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            "title": "The influence of size, longevity and environmental temperature on mitochondrial DNA evolution in fishes",
            "creators": [
                {
                    "creatorType": "author",
                    "firstName": "Sabrina",
                    "lastName": "Le Cam"
                },
                {
                    "creatorType": "author",
                    "firstName": "Mathieu",
                    "lastName": "Mortz"
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                {
                    "creatorType": "author",
                    "firstName": "Alexis",
                    "lastName": "Gagnier-Michel"
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                    "creatorType": "author",
                    "firstName": "France",
                    "lastName": "Dufresne"
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                    "creatorType": "author",
                    "firstName": "Pierre U.",
                    "lastName": "Blier"
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            "abstractNote": "Abstract\n            The link between longevity and mitochondrial function has been documented; therefore, we suspect that the evolution of mitochondrial DNA (mtDNA) is linked to the evolution of longevity. We selected 128 fish species with a wide range of longevity and inhabiting habitats with differing temperatures and examined their association with dN/dS ratios of mtDNA genes. Our findings (i) rule out environmental temperature as a primary driver of longevity, (ii) confirm the negative relationship between synonymous substitution rate and longevity for four of the mitochondrial protein coding genes, (iii) reveal a correlation of the fish body length at maturity with the dN/dS ratio for ATP6, ND1 and ND4, and (iv) highlight for the first time to our knowledge, a link between high conservation of the three cytochrome c oxidase (COX) genes and adaptation to temperatures in fishes. By extending conclusions drawn from mtDNA to individual genes, our study opens new avenues for exploring the ageing process. Moreover, the specific link between the evolution of COX genes and habitat temperature confirms the importance of complex IV in temperature adaptation. Our findings also suggest a link between dN/dS in complex I genes and longevity, highlighting the need to examine the functional association between their encoded peptides and lifespan.\n            This article is part of the theme issue ‘Evolutionary genetics of mitochondria: on diverse and common evolutionary constraints across eukarya’.",
            "publicationTitle": "Philosophical Transactions B",
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            "date": "2026-04-02",
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            "pages": "20250085",
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            "DOI": "10.1098/rstb.2025.0085",
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            "url": "https://royalsocietypublishing.org/rstb/article/381/1947/20250085/481189/The-influence-of-size-longevity-and-environmental",
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            "creatorSummary": "Goldenberg et al.",
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            "version": 16761,
            "itemType": "journalArticle",
            "title": "Nutrient and light availability control food webs and fish larvae in the Peruvian upwelling system",
            "creators": [
                {
                    "creatorType": "author",
                    "firstName": "Silvan Urs",
                    "lastName": "Goldenberg"
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                {
                    "creatorType": "author",
                    "firstName": "Michael",
                    "lastName": "Sswat"
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                {
                    "creatorType": "author",
                    "firstName": "Antonia",
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                    "firstName": "Claudia",
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                    "creatorType": "author",
                    "firstName": "Fanny",
                    "lastName": "Rioual"
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                    "creatorType": "author",
                    "firstName": "Scott",
                    "lastName": "Dorssers"
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                    "creatorType": "author",
                    "firstName": "Veit",
                    "lastName": "Daussmann"
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                {
                    "creatorType": "author",
                    "firstName": "Carsten",
                    "lastName": "Spisla"
                },
                {
                    "creatorType": "author",
                    "firstName": "Ulf",
                    "lastName": "Riebesell"
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            ],
            "abstractNote": "Abstract\n            \n              Upwelling ecosystems sustain some of the world's most productive fisheries by supplying deep‐water nutrients to the sunlit ocean surface. Yet, how spatiotemporal variability in nutrient‐upwelling and light availability regulates trophic transfer to fish remains poorly understood. We investigated these dynamics in a 36‐d mesocosm experiment off Peru, using plankton food webs with fish larvae—including Peruvian anchovy (\n              Engraulis ringens\n              )—as top consumers. Nutrient‐upwelling enhanced fish larval growth and survival by stimulating primary production. However, despite shortening food webs and promoting diatom‐based pathways, it did not improve food web efficiency from phytoplankton via zooplankton to fish. Surprisingly, fish also benefited from reduced light availability, even though it lowered primary production and lengthened food webs. This counterintuitive result was driven by higher food web efficiency under light limitation, likely mediated by a more nutritious food web base that boosted zooplankton prey. These effects were substantial: upwelling increased fish biomass by up to six‐fold, while light limitation tripled food web efficiency. Our study reveals how upwelling enhances the quantity and light limitation the quality of bottom‐up forcing—shaping fish recruitment success. Notably, food web efficiency was not dictated by food web length but by the match between resource availability and consumer needs. This allowed more complex food webs to outperform simpler ones. As climate change continues to alter physicochemical drivers in upwelling ecosystems, understanding these shifts in trophic transfer is key to adaptive fisheries management.",
            "publicationTitle": "Limnology and Oceanography",
            "publisher": "",
            "place": "",
            "date": "03/2026",
            "volume": "71",
            "issue": "3",
            "section": "",
            "partNumber": "",
            "partTitle": "",
            "pages": "e70349",
            "series": "",
            "seriesTitle": "",
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            "journalAbbreviation": "Limnology &amp; Oceanography",
            "DOI": "10.1002/lno.70349",
            "citationKey": "",
            "url": "https://aslopubs.onlinelibrary.wiley.com/doi/10.1002/lno.70349",
            "accessDate": "2026-04-13T09:17:46Z",
            "PMID": "",
            "PMCID": "",
            "ISSN": "0024-3590, 1939-5590",
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            "shortTitle": "",
            "language": "en",
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            "callNumber": "1.22",
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    {
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            "creatorSummary": "Ndiaye et al.",
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        "data": {
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            "version": 16760,
            "itemType": "journalArticle",
            "title": "Epifaunal Communities Associated with Macroalgae: The Case of the Cap-Vert Peninsula (Senegal, Northwest Africa)",
            "creators": [
                {
                    "creatorType": "author",
                    "firstName": "Ibrahima",
                    "lastName": "Ndiaye"
                },
                {
                    "creatorType": "author",
                    "firstName": "Mamie Souadou",
                    "lastName": "Diop"
                },
                {
                    "creatorType": "author",
                    "firstName": "Ismaïla",
                    "lastName": "Ndour"
                },
                {
                    "creatorType": "author",
                    "firstName": "Youssouph",
                    "lastName": "Diatta"
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                {
                    "creatorType": "author",
                    "firstName": "Waly Ndianco",
                    "lastName": "Ndiaye"
                },
                {
                    "creatorType": "author",
                    "firstName": "Patrice",
                    "lastName": "Brehmer"
                }
            ],
            "abstractNote": "This study, conducted on the Cap-Vert peninsula (Dakar, Senegal), examines the epifaunal communities associated with macroalgae, revealing significant variations depending on the species of algae. In 2023 (in situ samples), amphipods dominated most macroalgae, particularly Coralina officinalis (29.40%) (Rhodophyceae), Chlorophyceae (30.38%), and Codium sp. (29.38%) (Chlorophyceae). In 2022, copepods (76–92%) were most abundant on Sargassum spp. and Ulva spp., which had washed up on the beach. A significant link between epifaunal abundance and macroalgae species highlighted their ecological interdependence. These findings are of relevant interest for West Africa’s blue economy, where the growing exploitation of wild macroalgae could disrupt these ecosystems. Sustainable management must take into account epifaunal species, particularly those found on structurally important macroalgae (e.g., Corallina sp., Codium sp.). The study recommends including macroalgae-epifauna associations in biodiversity inventories, particularly in marine protected areas, and continuing research on influencing factors (e.g., algal morphology, environmental conditions). Mass strandings of Sargassum spp. and Ulva spp. can cause mortality in marine larvae and eggs, leading to a local reduction in recruitment. Future research integrating these conclusions could allow a more detailed analysis of the epifauna on macroalgae. Ecosystem approach is essential to strike a balance between economic development and biodiversity conservation.",
            "publicationTitle": "Diversity",
            "publisher": "",
            "place": "",
            "date": "2026-02-25",
            "volume": "18",
            "issue": "3",
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            "partNumber": "",
            "partTitle": "",
            "pages": "133",
            "series": "",
            "seriesTitle": "",
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            "journalAbbreviation": "Diversity",
            "DOI": "10.3390/d18030133",
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            "url": "https://www.mdpi.com/1424-2818/18/3/133",
            "accessDate": "2026-04-13T09:12:33Z",
            "PMID": "",
            "PMCID": "",
            "ISSN": "1424-2818",
            "archive": "",
            "archiveLocation": "",
            "shortTitle": "Epifaunal Communities Associated with Macroalgae",
            "language": "en",
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            "callNumber": "0.61",
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                    "tag": "DISCOVERY"
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            "creatorSummary": "Lagunes et al.",
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            "version": 16759,
            "itemType": "journalArticle",
            "title": "From calibration to identifiability analysis: Using a multi-reserve DEB model to understand holopelagic Sargassum spp. growth",
            "creators": [
                {
                    "creatorType": "author",
                    "firstName": "Maria-Jose",
                    "lastName": "Lagunes"
                },
                {
                    "creatorType": "author",
                    "firstName": "Goncalo M.",
                    "lastName": "Marques"
                },
                {
                    "creatorType": "author",
                    "firstName": "Evelyn R.",
                    "lastName": "Salas-Acosta"
                },
                {
                    "creatorType": "author",
                    "firstName": "Roman M.",
                    "lastName": "Vasquez-Elizondo"
                },
                {
                    "creatorType": "author",
                    "firstName": "Thierry",
                    "lastName": "Thibaut"
                },
                {
                    "creatorType": "author",
                    "firstName": "Daniel",
                    "lastName": "Robledo"
                },
                {
                    "creatorType": "author",
                    "firstName": "Solene",
                    "lastName": "Connan"
                },
                {
                    "creatorType": "author",
                    "firstName": "Valerie",
                    "lastName": "Stiger-Pouvreau"
                },
                {
                    "creatorType": "author",
                    "firstName": "Leo",
                    "lastName": "Berline"
                },
                {
                    "creatorType": "author",
                    "firstName": "Christophe",
                    "lastName": "Lett"
                },
                {
                    "creatorType": "author",
                    "firstName": "Laure",
                    "lastName": "Pecquerie"
                }
            ],
            "abstractNote": "Unprecedented quantities of the brown floating macroalgae Sargassum have been recorded in the tropical North Atlantic Ocean. However, the environmental factors affecting holopelagic Sargassum spp. growth and survival remain poorly understood. Here, we developed a multi-reserve DEB model for Sargassum spp. to link environmental conditions (temperature, nutrients, and light) to the organism physiology. In the context of DEB theory, estimating a multi-reserve model parameters can be particularly challenging and strongly relies on the availability of the datasets with information about physiological processes. We conducted a literature review of Sargassum spp. physiological responses, and although some data have been reported, experimental datasets on some key physiological processes are still relatively scarce. From the available data we performed an estimation of the DEB model parameters. We then followed a \"virtual ecologist\" approach to create a framework linking modelers and empiricists, to analyze which experiments that are most needed to reduce parameter uncertainty. We tested parameter identifiability by creating \"virtual\" observed data and we analyzed the type of datasets that reduce the uncertainty on parameter estimates, thus increasing their identifiability and the prediction power of the algae model. Our analysis showed to which extent new experiments on nutrient uptake and nutrient limitation would reduce the uncertainty of key model parameters and improve our understanding of holopelagic Sargassum spp. physiology. More generally, our study demonstrates how the use of DEB models, coupled with parameter identifiability analyses, can help design most needed experiments thereby contributing to an integrated approach between experiments and modeling.",
            "publicationTitle": "Ecological Modelling",
            "publisher": "Elsevier",
            "place": "Amsterdam",
            "date": "JUN 2026",
            "volume": "516",
            "issue": "",
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            "partNumber": "",
            "partTitle": "",
            "pages": "111578",
            "series": "",
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            "journalAbbreviation": "Ecol. Model.",
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            "accessDate": "2026-04-13T09:06:57Z",
            "PMID": "",
            "PMCID": "",
            "ISSN": "0304-3800, 1872-7026",
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            "shortTitle": "From calibration to identifiability analysis",
            "language": "English",
            "libraryCatalog": "Clarivate Analytics Web of Science",
            "callNumber": "0.89",
            "rights": "",
            "extra": "Num Pages: 15\nWeb of Science ID: WOS:001731120600001",
            "tags": [
                {
                    "tag": "ACL"
                },
                {
                    "tag": "BIOMASS",
                    "type": 1
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                {
                    "tag": "Bioenergetics",
                    "type": 1
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                    "firstName": "Sol Dourdin",
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                    "creatorType": "author",
                    "firstName": "Minet",
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                    "firstName": "Pante",
                    "lastName": "Eric"
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                    "firstName": "Lacoue-Labarthe",
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            "abstractNote": "The cuttlefish Sepia officinalis is a precious model in behavioural and neurobiology studies. It is currently facing combined environmental changes related to the anthropogenic global change. However, genomic resources available to support investigations tackling this issue are still scarce. Therefore, we present two annotated de novo transcriptome assemblies from recently hatched (whole body) and one-month old (head) Sepia officinalis juveniles. Both assemblies rely on an important read depth validated by a pseudo-rarefaction analysis, and gathered several individuals from various metal and pCO2 exposure conditions. After redundancy reduction, assemblies from newly hatched and one-month-old individuals comprised 230,672 and 370,613 transcripts with 35,590 and 44,233 putative ORFs, respectively, and an annotation rate arounf 70%. Assemblies were compared to each other, revealing age-specific transcriptomic landscapes. These two assemblies constitute highly valuable genomic resources complementing reference genome assembly and facilitating the investigation of transcriptomic endpoints in environmental studies considering coleoid cephalopods.",
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                    "firstName": "Julianna L.",
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                    "firstName": "Leandro Nole",
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            "title": "Influence of light intensity on the toxicity of herbicides, alone or in mixture, to freshwater phytoplankton",
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                    "firstName": "Juan",
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            "abstractNote": "Light intensity directly affects phytoplankton and can alter the toxicity of phytotoxic pollutants present in natural water bodies. Light fluctuation in aquatic ecosystems often occurs as a function of water turbidity, water movement, cloud cover, and seasonality. Atrazine and simazine are commonly used herbicides that inhibit photosynthesis, posing significant risks to aquatic primary producers, and may be found simultaneously in aquatic ecosystems. The interactions between light and herbicide mixtures on phytoplankton growth and physiological state are poorly understood. Therefore, we addressed the toxicity of the herbicides, atrazine and simazine (individually and mixed), on the growth and photosynthetic activity of three freshwater phytoplankton under three light intensities. We found that the toxic effects of single and mixed herbicides are species-specific and significantly modulated by light intensity, with synergistic effects observed for herbicide mixtures under high light conditions. Atrazine and simazine (individually and mixed) toxicities on photosynthesis were greater for the three species grown under low light than under very low light. However, high-light adapted strains of M. aeruginosa were less sensitive to single and mixed herbicides than those adapted to low- and very low-light conditions. Under low- and high-light conditions, the photoprotective ability was extremely sensitive to the inhibitory effects of atrazine and simazine, individually and when mixed. Understanding these interactions is important because microalgae form the base of aquatic food webs and their impairment can have cascading effects on ecosystems. These findings underscore the importance of considering multiple environmental stressors in assessing the ecological risks of herbicides, highlighting potential impacts on aquatic primary productivity.",
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            "abstractNote": "Marine foundation species play a critical role in shaping seascapes and supporting biodiversity through their physical structure and biological activity. However, global changes can alter foundation species and subsequently induce profound changes in ecosystem functions and integrity. To understand better how foundation species influence biodiversity, we first conducted a systematic review of 311 articles that either compared biodiversity metrics associated with foundation species or examined relationships between biodiversity and foundation species traits (at the individual or habitat scale). A subsequent meta-analysis on a subset of suitable articles showed that foundation species generally enhance species richness by an average of 72%, although the strength and nature of this effect vary across scales and taxa. To understand these variations better, we synthesised the range of traits associated with foundation species and how these relate to various diversity metrics. While many traits are measured at both individual and habitat scales, inconsistencies across studies and foundation species groups prevent a formal assessment of functional trade-offs across marine foundation species. Despite high variability in trait-richness relationships, both common (e.g. density) and more specific (e.g. interstitial space) traits can serve as reliable proxies for species richness when capturing facilitative processes at the relevant scale for the response community. To reconcile this diversity of traits, we classify foundation species traits into 26 standardised categories, which constitutes a valuable framework to consolidate the interoperability of future research on the effects of foundation species on biodiversity. This classification and the associated database on foundation species-biodiversity relationships set a baseline for a comprehensive assessment of how multiple foundation species shape heterogeneous seascapes, which is essential for predicting the effects of habitat alteration or restoration on coastal biodiversity.",
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            "abstractNote": "The Bay of Brest (BB) is a macro-tidal estuarine environment that has been exposed to strong anthropogenic pressures over the past few decades, especially since the Second World War. This makes the BB an ideal site for studying coastal ecosystem transformations since the Industrial Revolution. We analysed five sediment cores collected in two key BB areas with varying exposure to marine hydrodynamic processes: i) the Elorn sector (3 cores) and ii) the Bay of Daoulas (2 cores) in the inner BB, close to the mouth of the Daoulas river. Our study used palynological (pollen and dinoflagellate cysts) and benthic foraminiferal assemblages, sedimentological data, and elemental geochemistry, at a very fine temporal resolution (2 to 16-year resolution). Working at a local spatial scale reveals robust correlations between the different driving forces and environmental changes over the last 150 years. Statistical analyses of these sedimentological and paleoecological time series reveal major breakpoints, specifically four key threshold periods: 1925-1938, 1960-1967, 1980-1987, and 2005, which are essential for understanding temporal changes in protist communities and the evolution of BB landscapes over this time period. Combining these findings with a reanalysis of regional precipitation patterns back to 1850, nutrient concentration data, and historical accounts of land-use practices, enables us to identify the main drivers of coastal ecosystem transformation. Our findings emphasize the strong influence of agricultural practices on trophic changes and the decline in the BB water quality, in agreement with coastal observatory series showing a notable increase in toxic algal blooms since the 1980s.",
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            "creatorSummary": "Erpenbeck et al.",
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        "data": {
            "key": "UELBL3YG",
            "version": 16744,
            "itemType": "journalArticle",
            "title": "Barcoding-Inferred Biodiversity of Shallow-Water Indo-Pacific Demosponges",
            "creators": [
                {
                    "creatorType": "author",
                    "firstName": "Dirk",
                    "lastName": "Erpenbeck"
                },
                {
                    "creatorType": "author",
                    "firstName": "Adrian",
                    "lastName": "Galitz"
                },
                {
                    "creatorType": "author",
                    "firstName": "Michael L.",
                    "lastName": "Berumen"
                },
                {
                    "creatorType": "author",
                    "firstName": "Gabriele",
                    "lastName": "Buttner"
                },
                {
                    "creatorType": "author",
                    "firstName": "Cecile",
                    "lastName": "Debitus"
                },
                {
                    "creatorType": "author",
                    "firstName": "Moritz",
                    "lastName": "Dirnberger"
                },
                {
                    "creatorType": "author",
                    "firstName": "Merrick",
                    "lastName": "Ekins"
                },
                {
                    "creatorType": "author",
                    "firstName": "Kathryn",
                    "lastName": "Hall"
                },
                {
                    "creatorType": "author",
                    "firstName": "Leonard",
                    "lastName": "Namuth"
                },
                {
                    "creatorType": "author",
                    "firstName": "Sylvain",
                    "lastName": "Petek"
                },
                {
                    "creatorType": "author",
                    "firstName": "Neda",
                    "lastName": "Rahnamae"
                },
                {
                    "creatorType": "author",
                    "firstName": "Maggie M.",
                    "lastName": "Reddy"
                },
                {
                    "creatorType": "author",
                    "firstName": "Daniela",
                    "lastName": "Rettenberger"
                },
                {
                    "creatorType": "author",
                    "firstName": "Stefanie R.",
                    "lastName": "Ries"
                },
                {
                    "creatorType": "author",
                    "firstName": "Simone",
                    "lastName": "Schatzle"
                },
                {
                    "creatorType": "author",
                    "firstName": "Christine H. L.",
                    "lastName": "Schonberg"
                },
                {
                    "creatorType": "author",
                    "firstName": "Edwin",
                    "lastName": "Setiawan"
                },
                {
                    "creatorType": "author",
                    "firstName": "Joelle",
                    "lastName": "Van Der Sprong"
                },
                {
                    "creatorType": "author",
                    "firstName": "Olivier P.",
                    "lastName": "Thomas"
                },
                {
                    "creatorType": "author",
                    "firstName": "Vani",
                    "lastName": "Tirumalasetty"
                },
                {
                    "creatorType": "author",
                    "firstName": "Nicole J.",
                    "lastName": "De Voogd"
                },
                {
                    "creatorType": "author",
                    "firstName": "Oliver",
                    "lastName": "Voigt"
                },
                {
                    "creatorType": "author",
                    "firstName": "John N. A.",
                    "lastName": "Hooper"
                },
                {
                    "creatorType": "author",
                    "firstName": "Gert",
                    "lastName": "Worheide"
                }
            ],
            "abstractNote": "Aim The Indo-Pacific is the world's largest marine biogeographic region. It is characterised by different degrees of connectivity among its subregions and harbours the majority of demosponge species currently known to science. Comparisons between regional sponge faunas have been undertaken in the past, mostly based on morphological species identification. The Sponge Barcoding Project, in tandem with regional DNA taxonomy campaigns, provides one of the largest DNA-based taxonomic data collections from sponges of the Indo-Pacific. Here, we utilise the barcoding data in the most extensive molecular biodiversity study of sponges to date, which reveals patterns of shallow-water demosponge faunal connectivity, endemism and distribution in the Indo-Pacific with a level of resolution unavailable in prior morphology-based studies.Location Demosponge specimens in this study cover 13 marine provinces (MPs) of the Indo-Pacific.Methods We classified demosponge barcodes from 1910 sponge samples into 701 molecular operational taxonomic units (MOTUs) using 28S rRNA. MOTU composition of the MPs was compared based on Jaccard and S & oslash;renson dissimilarities and other biodiversity indices.Results Our data corroborated high endemism in MPs (up to 84.1% endemic MOTUs). Faunal overlaps are between the Red Sea and the Gulf, which displayed small connectivity with other MPs in the Western Indian Ocean. The Western Indian Ocean is a strong faunistic boundary to the Central Indo-Pacific, to which the Polynesian sponge faunas were comparatively isolated as well.Main Conclusions Our data corroborate case studies on sponges that generally reject the presence of cosmopolitan or otherwise widespread sponge species, instead revealing high levels of regional endemism. This is consistent with similar observations and hypotheses in other marine invertebrates, and highlights the need for close regional monitoring to identify biodiversity changes. Connectivity among Indo-Pacific MPs differs for demosponges in many aspects from that of other marine taxa, hypothetically due to their shorter pelagic larval phase.",
            "publicationTitle": "Journal of Biogeography",
            "publisher": "Wiley",
            "place": "Hoboken",
            "date": "MAR 16 2026",
            "volume": "53",
            "issue": "3",
            "section": "",
            "partNumber": "",
            "partTitle": "",
            "pages": "e70171",
            "series": "",
            "seriesTitle": "",
            "seriesText": "",
            "journalAbbreviation": "J. Biogeogr.",
            "DOI": "10.1111/jbi.70171",
            "citationKey": "",
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            "accessDate": "2026-03-23T12:24:59Z",
            "PMID": "",
            "PMCID": "",
            "ISSN": "0305-0270, 1365-2699",
            "archive": "",
            "archiveLocation": "",
            "shortTitle": "",
            "language": "English",
            "libraryCatalog": "Clarivate Analytics Web of Science",
            "callNumber": "0.95",
            "rights": "",
            "extra": "Num Pages: 13\nWeb of Science ID: WOS:001715158100001",
            "tags": [
                {
                    "tag": "ACL"
                },
                {
                    "tag": "ARCHIPELAGO",
                    "type": 1
                },
                {
                    "tag": "BETA-DIVERSITY",
                    "type": 1
                },
                {
                    "tag": "BIOGEOGRAPHY",
                    "type": 1
                },
                {
                    "tag": "Demospongiae",
                    "type": 1
                },
                {
                    "tag": "IF<5"
                },
                {
                    "tag": "IF=0.95"
                },
                {
                    "tag": "IRD"
                },
                {
                    "tag": "Indo-Pacific",
                    "type": 1
                },
                {
                    "tag": "MARINE SPONGES",
                    "type": 1
                },
                {
                    "tag": "Marine Province",
                    "type": 1
                },
                {
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                },
                {
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                },
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                {
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                },
                {
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                },
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                },
                {
                    "tag": "coral reefs",
                    "type": 1
                },
                {
                    "tag": "distribution",
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                {
                    "tag": "sponges",
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            ],
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            "dateAdded": "2026-03-23T12:26:58Z",
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            "creatorSummary": "Lugue et al.",
            "parsedDate": "2026-03-14",
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            "itemType": "journalArticle",
            "title": "Embryonic Hormetic Priming Modulates Later-Life Thermal Tolerance",
            "creators": [
                {
                    "creatorType": "author",
                    "firstName": "K.",
                    "lastName": "Lugue"
                },
                {
                    "creatorType": "author",
                    "firstName": "C. J.",
                    "lastName": "Monaco"
                },
                {
                    "creatorType": "author",
                    "firstName": "L.",
                    "lastName": "Benestan"
                },
                {
                    "creatorType": "author",
                    "firstName": "E.",
                    "lastName": "Vigouroux"
                },
                {
                    "creatorType": "author",
                    "firstName": "M.",
                    "lastName": "Sham Koua"
                },
                {
                    "creatorType": "author",
                    "firstName": "J.",
                    "lastName": "Vidal-dupiol"
                },
                {
                    "creatorType": "author",
                    "firstName": "G.",
                    "lastName": "Mitta"
                },
                {
                    "creatorType": "author",
                    "firstName": "J.",
                    "lastName": "Le Luyer"
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            ],
            "abstractNote": "Understanding the mechanisms explaining thermal tolerance variation is crucial for predicting the impact of climate change on ectotherms, especially those living near their upper thermal limits. Among the various forms of plasticity, developmental plasticity holds promise as an adaptive trait for aquatic organisms to buffer the negative effects of ocean warming; however, its underlying molecular mechanisms remain poorly understood. Here, we examine the capacity of two bi-parental progenies of the black-lip pearl oyster, Pinctada margaritifera, to modify their later-life thermal tolerance and performance through developmental thermal priming. Embryos (3-24 h post-fertilization) were incubated until hatching at either control (28 degrees C) or warm (32 degrees C; ecological extremes) temperatures, and raised 4 months under common conditions at 28 degrees C. Our results reveal family-specific effects of early-life thermal priming, significantly enhancing spat thermal tolerance in one family, while reducing it in the other. Main molecular pathways of heat stress response (at the sublethal temperature of 34 degrees C) were conserved across families and independent of the early-life priming treatment. Nevertheless, a network-preservation approach allowed further characterizing the subtle, nested environmental \"memory\" mediated through network reorganization, particularly in gene regulatory pathways involved in the Unfolding Protein Response (UPR). While this 2 & times; 2 factorial design may capture an oversimplification of the complex relationship between early environments and later phenotypes, our study emphasizes the need to refine and develop new well-tuned experimental protocols to hold out the promise of hormetic priming for ecological conservation and aquaculture improvement.",
            "publicationTitle": "Ecology and Evolution",
            "publisher": "Wiley",
            "place": "Hoboken",
            "date": "MAR 14 2026",
            "volume": "16",
            "issue": "3",
            "section": "",
            "partNumber": "",
            "partTitle": "",
            "pages": "e73139",
            "series": "",
            "seriesTitle": "",
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            "journalAbbreviation": "Ecol. Evol.",
            "DOI": "10.1002/ece3.73139",
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            "accessDate": "2026-03-23T12:18:23Z",
            "PMID": "",
            "PMCID": "",
            "ISSN": "2045-7758",
            "archive": "",
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            "shortTitle": "",
            "language": "English",
            "libraryCatalog": "Clarivate Analytics Web of Science",
            "callNumber": "0.65",
            "rights": "",
            "extra": "Num Pages: 17\nWeb of Science ID: WOS:001714183700001",
            "tags": [
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                    "tag": "ACCLIMATION",
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                },
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                    "tag": "ACL"
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                    "tag": "ADAPTATION",
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                    "tag": "ADAPTIVE SIGNIFICANCE",
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                },
                {
                    "tag": "CLIMATE-CHANGE",
                    "type": 1
                },
                {
                    "tag": "ENVIRONMENT",
                    "type": 1
                },
                {
                    "tag": "HEAT-SHOCK",
                    "type": 1
                },
                {
                    "tag": "IF<5"
                },
                {
                    "tag": "IF=0.65"
                },
                {
                    "tag": "Ifremer"
                },
                {
                    "tag": "PANORAMA"
                },
                {
                    "tag": "PEARL OYSTER",
                    "type": 1
                },
                {
                    "tag": "PINCTADA-MARGARITIFERA",
                    "type": 1
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                {
                    "tag": "PLASTICITY",
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                {
                    "tag": "RNA-seq",
                    "type": 1
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                {
                    "tag": "developmental plasticity",
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                {
                    "tag": "mollusks",
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                {
                    "tag": "thermal priming",
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                    "tag": "transcriptomics",
                    "type": 1
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            ],
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            "dateAdded": "2026-03-23T12:20:34Z",
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            "creatorSummary": "Zhang et al.",
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        "data": {
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            "version": 16742,
            "itemType": "journalArticle",
            "title": "Microbial membrane transporters reveal trace metal niche adaptation in distinct water masses of the Southern Ocean",
            "creators": [
                {
                    "creatorType": "author",
                    "firstName": "Rui",
                    "lastName": "Zhang"
                },
                {
                    "creatorType": "author",
                    "firstName": "Pavla",
                    "lastName": "Debeljak"
                },
                {
                    "creatorType": "author",
                    "firstName": "Sharvari Sunil",
                    "lastName": "Gadegaonkar"
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                    "creatorType": "author",
                    "firstName": "Corentin",
                    "lastName": "Baudet"
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                    "creatorType": "author",
                    "firstName": "Antoine",
                    "lastName": "Ringard"
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                    "creatorType": "author",
                    "firstName": "Stephane",
                    "lastName": "Blain"
                },
                {
                    "creatorType": "author",
                    "firstName": "Ingrid",
                    "lastName": "Obernosterer"
                }
            ],
            "abstractNote": "BackgroundTrace metals are co-factors for enzymes that are essential for microbial metabolism and the cycling of major elements. Membrane transporters allow microbes to sense and react to trace elements in the environment and to balance their uptake and export for the regulation of intracellular metal homeostasis. The acquisition and efflux of trace metals could lead to reciprocal feedbacks between microbes and the surrounding environment. Whether these processes vary among trace metals and across habitats is presently not known. We used membrane transporters into and out of the cell as indicators for the uptake and efflux of trace metals and provide a detailed picture of the distribution of the respective genes in distinct provinces in surface waters and in subsurface water masses across a transect in the Southern Indian Ocean.ResultsWe observed marked spatial and vertical patterns in normalized gene abundances of transporters of iron (Fe), manganese (Mn), nickel (Ni) and copper (Cu). Changes in gene abundances were specific to the type of transporter and trace metal, and pronounced differences between surface and specific water masses emerged. We found an enrichment in genes related to efflux and homeostasis of Fe, Ni and Cu in two water masses of the deep ocean that are North Atlantic Deep Water (NADW) and Lower Circumpolar Deep Water (LCDW). This pattern was observed on the community level and for metagenome-assembled genomes (MAGs) affiliated with Alteromonadaceae and Burkholderiaceae that were abundant in these two water masses.ConclusionsThe enrichment in trace metal efflux and resistance genes points to microbially mediated processes, exerted by homeostasis, with potential influence on the trace metal speciation and distribution in specific water masses in the deep ocean. The gene repertoire and distinct distribution pattern of the taxa identified as potential key players could reflect an adaptation to these old water masses with trace metals acting as selective driver.6eGbYp9i1LptG_pNuhjymdVideo AbstractConclusionsThe enrichment in trace metal efflux and resistance genes points to microbially mediated processes, exerted by homeostasis, with potential influence on the trace metal speciation and distribution in specific water masses in the deep ocean. The gene repertoire and distinct distribution pattern of the taxa identified as potential key players could reflect an adaptation to these old water masses with trace metals acting as selective driver.6eGbYp9i1LptG_pNuhjymdVideo Abstract",
            "publicationTitle": "Microbiome",
            "publisher": "BMC",
            "place": "London",
            "date": "FEB 10 2026",
            "volume": "14",
            "issue": "1",
            "section": "",
            "partNumber": "",
            "partTitle": "",
            "pages": "88",
            "series": "",
            "seriesTitle": "",
            "seriesText": "",
            "journalAbbreviation": "Microbiome",
            "DOI": "10.1186/s40168-025-02293-6",
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            "language": "English",
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            "abstractNote": "On October 24, 2024, an impressive fireball was visible over Austria. After the possible strewn field was calculated, the first sample of the Haag meteorite, with a mass of 8.76 g, was discovered on November 2, 2024, 8 days after the fireball event. Four more samples were found afterward putting the total sample mass at about 151 g. Short-lived radionuclides were measured shortly after recovery on a small sample, which was also used for almost all analyses presented here. Results confirm that the Haag meteorite derived from the bolide fireball event. Haag is a severely fragmented ordinary chondrite breccia and consists of typical equilibrated and recrystallized lithologies (LL4-6) as well as impact-related lithic clasts, such as dark, fine-grained impact breccias. Most fragments are highly recrystallized (type 6), but some show a well-preserved chondritic texture, which is of petrologic type 4 since the olivines are equilibrated. The olivines in the bulk rock have Fa contents of 29.5 ± 0.5 mol%, whereas the low-Ca pyroxenes have compositions of Fs23.9±1.4Wo1.6±0.7 with slightly variable Fs contents up to 28 mol%. However, the occurrence of type 3 fragments in other parts of the rock cannot completely be ruled out. Many clasts are moderately shocked (S4; C-S4). Using the fragment with the lowest degree of shock to determine the bulk rock's shock degree, Haag has an overall shock degree of S2 (C-S2). The LL chondrite classification is also supported by O isotope data, the results of bulk chemical analysis, and the physical properties of density and magnetic susceptibility. The nucleosynthetic Ti and Cr isotope data confirm that Haag is an ordinary chondrite, related to the noncarbonaceous (NC) meteorites. Haag does not contain detectable amounts of solar wind-implanted noble gases, and we rule out any substantial exposure at the direct surface of the parent body. Based on noble gases, Haag has an exposure age of 21–24 Ma and a pre-atmospheric meteoroid radius of 20–85 cm with a sample depth between 4 and 5 cm below the meteoroid surface, consistent with constraints from cosmogenic radionuclides. The soluble organic compositions of Haag are consistent with the profiles of the Stubenberg (LL6) breccia and show characteristics consistent with the complex shock, brecciation, and lithification history of the breccia. Haag and Stubenberg fell near each other (110 km away) within just 8 years. Since only 8.5% (about 110) of meteorite falls worldwide are LL chondrites, it is remarkable that two LL chondrites fell near each other in such a short time.",
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            "abstractNote": "South Africa's largest fishery is focused on small pelagic fish (SPF), initially sardine, then anchovy, then round herring. This study assessed the nutritional profiles of these species to assess their suitability for direct human consumption and to identify key factors influencing their composition. The nutritional profile of SPF dorsal fillet varied by species and fishing area, but was independent of fish size or maturity within the ranges studied. A 100 g serving of raw dorsal fillet from all three species meets the daily recommended intake of long-chain n-3 fatty acids (EPA + DHA), while also providing high levels of selenium, calcium, and zinc, nutrients often deficient in the South African diet. Round herring had the highest EPA + DHA content: at current catch levels, it alone could meet similar to 3 million people's yearly needs. Sardine had 1.5-fold more EPA + DHA in winter, particularly along the west coast. Anchovy contained twice the calcium of the others. Regarding safety, the levels of arsenic, cadmium, and lead were below safety thresholds for human consumption, suggesting a favorable risk-benefit balance. South African SPF could improve micronutrient intake of local populations but future research should assess their potential considering the whole fish, other nutrients and contaminants and cooking methods.",
            "publicationTitle": "Journal of Food Composition and Analysis",
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            "title": "Unraveling multifactorial risks in Pacific oyster mortality: a four-year study of environmental and age-related impacts",
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                    "firstName": "Elodie",
                    "lastName": "Fleury"
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                    "creatorType": "author",
                    "firstName": "Audrey M.",
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            "abstractNote": "The mortality of Pacific oysters Crassostrea gigas remains a persistent challenge for aquaculture, driven by complex interactions between environmental conditions, pathogen dynamics, and host factors. We monitored 96 sentinel oyster cohorts across 8 French sites over 4 yr (2014-2018) to assess age-specific mortality risks and environmental influences. Survival analyses and Cox hazard models confirmed that spat exhibit the highest mortality, while juveniles and adults demonstrate increased survival, reflecting age-related physiological resilience. Seawater temperature emerged as the strongest predictor of mortality, with risks increasing significantly between 16 and 24 degrees C, highlighting a critical temperature threshold. Wind speed and relative humidity also modulated survival, likely influencing pathogen dispersal and physiological stress. Importantly, the impact of these factors was neither constant nor always significant over time, emphasizing the need for non-proportional risk functions to accurately capture mortality dynamics. Over the monitoring period, no significant increase in spat survival was observed, suggesting that resistance to infectious agents in farmed oysters has not markedly improved under natural environmental conditions. In response, oyster farming practices have evolved to integrate mortality risks, notably by increasing spat input and adjusting rearing conditions. This study underscores the necessity of incorporating environmental and life-history parameters into predictive models for improved risk assessment. By providing long-term insights into mortality patterns, our findings support the development of sustainable management strategies to enhance oyster resilience in the face of climate change and evolving pathogen threats.",
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            "shortTitle": "Unraveling multifactorial risks in Pacific oyster mortality",
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            "title": "Prevalence of haemic neoplasia in cockles and cohabiting bivalve species on the western coast of France and the southern coast of Portugal",
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                    "creatorType": "author",
                    "firstName": "Alicia L.",
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                    "creatorType": "author",
                    "firstName": "Angele",
                    "lastName": "Moulin"
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                    "firstName": "Geo",
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                    "creatorType": "author",
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                    "firstName": "Alejandro",
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                    "firstName": "Ana M.",
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                    "creatorType": "author",
                    "firstName": "Camille",
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            ],
            "abstractNote": "Haemic neoplasia is a cancer affecting several bivalve species and has become transmissible in some lineages. This study assesses its prevalence in common cockles (Cerastoderma edule) along the western coast of France and the southern coast of Portugal, regions with important bivalve fisheries. Cockles and cohabiting bivalve species (Ruditapes spp. and Scrobicularia plana) were sampled across multiple locations, and haemic neoplasia was diagnosed through cytological analysis. In the Algarve, a decline in prevalence was observed between 2017 and 2024, while in Normandy, the disease was detected for the first time. No cases of haemic neoplasia were found in the cohabiting clam species, suggesting that cockle cancer transmission may be species-restricted. Morphometric analyses revealed no significant differences in size or mass between affected and non-affected cockles, indicating that external traits are not reliable indicators of infection. These findings expand knowledge on the geographical distribution of haemic neoplasia and highlight the need for continued monitoring to assess potential changes in its prevalence and impact on bivalve populations.This article is part of the theme issue 'Managing infectious marine diseases in wild populations'.",
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                    "firstName": "Natalia P. A.",
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                    "firstName": "Antonin V.",
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                    "firstName": "Bolaji Dunsin",
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                    "lastName": "Kent"
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                    "firstName": "Gail",
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                }
            ],
            "abstractNote": "Marine megafauna species are affected by a wide range of anthropogenic threats. To evaluate the risk of such threats, species' vulnerability to each threatmust first be determined. We build on the existing threats classification scheme and ranking system of the International Union for Conservation of Nature (IUCN) Red List of Threatened Species by assessing the vulnerability of 256 marine megafauna species to 23 at-sea threats. The threats we considered included individual fishing gear types, climate-change-related subthreats not previously assessed, and threats associated with coastal impacts and maritime disturbances. Our ratings resulted in 70 species having high vulnerability (v > 0.778 out of 1) to at least 1 threat, primarily drifting longlines, temperature extremes, or fixed gear. These 3 threats were also considered to have the most severe effects (i.e., steepest population declines). Overall, temperature extremes and plastics and other solid waste were rated as affecting the largest proportion of populations. Penguins, pinnipeds, and polar bears had the highest vulnerability to temperature extremes. Bony fishes had the highest vulnerability to drifting longlines and plastics and other solid waste; pelagic cetaceans to 4 maritime disturbance threats; elasmobranchs to 5 fishing threats; and flying birds to drifting longlines and 2 maritime disturbance threats. Sirenians and turtles had the highest vulnerability to at least one threat from all 4 categories. Despite not necessarily having severe effects for most taxonomic groups, temperature extremes were rated among the top threats for all taxa except bony fishes. The vulnerability scores we provide are an important first step in estimating the risk of threats to marine megafauna. Importantly, they help differentiate scope from severity, which is key to identifying threats that should be prioritized for mitigation.",
            "publicationTitle": "Conservation Biology",
            "publisher": "Wiley",
            "place": "Hoboken",
            "date": "FEB 2026",
            "volume": "40",
            "issue": "1",
            "section": "",
            "partNumber": "",
            "partTitle": "",
            "pages": "e70147",
            "series": "",
            "seriesTitle": "",
            "seriesText": "",
            "journalAbbreviation": "Conserv. Biol.",
            "DOI": "10.1111/cobi.70147",
            "citationKey": "",
            "url": "https://www.webofscience.com/api/gateway?GWVersion=2&SrcAuth=GetFTR&SrcApp=WOS&DestURL=https%3A%2F%2Fct.prod.getft.io%2FY2xhcml2YXRlLHdpbGV5LE1UQXVNVEV4TVM5amIySnBMamN3TVRRMyxOekUyWmpBeFltSXRNemt3WkMwME5XRmxMV0k1TVdZdE1tSmhNV0ZsTXpJMU4yVTAsaHR0cHM6Ly9vbmxpbmVsaWJyYXJ5LndpbGV5LmNvbS9kb2kvZXBkZi8xMC4xMTExL2NvYmkuNzAxNDc_c3JjPWdldGZ0cg.DX5PekvV6BbXPYaddPyhdog7vFcKCLVoamgSfyiiTH8&DestApp=GetFTR&SrcItemId=WOS:001687159100002&SrcAppSID=EUW1ED0FCC1zRcMcd0sSTwsZse7hE&HMAC=w0WxeU%2BKeGitpj9Khx8feXxo2HaNwERzsi%2BlWE%2BTSoA%3D",
            "accessDate": "2026-03-12T14:02:09Z",
            "PMID": "",
            "PMCID": "",
            "ISSN": "0888-8892, 1523-1739",
            "archive": "",
            "archiveLocation": "",
            "shortTitle": "",
            "language": "English",
            "libraryCatalog": "Clarivate Analytics Web of Science",
            "callNumber": "1.29",
            "rights": "",
            "extra": "Num Pages: 25\nWeb of Science ID: WOS:001687159100002",
            "tags": [
                {
                    "tag": "ACL"
                },
                {
                    "tag": "DISCOVERY"
                },
                {
                    "tag": "IF<5"
                },
                {
                    "tag": "IF=1.29"
                },
                {
                    "tag": "IRD"
                },
                {
                    "tag": "anthropogenic threats",
                    "type": 1
                },
                {
                    "tag": "climate change",
                    "type": 1
                },
                {
                    "tag": "expert elicitation",
                    "type": 1
                },
                {
                    "tag": "fishing",
                    "type": 1
                },
                {
                    "tag": "marine megafauna",
                    "type": 1
                },
                {
                    "tag": "vulnerability",
                    "type": 1
                }
            ],
            "collections": [
                "QICW69BQ"
            ],
            "relations": {},
            "dateAdded": "2026-03-12T14:16:43Z",
            "dateModified": "2026-03-12T14:16:43Z"
        }
    }
]