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165 Research products

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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Bald, Carlos; Domínguez, Haizea; Iñarra, Bruno;

    Aquaculture has grown exponentially during the last decades, even overcoming traditional fishing in volume since2012 (Iñarra et al, 2018). The rise of the production of fish involves the rise of fish by-products, that in case ofbeing disposed could suppose an environmental risk. Fish viscera are part of the by-products used to producefishmeal and are the 10-18 % of the whole fish weight.Fish silage or acid autolysis is commonly used in areas with high fisheries rates and consists of liquefactionand stabilization of minced fish at room temperature, normally adding formic acid until reaching a pH between3.5 and 4.5 to prevent microbial growth. Hydrolysis of proteins occurs thanks to the endogenous acid proteasesthat are located at the fish viscera, which enable to get low molecular weight peptides and amino acids (Toppe etal, 2018). The resulting protein hydrolysates could be used as fertilisers. However, silage can take several days toachieve a high hydrolysis degree. In this work, autolysis has been carried out simulating the conditions ofenzymatic hydrolysis but only working with the endogenous enzymes from fish viscera with the aim ofaccelerating a typical silage to get free amino acids while saving costs derived from the use of commercialenzymes

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ ZENODOarrow_drop_down
    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    ZENODO
    Other ORP type . 2024
    License: CC BY
    Data sources: ZENODO
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      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ ZENODOarrow_drop_down
      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
      ZENODO
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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Schnetz, Lisa; Dunne, Emma; Feichtinger, Iris; Butler, Richard; +2 Authors

    The Paleozoic represents a key time interval in the origins and early diversification of chondrichthyans (cartilaginous fishes), but their diversity and macroevolution are largely obscured by heterogenous spatial and temporal sampling. The predominantly cartilaginous skeletons of chondrichthyans pose an additional limitation on their preservation potential and hence on the quality of their fossil record. Here, we use a newly compiled genus-level dataset and the application of sampling standardization methods to analyze global total-chondrichthyan diversity dynamics through time from their first appearance in the Ordovician through to the end of the Permian. Subsampled estimates of chondrichthyan genus richness were initially low in the Ordovician and Silurian but increased substantially in the early Devonian. Richness reached its maximum in the middle Carboniferous before dropping across the Carboniferous/Permian boundary and gradually decreasing throughout the Permian. Sampling is higher in both the Devonian and Carboniferous compared with the Silurian and most of the Permian stages. Shark-like scales from the Ordovician are too limited to allow for some of the subsampling techniques. Our results detect two Paleozoic radiations in chondrichthyan diversity: the first in the earliest Devonian, led by acanthodians (stem-group chondrichthyans), which then decline rapidly by the late Devonian, and the second in the earliest Carboniferous, led by holocephalans, which increase greatly in richness across the Devonian-Carboniferous boundary. Dispersal of chondrichthyans, specifically holocephalans, into deeper water environments may reflect a niche expansion following the faunal displacement in the aftermath of the Hangenberg extinction event at the end of the Devonian.

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ ZENODOarrow_drop_down
    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    ZENODO
    Other ORP type . 2024
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      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ ZENODOarrow_drop_down
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      ZENODO
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    Authors: Brandt, Peter; Körner, Mareike;

    Code and data to reproduce the analysis and figures in "Synchronous drivers of equatorial Atlantic productivity" by Brandt et al.

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    ZENODO
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      ZENODO
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    Authors: Trouche, Blandine;

    Anvi'o databases of the 47 ammonia-oxidizing archaea MAGs from abyssal and hadal surface sediments presented in Trouche et al, 2023 (https://doi.org/10.1038/s43705-023-00341-6). 

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ ZENODOarrow_drop_down
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    ZENODO
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      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ ZENODOarrow_drop_down
      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
      ZENODO
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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Hamilton, Ruta;

    This is the December 2023 edition of the OCEAN:ICE Newsletter. The original newsletter is posted on the OCEAN:ICE LinkedIn. For those who do not have access to LinkedIn, we upload the newsletter to Zenodo and the website.

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ ZENODOarrow_drop_down
    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    ZENODO
    Other ORP type . 2023
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      ZENODO
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    Authors: Tomamichel, Megan; Lowe, Kaitlyn; Arnold, Kaylee; Frischer, Marc; +4 Authors

    Rapid warming could drastically alter host-parasite relationships, which is especially important for fisheries crucial to human nutrition and economic livelihoods; yet we lack a synthetic understanding of how warming influences parasite-induced mortality in these systems. We conducted a meta-analysis using 301 effect sizes from 60 empirical papers on harvested aquatic species and determined the relationship between parasite-induced host mortality and temperature and how this relationship was altered by host, parasite and study design traits. Overall, temperature increased parasite-induced host mortality; however, the magnitude and sometimes direction of this relationship varied. Hosts from the order Salmoniformes experienced a greater increase in parasite-induced mortality with temperature than average. Opportunistic parasites were correlated with a greater increase in host mortality with temperature than average, while bacterial parasite-induced mortality was lower than average as temperature increased. Thus, parasites will generally increase host mortality as the environment warms; however, this effect will vary among systems.

    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ ZENODOarrow_drop_down
    image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    ZENODO
    Other ORP type . 2023
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      image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/ ZENODOarrow_drop_down
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      ZENODO
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    Authors: Reese, Lloyd; Gräwe, Ulf; Klingbeil, Knut; Li, Xiangyu; +2 Authors

    Supporting Python scripts used for data processing for Reese et al. (2023): "Local Mixing Determines Spatial Structure of Diahaline Exchange Flow in a Mesotidal Estuary: A Study of Extreme Runoff Conditions" [1]. River discharge information and topography as used for the numerical tidal Elbe setup applied in the same study. Contains: riverinfo.dat -- river and tributary freshwater input grid locations as grid cell indices rivers.nc -- freshwater forcing used in setup, contains sources from all included tributaries and Geesthacht. Data retrieved from [2,3,4] in combination with personal communication via the Bundesanstalt für Wasserbau (BAW). topo_smoothed_v20_z0.nc -- setup topography and curvilinear grid. Topography created from datasets [5,6], for the latter see also [7]. Python scripts used for the creation of the figures, namely: fig2: Figure 2 fig3: Figure 3 fig4: Figure 4 and Table 1 data fig5: Figure 5 and Table 2 salt data fig6: Figure 6 fig7-8: Figures 7,8 fig9: Figure 9 fig10: Figure 10 fig11: Figure 11 plot_salt_tidally-resolved: Tidally resolved stratification, not shown in paper plot_temperature_correlation_section2e: Correlation of observed and simulated temperature at same stations as Figure 5 (not shown) and Table 2 temperature data The model data used for the figures and loaded within the Python scripts is available from the corresponding author of the study [1]. Note that *paper_plot_forcing_validation.py, *paper_plot_tidal_analysis.py, and *paper_plot_salinity_correlation.py require observational data that is freely available via portal-tideelbe.de; for in-depth documentation see [1]. *paper_plot_forcing_validation.py additionally requires meteorological forcing data for the first figure panel, which cannot be made public due to its proprietary nature. The use of shapefiles to colour landmasses and plot the coastline in Figures 2, 6, and 11 has to be commented out in the respective Python scripts due to unclear copyright regarding the underlying data. However, omission of these shapefiles does not change the interpretation of the model results. ---- [1] L. Reese, U. Graewe, K. Klingbeil, X. Li, M. Lorenz, H. Burchard, 2023: Local mixing determines spatial structure of diahaline exchange flow in a mesotidal estuary – a study of extreme runoff conditions. J. Phys. Oceanogr., submitted. [2] Wasserstraßen- und Schifffahrtsamt Magdeburg, 2021: Abflussstation Neu Darchau. Wasserstraßen- und Schifffahrtsverwaltung des Bundes, accessed 10 March 2021, http://www.portal-tideelbe.de. [3] Landesamt für Landwirtschaft, Umwelt und ländliche Räume Schleswig-Holstein, 2022: Daily averaged freshwater runoff at Kellinghusen-Parkplatz and Kölln-Reisiek A23, 2012–2014. Hochwasser- und Sturmflutinformation Schleswig-Holstein, accessed 2 February 2022, https://www.umweltdaten.landsh.de/pegel/jsp/pegel.jsp?gui=ganglinie&thema=q&mstnr=114377;https://www.umweltdaten.landsh.de/pegel/jsp/pegel.jsp?mstnr=114527&wsize=free. [4] Niedersächsicher Landesbetrieb für Wasserwirtschaft, Küsten- und Naturschutz, 2022: Daily averaged freshwater runoff at gauges no. 5963101 (Oersdorf), 5945125 (Bienenbüttel), 5983110 (Rockstedt), and 5972105 (Schwinge), 2012–2014. Niedersächsische Landesdatenbank für wasserwirtschaftliche Daten, accessed 27 April 2022, http://www.wasserdaten.niedersachsen.de/cadenza/pages/home/welcome.xhtml. [5] Wasserstraßen- und Schifffahrtsamt Hamburg, 2011: DGM-W 2010 Unter- und Außenelbe (Digitales Geländemodell des Wasserlaufes - Multifunktionsmodell). Wasserstraßen- und Schifffahrtsverwaltung des Bundes, accessed 12 January 2021, https://www.kuestendaten.de/Tideelbe/DE/Service/Kartenthemen/Kartenthemen_node.html [6] Bundesamt für Seeschifffahrt und Hydrographie, 2019: AufMod Bathymetries German Bight 1982-2012 - WMS. Wasserstraßen- und Schifffahrtsverwaltung des Bundes, accessed 28 May 2013, https://gdk.gdi-de.org/geonetwork/srv/api/records/3543c490-d251-4948-830c-1da723a1a8eb. [7] Heyer, H., and K. Schrottke, 2015: Einführung, Aufgabenstellung und Bearbeitungsstruktur im KFKI-Projekt AufMod. Die Küste, 83, 1–18, ISBN: 978-3-939230-40-3.

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    ZENODO
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      ZENODO
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    Authors: Villa, Juliana; Wisocki, Phillip; Dela Cruz, Jacob E.; Hanley, Daniel;

    Avian brood parasitism is a model system for understanding coevolutionary arms races, and the great reed warbler (Acrocephalus arundinaceus, hereafter 'warbler') and its parasite the common cuckoo (Cuculus canorus, hereafter 'cuckoo') are prime examples of this coevolutionary struggle. Here, warblers select for egg colour mimicry by rejecting poorly matched cuckoo eggs. Contrary to long-held assumptions, recent work showed that warblers tend to reject lighter and browner eggs but tended to accept darker and bluer eggs rather than basing rejection decisions solely on perceived colour differences (i.e., the degree of mimicry). This counter-intuitive, colour-biased rejection behaviour would select for bluer and darker cuckoo eggs, but would only be adaptive if cuckoos were consistently lighter and browner than warbler eggs. Therefore, we tested whether warbler eggs were consistently bluer and darker than the cuckoo eggs. To do so, we re-analysed eggshell reflectance spectra of warblers and the cuckoos that parasitized them in the Czech Republic. As expected, we found that warbler eggs were significantly bluer and darker than the cuckoo eggs at the population level. Thus, we demonstrate imperfect mimicry in a long-coevolved cuckoo host-race and provide insights for exploring the coevolutionary interactions among hosts and their brood parasites.

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    Authors: Hamilton, Ruta;

    This newsletter is part of the OCEAN:ICE Dissemination activities, OCEAN:ICE News. Newsletters are released every month on the OCEAN:ICE LinkedIn page and uploaded to the project's website and Zenodo. 

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    Authors: Napoli, Ester;

    Il settore della Pubblica Amministrazione sta vivendo numerose rivoluzioni sotto innumerevoli aspetti, una tra queste riguarda senz'altro la comunicazione pubblica. In tale contesto, l'Istituto di Ricerche sulla Popolazione e le Politiche Sociali (IRPPS) del CNR con MARINA (Marine Knowledge Sharing Platform for Federating Responsible Research and Innovation Communities) - progetto finanziato dal programma di ricerca e innovazione dell'UE Horizon 2020 - si trova a dover (e voler) sperimentare nuovi modi e nuovi strumenti per comunicare con gli utenti - reali e potenziali - della Piattaforma, per garantire loro il giusto grado di qualità e trasparenza e per fornire loro e ai diversi stakeholder coinvolti, a vario titolo, nella gestione e attuazione di una sinergia tra ricerca e innovazione e la salvaguardia dell'ambiente, informazioni e visibilità. È stato, inoltre, necessario, nella stesura del presente Piano di Comunicazione considerare il particolare momento che ha attraversato l'Italia da un punto di vista sanitario ed economico in seguito alla pandemia da Coronavirus (Covid19). Le diverse decisioni prese dalla Commissione europea per la risoluzione delle circostanze specifiche dovute alla pandemia in atto e il ruolo sempre più centrale dell'utilizzo dei fondi europei per il rilancio dell'economia del Paese, diventano di rilevante importanza nella definizione delle azioni di comunicazione da adottare e promuovere per garantire adeguata informazione e visibilità al progetto MARINA e alle opportunità offerte dallo stesso. In tale contesto di cambiamento, il presente Piano di Comunicazione si configura come strumento di gestione e di programmazione delle attività specifiche di comunicazione che l'IRPPS intende mettere in campo. Nello specifico, le azioni saranno orientate all'informazione e comunicazione di progetti, interventi e communities del settore marino, con una particolare attenzione alla valorizzazione del progetto MARINA nell'ambito del processo di ricerca e innovazione responsabile (RRI), in base al quale tutti gli attori coinvolti possono effettivamente far sentire la propria voce nell'intero processo di ricerca e condividere le proprie idee con coloro che sviluppano nuove soluzioni. (GRANT AGREEMENT - Project 710566 - MARINA – Knowledge Sharing Platform for Federating Responsible Research and Innovation Communities).

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165 Research products
  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Bald, Carlos; Domínguez, Haizea; Iñarra, Bruno;

    Aquaculture has grown exponentially during the last decades, even overcoming traditional fishing in volume since2012 (Iñarra et al, 2018). The rise of the production of fish involves the rise of fish by-products, that in case ofbeing disposed could suppose an environmental risk. Fish viscera are part of the by-products used to producefishmeal and are the 10-18 % of the whole fish weight.Fish silage or acid autolysis is commonly used in areas with high fisheries rates and consists of liquefactionand stabilization of minced fish at room temperature, normally adding formic acid until reaching a pH between3.5 and 4.5 to prevent microbial growth. Hydrolysis of proteins occurs thanks to the endogenous acid proteasesthat are located at the fish viscera, which enable to get low molecular weight peptides and amino acids (Toppe etal, 2018). The resulting protein hydrolysates could be used as fertilisers. However, silage can take several days toachieve a high hydrolysis degree. In this work, autolysis has been carried out simulating the conditions ofenzymatic hydrolysis but only working with the endogenous enzymes from fish viscera with the aim ofaccelerating a typical silage to get free amino acids while saving costs derived from the use of commercialenzymes

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    Authors: Schnetz, Lisa; Dunne, Emma; Feichtinger, Iris; Butler, Richard; +2 Authors

    The Paleozoic represents a key time interval in the origins and early diversification of chondrichthyans (cartilaginous fishes), but their diversity and macroevolution are largely obscured by heterogenous spatial and temporal sampling. The predominantly cartilaginous skeletons of chondrichthyans pose an additional limitation on their preservation potential and hence on the quality of their fossil record. Here, we use a newly compiled genus-level dataset and the application of sampling standardization methods to analyze global total-chondrichthyan diversity dynamics through time from their first appearance in the Ordovician through to the end of the Permian. Subsampled estimates of chondrichthyan genus richness were initially low in the Ordovician and Silurian but increased substantially in the early Devonian. Richness reached its maximum in the middle Carboniferous before dropping across the Carboniferous/Permian boundary and gradually decreasing throughout the Permian. Sampling is higher in both the Devonian and Carboniferous compared with the Silurian and most of the Permian stages. Shark-like scales from the Ordovician are too limited to allow for some of the subsampling techniques. Our results detect two Paleozoic radiations in chondrichthyan diversity: the first in the earliest Devonian, led by acanthodians (stem-group chondrichthyans), which then decline rapidly by the late Devonian, and the second in the earliest Carboniferous, led by holocephalans, which increase greatly in richness across the Devonian-Carboniferous boundary. Dispersal of chondrichthyans, specifically holocephalans, into deeper water environments may reflect a niche expansion following the faunal displacement in the aftermath of the Hangenberg extinction event at the end of the Devonian.

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    Authors: Brandt, Peter; Körner, Mareike;

    Code and data to reproduce the analysis and figures in "Synchronous drivers of equatorial Atlantic productivity" by Brandt et al.

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    Authors: Trouche, Blandine;

    Anvi'o databases of the 47 ammonia-oxidizing archaea MAGs from abyssal and hadal surface sediments presented in Trouche et al, 2023 (https://doi.org/10.1038/s43705-023-00341-6). 

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  • image/svg+xml art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos Open Access logo, converted into svg, designed by PLoS. This version with transparent background. http://commons.wikimedia.org/wiki/File:Open_Access_logo_PLoS_white.svg art designer at PLoS, modified by Wikipedia users Nina, Beao, JakobVoss, and AnonMoos http://www.plos.org/
    Authors: Hamilton, Ruta;

    This is the December 2023 edition of the OCEAN:ICE Newsletter. The original newsletter is posted on the OCEAN:ICE LinkedIn. For those who do not have access to LinkedIn, we upload the newsletter to Zenodo and the website.

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    ZENODO
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      Other ORP type . 2023
      License: CC BY
      Data sources: ZENODO
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      This Research product is the result of merged Research products in OpenAIRE.

      You have already added works in your ORCID record related to the merged Research product.