DHW-only baseline (0.627±0.021) and performing comparably to stronger thermal-only models, while providing a pathway-decomposed stress index. The estimated stress index separated bleached and not-bleached observations, with paired stress differences of 0.299±0.098 in LORO-CV and 0.281±0.032 in grouped 5-fold CV. Pathway analysis showed that the dominant stress pathway differed among regions, with optical stress dominant in several low-DHW bleaching cases. These results show that reef stress in Indonesia is better represented as a multi-pathway environmental condition than as thermal exposure alone. CRESI-Mamba provides a framework for interpreting satellite environmental histories as reef stress, while retaining bleaching probability as an evaluation output. Full article
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25 pages, 5130 KB  
Article
How Sustainable Is Arctic Route Diversification? Economic Losses, SDG Trade-Offs, and Supply Chain Resilience in the 2026 Hormuz Crisis
by Seung-Jun Lee, Jisung Kim and Hong-Sik Yun
Sustainability 2026, 18(9), 4318; https://doi.org/10.3390/su18094318 - 27 Apr 2026
Cited by 1 | Viewed by 2902
Abstract
The effective closure of the Strait of Hormuz on 28 February 2026 disrupted approximately 20 million barrels (bbl) per day of crude oil transit, constituting the largest supply shock in global oil market history. This study quantifies the resulting economic losses under three [...] Read more.
The effective closure of the Strait of Hormuz on 28 February 2026 disrupted approximately 20 million barrels (bbl) per day of crude oil transit, constituting the largest supply shock in global oil market history. This study quantifies the resulting economic losses under three blockade-duration scenarios and evaluates the Northern Sea Route (NSR) as a partial mitigation mechanism through a novel framework integrating sustainable supply chain resilience (SSCR), the Triple Bottom Line (TBL), and the United Nations Sustainable Development Goals (SDGs). A 3 × 3 scenario matrix crossing three blockade durations with three NSR utilization levels estimates global and country-level impacts using data from the International Energy Agency (IEA), the International Monetary Fund (IMF), and the Centre for High North Logistics (CHNL). Even under maximum feasible NSR utilization, net environmentally adjustment mitigation offsets only 1.1–3.6% of total global losses, demonstrating that the Northern Sea Route functions as marginal insurance rather than a viable substitute for Hormuz-dependent supply chains. Global Gross Domestic Product (GDP) losses range from USD 330 billion to USD 2.2 trillion, with South Korea (68–70% Middle East crude dependency) and Japan (approximately 95%) disproportionately affected. After TBL environmentally adjustment monetizing CO2, black-carbon, and icebreaker costs, the NSR mitigates 1.1–3.6% of total losses, functioning as insurance rather than substitution. The SDG assessment reveals a fundamental trade-off: the NSR offsets energy-security losses (SDGs 7, 9) but worsens climate and marine outcomes (SDGs 13, 14). Theoretically, this study proposes “alternative maritime route availability” as a conceptual extension of supply chain resilience (SCRes) capabilities and outlines a sustainability-adjusted resilience score (SARS) framework that, pending further validation, could serve as a replicable assessment tool. These findings underscore that accelerating the energy transition remains the most effective long-term response to chokepoint vulnerability. Full article
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37 pages, 1769 KB  
Review
Candida Infections in Marine Mammals: Epidemiology, Antifungal Resistance, and One Health Implications
by Michelyne Haroun, Christophe Tratrat, Muhammad Munir, Ouda Nasser Aldakhilallah, Sahar Mohamed Ibrahim and Athina Geronikaki
Animals 2026, 16(7), 1060; https://doi.org/10.3390/ani16071060 - 31 Mar 2026
Viewed by 1707
Abstract
Candida albicans is currently considered one of the most significant fungal pathogens in cetaceans and pinnipeds and the spread of antifungal-resistant strains pose significant threats to animal health and One Health concerns. Although C. albicans is the most commonly detected species, non-albicans [...] Read more.
Candida albicans is currently considered one of the most significant fungal pathogens in cetaceans and pinnipeds and the spread of antifungal-resistant strains pose significant threats to animal health and One Health concerns. Although C. albicans is the most commonly detected species, non-albicans Candida (NAC) species, including C. tropicalis, C. parapsilosis and Nakaseomyces glabratus and the multidrug-resistant C. auris, have been recognized in captive dolphins. This review examines the clinical patterns observed in marine mammal taxa: cetaceans are most commonly vulnerable to respiratory and disseminated mycoses owing to their distinct anatomical characteristics, whereas mucocutaneous infections are the common manifestation in pinnipeds. Localized mucocutaneous infections may progress to fatal systemic disease, with mortality rates approaching 100% in severe cases, despite therapeutic treatment. The most important predisposing factors are immunosuppression, long-term antibiotic treatment, environmental stress factors, and the deterioration of water quality. Diagnostic methods are based on cytology, histopathology, culture, and molecular methods, and treatment is mostly composed of systemic azole antifungals although with high levels of therapeutic failure. Recent results showed that there are high levels of azole resistance in the isolates of marine mammals that had no history of exposure to antifungal agents, which points to the role of aquatic environments as sources of resistance genes. The lack of knowledge remains particularly evident in species-specific pharmacokinetics and the development of evidence-based treatment guidelines. These infections also have broader implications for ecosystem health surveillance and the protection of endangered marine mammal populations. The current review highlights the One Health approach with marine mammals being at the core of ocean health surveillance and identifies the potential for zoonotic transmission. Full article
(This article belongs to the Special Issue Diseases of Marine Mammals: Prevention, Control and Beyond)
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39 pages, 3168 KB  
Systematic Review
Criteria for the Characterization of Seafood Byproducts to Allow Tracing Their Geographic Origin
by Cláudia P. Passos, Fernando Ricardo and Ricardo Calado
Foods 2026, 15(6), 1073; https://doi.org/10.3390/foods15061073 - 18 Mar 2026
Viewed by 1344
Abstract
Marine byproducts generated from seafood processing represent valuable reservoirs of structurally and functionally distinct biomolecules, whose composition reflects species, habitat, and processing history. This systematic review identified which marine byproducts have been most extensively studied between 2020 and 2025, with emphasis on their [...] Read more.
Marine byproducts generated from seafood processing represent valuable reservoirs of structurally and functionally distinct biomolecules, whose composition reflects species, habitat, and processing history. This systematic review identified which marine byproducts have been most extensively studied between 2020 and 2025, with emphasis on their composition, valorisation, and suitability for tracing their geographic origin. Following the PRISMA protocol, 6443 publications were initially retrieved, of which 96 peer-reviewed studies were included for data extraction and analysis. The five most frequently investigated byproducts—skin, bones, scales, shells, and roe—were identified as rich sources of proteins (collagen and gelatin), minerals (hydroxyapatite and calcium carbonate), polysaccharides (chitin), lipids (notably polyunsaturated fatty acids (PUFAs), docosahexaenoic acid (DHA) and eicosapentaenoic acid (EPA)), and vitamin B12. Collagen properties, particularly imino acid content, hydroxylation degree, crosslinking density, and thermal stability, correlate more strongly with environmental temperature than taxonomy, supporting their potential as markers for tracing geographic origin. The mineral fractions, dominated by hydroxyapatite in bones and scales, or calcium carbonate in shells, provided complementary inorganic fingerprints based on calcium-to-phosphorus ratios, carbonate substitution, trace element composition, and thermal analyses. While the lipid profile alone could not completely discriminate fish roe, proteomic techniques, such as MALDI-TOF MS, make it possible to reliably identify species. Collectively, these byproducts offer complementary organic and inorganic markers that support integrated strategies that allow tracing their origin and fostering their sustainable valorisation, overcoming a key technical bottleneck for their use. However, their large-scale conversion into market-ready products remains limited by technical complexity, process variability, and cost-related constraints. Full article
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23 pages, 2472 KB  
Article
Ghedhabna Beach (Tunisia) as a Newly Confirmed Nesting Site for Loggerhead Sea Turtles in the Central Mediterranean: Implications for Conservation
by Olfa Chaieb, Ahmed Ghedira, Menel Kraiem, Ahmed Souki, Amjed Khiareddine, Malek Chaarana, Lobna Ben Nakhla and Hechmi Missaoui
Sustainability 2026, 18(6), 2765; https://doi.org/10.3390/su18062765 - 12 Mar 2026
Viewed by 1083
Abstract
Endangered sea turtles are highly vulnerable to environmental pressures and human activities, resulting in major shifts in their population and distribution. Identifying and managing new nesting sites are essential for their reproduction and survival. This study identifies the presence of an unrecorded loggerhead [...] Read more.
Endangered sea turtles are highly vulnerable to environmental pressures and human activities, resulting in major shifts in their population and distribution. Identifying and managing new nesting sites are essential for their reproduction and survival. This study identifies the presence of an unrecorded loggerhead turtle (Caretta caretta) nesting population at Ghedhabna Beach in Tunisia. A mixed-methods study based on intensive field monitoring over three consecutive nesting seasons (2023–2025) and interviews with 120 local residents was conducted to assess reproductive parameters and community perceptions of sea turtles. An annual mean of 39.33 ± 12.56 nests (range 30–54) and a mean nesting density of 3.93 ± 1.29 nests km−1yr−1 were recorded, highlighting Ghedhabna as the second most important loggerhead nesting site in Tunisia. Incubation durations suggested a potential male-skewed hatchling production, a key factor for the Mediterranean population sustainability under climate warming. The interviews revealed a history of consistent nesting activity in the area and a limited public awareness. The main threats to nesting success include marine debris, uncontrolled beach activities, and predation by the ghost crab (Ocypode cursor). The mixed ecological and social approaches highlighted the urgent need to develop sustainable conservation measures in this zone, based on integrated management, to mitigate existing pressures and ensure population resilience. Full article
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19 pages, 7656 KB  
Article
Gut Microbiome Signatures Across Migratory, Sedentary, and Aquaculture Ecotypes of Coilia nasus
by Xue Liu, Congping Ying, Fengjiao Ma, Yanping Yang and Kai Liu
Animals 2026, 16(5), 840; https://doi.org/10.3390/ani16050840 - 7 Mar 2026
Cited by 1 | Viewed by 770
Abstract
Coilia nasus, a typical species with migratory–sedentary polymorphism, shows different intestinal microbiota characteristics among its different ecotypes. This is attributed to differences in feeding habits and habitat environments (such as water temperature, salinity, etc.). This study constructed a database of intestinal microbiota [...] Read more.
Coilia nasus, a typical species with migratory–sedentary polymorphism, shows different intestinal microbiota characteristics among its different ecotypes. This is attributed to differences in feeding habits and habitat environments (such as water temperature, salinity, etc.). This study constructed a database of intestinal microbiota for three ecological types of C. nasus, namely migratory type (comprising marine populations and freshwater populations), sedentary type and aquaculture-reared type, through 16S rRNA amplicon sequencing technology. This study investigates the ecological mechanisms underlying microbiota differentiation, focusing on three key drivers: environmental selection, host nutritional metabolism requirements, and host life history strategies. The results showed that the core flora of C. nasus consisted of Firmicutes, Proteobacteria, and Actinobacteria. Both the depletion of microbial taxa and the enrichment of marine-adapted bacterial lineages—including Proteobacteria and Psychrobacter—are associated with elevated salinity in the migratory marine population of C. nasus. In contrast, the elevated relative abundance of Actinobacteria in aquaculture-reared C. nasus is likely attributable to dietary supplementation with protein- and lipid-rich artificial feed. Functional correlation analysis holds promise for partially predicting the microbiota’s metabolic functional succession patterns. The dominance of Pseudomonas_E in the migratory freshwater population is consistent with its well-documented physiological versatility and adaptive capacity in dynamically fluctuating aquatic habitats. The elevated abundance of Cyanobacteria in the sedentary population C. nasus coincides with the water bloom in their habitat, suggesting that the structure of the microbiota may serve as a novel biomarker for indicating the ecosystem. In conclusion, this study identifies potential molecular markers for tracing genetic resources and distinguishing ecological types of C. nasus, while establishing a theoretical foundation for elucidating the co-evolutionary dynamics between fish hosts and their associated microbiota—and thereby informing both conservation strategies for wild populations and microbiota-informed aquaculture practices. Full article
(This article belongs to the Special Issue Gut Microbiota in Aquatic Animals)
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16 pages, 1624 KB  
Review
The Impact of Nanoplastics on the Quality of Fish Sperm: A Review
by Hayam Djafar, Saira Naz, Maria Montserrat Rivera Del Alamo, Juan Carlos Balasch and Mariana Teles
Animals 2026, 16(1), 94; https://doi.org/10.3390/ani16010094 - 29 Dec 2025
Viewed by 2237
Abstract
Pollution in aquatic ecosystems is intensifying under the combined pressures of climate change and anthropogenic contaminants, with nanoplastics (NPs) emerging as a critical threat to fish reproduction. Although extensive research has demonstrated the physiological impacts of NPs, their direct effects on sperm quality [...] Read more.
Pollution in aquatic ecosystems is intensifying under the combined pressures of climate change and anthropogenic contaminants, with nanoplastics (NPs) emerging as a critical threat to fish reproduction. Although extensive research has demonstrated the physiological impacts of NPs, their direct effects on sperm quality and functionality remain poorly characterized. This review synthesizes evidence from original research articles that specifically examined NPs’ impacts on fish sperm quality and related reproductive endpoints. The findings reveal that NPs consistently impair sperm motility, viability, and fertilization capacity, while inducing oxidative stress, DNA damage, mitochondrial dysfunction, and endocrine disruption. Particle size, surface chemistry, and exposure route were identified as key determinants of toxicity, with direct sperm exposure causing immediate impairments and chronic or maternal transfer exposures leading to systemic and transgenerational effects. Notably, several studies reported reduced offspring survival, altered development, and disrupted gene expression, highlighting the intergenerational risks of NPs contamination. Despite these advances, significant knowledge gaps remain, including limited research on marine wild and cultured fish species, the effects of diverse life histories on NPs toxicity, environmentally relevant exposure levels, and the combined effects of NPs with other stressors. Overall, this review underscores that fish sperm are highly sensitive to NPs pollution, with consequences that extend across generations and threaten population stability, calling for urgent mechanistic and ecologically realistic investigations. Full article
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19 pages, 7646 KB  
Article
Contrasting Evolutionary Trajectories: Differential Population Dynamics and Gene Flow Patterns in Sympatric Halimeda discoidea and Halimeda macroloba
by Yichao Tong, Wei Liu, Yuqing Sun, Jinlin Liu and Qunhui Yang
Biology 2025, 14(12), 1782; https://doi.org/10.3390/biology14121782 - 13 Dec 2025
Viewed by 851
Abstract
Calcareous tropical green macroalgae of the genus Halimeda are key reef-builders, yet the drivers of their diversification and population dynamics remain poorly understood. This study analyzed the species diversity of Halimeda in the Xisha (Paracel) Islands based on tufA gene sequences, focusing [...] Read more.
Calcareous tropical green macroalgae of the genus Halimeda are key reef-builders, yet the drivers of their diversification and population dynamics remain poorly understood. This study analyzed the species diversity of Halimeda in the Xisha (Paracel) Islands based on tufA gene sequences, focusing on evaluating the genetic diversity, population structure, and historical dynamics of two widespread species—Halimeda discoidea and Halimeda macroloba. The results indicate new records of Halimeda cylindracea and Halimeda cf. stuposa in the Xisha (Paracel) Islands. More importantly, H. discoidea and H. macroloba exhibited significantly different evolutionary histories. Specifically, H. discoidea showed a highly fragmented population structure, restricted gene flow, and a multimodal mismatch distribution, suggesting a complex historical process or long-term stability. In contrast, H. macroloba exhibited lower population differentiation, extensive gene flow, and non-significant neutrality test results, indicating long-term demographic stability without recent, drastic population events. Further validation based on gene flow analysis and divergence time estimation revealed that the lineage divergence of H. discoidea is older, while H. macroloba represents a lineage with a relatively younger evolutionary origin restricted to the Indo-Pacific region. This striking dichotomy clearly illustrates the interplay between intrinsic species-specific traits (e.g., dispersal capacity) and extrinsic historical factors (e.g., paleo-oceanographic events), leading to contrasting evolutionary outcomes among widespread marine taxa. By elucidating how differing evolutionary histories influence patterns of genetic diversity, this study provides a predictive framework for evaluating the resilience and guiding conservation priorities for critical marine calcifiers in the context of rapid environmental change. Full article
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21 pages, 3264 KB  
Article
Evaluation of Tuned Mass Damper for Offshore Wind Turbine Using Coupled Fatigue Analysis Method
by Yongqing Lai, Xinyun Wu, Bin Wang, Yu Zhang, Wenhua Wang and Xin Li
Energies 2025, 18(18), 4788; https://doi.org/10.3390/en18184788 - 9 Sep 2025
Cited by 4 | Viewed by 1507
Abstract
This study proposes an integrated fatigue life assessment methodology to accurately evaluate the time-domain evolution in tubular joint fatigue damage in offshore wind turbine (OWT) jacket structures under long-term combined wind and wave actions. A customized post-processing module was developed via secondary development [...] Read more.
This study proposes an integrated fatigue life assessment methodology to accurately evaluate the time-domain evolution in tubular joint fatigue damage in offshore wind turbine (OWT) jacket structures under long-term combined wind and wave actions. A customized post-processing module was developed via secondary development on the MLife platform, employing a conditional probability distribution model to perform joint probabilistic modeling of measured marine environmental data, thereby establishing a long-term joint wind–wave distribution database. The reconstruction of hotspot stress time histories at the tubular joints was achieved through a hybrid analytical–numerical approach, integrating analytical formulations of nominal stress with a multi-axial stress concentration factor (SCF) matrix. Long-term fatigue damage assessment was implemented using the Palmgren–Miner linear cumulative damage hypothesis, where a weighted summation methodology based on joint wind–wave probability distributions rigorously accounted for the statistical contributions of individual design load cases. An ultimate bearing capacity analysis was also conducted based on S-N fatigue endurance characteristic curves. This research specifically investigates the influence mechanisms of tuned mass dampers (TMDs) on the time-domain-coupled fatigue performance of tubular joints subjected to long-term combined wind and wave loads. Numerical simulations demonstrate that parametrically optimized TMD systems significantly enhance the fatigue life metrics of critical joints in jacket structures. Full article
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22 pages, 5791 KB  
Review
Review of Age Estimation Techniques and Growth Models for Shelled Organisms in Marine Animal Forests
by Ömerhan Dürrani, Çağdaş Can Cengiz, Halyna Gabrielczak, Esra Özcan, Madona Varshanidze, Genuario Belmonte and Kadir Seyhan
J. Mar. Sci. Eng. 2025, 13(9), 1693; https://doi.org/10.3390/jmse13091693 - 2 Sep 2025
Viewed by 1791
Abstract
Marine shelled organisms exhibit diverse growth strategies shaped by species-specific traits and environmental conditions that critically influence their ecological roles, particularly within Marine Animal Forests (MAF), which are structurally complex habitats and biodiversity-rich habitats. This review compiles and compares empirical growth data for [...] Read more.
Marine shelled organisms exhibit diverse growth strategies shaped by species-specific traits and environmental conditions that critically influence their ecological roles, particularly within Marine Animal Forests (MAF), which are structurally complex habitats and biodiversity-rich habitats. This review compiles and compares empirical growth data for 16 bivalve and gastropod species across seven families, classified as full MAF contributors (Pinna nobilis, Flexopecten glaber, Pecten maximus, and Placopecten magellanicus), partial MAF contributors (Cerastoderma edule, C. glaucum, Chamelea gallina, Ruditapes philippinarum, Mercenaria mercenaria, Panopea generosa, Anadara kagoshimensis, A. inaequivalvis, and Tegillarca granosa), and ecologically relevant non-MAF species (Buccinum undatum, Hexaplex trunculus, and Rapana venosa). Age estimation methods included direct techniques, such as shell growth ring and opercular annulus analysis, alongside indirect approaches, such as length-frequency analysis, stable isotope profiling, and mark–recapture studies. Growth trajectories were modelled using von Bertalanffy growth function (VBGF) parameters to estimate the shell size from ages 1 to 4. Based on these estimates, species were categorised into slow, moderate, fast, and exceptional growth groups. These classifications were further explored through hierarchical clustering that grouped species according to their VBGF-derived growth values, revealing consistent and contrasting life history strategies. This comparative analysis should enhance the understanding of molluscan growth dynamics and support the conservation and management of MAF-associated ecosystems by informing restoration planning, guiding species selection, and contributing to evidence-based policy development. Full article
(This article belongs to the Section Marine Biology)
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19 pages, 594 KB  
Review
Environmental and Public Health Impacts of Mining Tailings in Chañaral, Chile: A Narrative Case-Based Review
by Sandra Cortés, Pablo González, Cinthya Leiva, Yendry Vargas, Alejandra Vega and Pablo Pastén
Sustainability 2025, 17(17), 7732; https://doi.org/10.3390/su17177732 - 27 Aug 2025
Cited by 5 | Viewed by 5195
Abstract
This narrative case-based review describes the environmental and public health impacts in Chañaral, a town in northern Chile affected by the accumulation of copper mining tailings for the past 80 years. The review included 34 scientific articles published between 1978 and 2025. The [...] Read more.
This narrative case-based review describes the environmental and public health impacts in Chañaral, a town in northern Chile affected by the accumulation of copper mining tailings for the past 80 years. The review included 34 scientific articles published between 1978 and 2025. The keywords used were “mining tailings” and “Chañaral”, without year limits, and covering disciplines such as ecology, public health, environmental history, and territorial studies. The scientific evidence demonstrates the negative impacts on the ecosystem and the human population exposed to toxic metals and arsenic. Geomorphological and biogeochemical alterations have been found on the Chañaral coast, affecting marine biodiversity and water quality. In addition, epidemiological studies indicate exposure to toxic metals measured in street dust and urine, raising concerns on respiratory health in children and metabolic conditions in adults. According to the social sciences, the lack of environmental monitoring and human exposure data contributes to the high health risk perception in the population, posing the need to strengthen environmental monitoring, raise awareness on the risks of exposure to toxic metals, and promote mitigation and restoration strategies. These measures will contribute to sustainable conditions for the Chañaral community through the improvement of comprehensive public policies. Full article
(This article belongs to the Special Issue Sustainable Environmental Analysis of Soil and Water)
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