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    المساهمون: Universidade Federal Rural de Pernambuco (UFRPE), Institut méditerranéen d'océanologie (MIO), Institut de Recherche pour le Développement (IRD)-Aix Marseille Université (AMU)-Institut national des sciences de l'Univers (INSU - CNRS)-Université de Toulon (UTLN)-Centre National de la Recherche Scientifique (CNRS), Laboratoire d'études en Géophysique et océanographie spatiales (LEGOS), Institut de Recherche pour le Développement (IRD)-Université Toulouse III - Paul Sabatier (UT3), Université de Toulouse (UT)-Université de Toulouse (UT)-Institut national des sciences de l'Univers (INSU - CNRS)-Observatoire Midi-Pyrénées (OMP), Université de Toulouse (UT)-Université de Toulouse (UT)-Institut national des sciences de l'Univers (INSU - CNRS)-Centre National d'Études Spatiales Toulouse (CNES)-Centre National de la Recherche Scientifique (CNRS)-Météo-France-Institut de Recherche pour le Développement (IRD)-Institut national des sciences de l'Univers (INSU - CNRS)-Centre National d'Études Spatiales Toulouse (CNES)-Centre National de la Recherche Scientifique (CNRS)-Météo-France-Centre National de la Recherche Scientifique (CNRS), Norsk Institutt for Luftforskning (NILU)

    المصدر: ISSN: 0013-9327 ; Environmental Pollution (1970) ; https://hal.science/hal-04069913Test ; Environmental Pollution (1970), 2023, 327, pp.121532. ⟨10.1016/j.envpol.2023.121532⟩.

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    المصدر: Scientia Marina; Vol. 87 No. 1 (2023); e059 ; Scientia Marina; Vol. 87 Núm. 1 (2023); e059 ; 1886-8134 ; 0214-8358 ; 10.3989/scimar.2023.87n1

    وصف الملف: text/html; application/pdf; text/xml

    العلاقة: https://scientiamarina.revistas.csic.es/index.php/scientiamarina/article/view/1946/2946Test; https://scientiamarina.revistas.csic.es/index.php/scientiamarina/article/view/1946/2930Test; https://scientiamarina.revistas.csic.es/index.php/scientiamarina/article/view/1946/2947Test; Abundez J., Moreno G., Simoes N., et al. 2021. Marine amphipods (Parhyale hawaiensis) as an alternative feed for the lined seahorse (Hippocampus erectus, Perri 1810): Nutritional value and feeding trial. PeerJ. 9: 1-28. https://doi.org/10.7717/peerj.12288Test PMid:34721977 PMCid:PMC8532987; Almeida M. 1994. Kalliapseudes schubartii Mañé-Garzón, 1949 (Tanaidecea-Crustacea): Dinâmica populacional e interações com a macrofauna bêntica no Saco do Limoeiro, Ilha do Mel (Paraná, Brasil). MSc thesis, Universidade Federal do Paraná, 75pp.; Araújo-Silva C., Sarmento V., Santos P. 2022. Climate change scenarios of increased CO2 and temperature affect a coral reef peracarid (Crustacea) community. Mar. Environ. Res. 173: 1-11. https://doi.org/10.1016/j.marenvres.2021.105518Test PMid:34763317; Bamber R. 2010. In the footsteps of Henrik Nikolaj Krøyer: The rediscovery and redescription of Leptochelia savignyi (Krøyer, 1842) sensu stricto (Crustacea: Tanaidacea: Leptocheliidae). Proc. Biol. Soc. Wash. 123: 289-311. https://doi.org/10.2988/10-14.1Test PMid:33643520; Berrigan D., Charnov E. 1994. Reaction Norms for Age and Size at Maturity in Response to Temperature: A Puzzle for Life Historians. Oikos. 70: 474-478. https://doi.org/10.2307/3545787Test; Blazewicz-Paszkowycz M., Bamber R., Anderson G. 2012. Diversity of Tanaidacea (Crustacea: Peracarida) in the world's oceans - how far have we come? PLoS ONE. 7: 1-11. https://doi.org/10.1371/journal.pone.0033068Test PMid:22496741 PMCid:PMC3319556; Boyer T., Baranova O., Coleman C., et al. 2018. NOAA Atlas NESDIS 87, Silver Spring, MD, 207 pp.; Buckle Ramirez L.F. 1965. Untersuchungen über die Biologie von Heterotanais oerstedi Kröyer (Crustacea, Tanaidacea). Zeitschrift Für Morphologie Und Ökologie Der Tiere. 55: 714-482. https://doi.org/10.1007/BF00406235Test; Cardoso R., Defeo O. 2004. Biogeographic patterns in life history traits of the Pan-American sandy beach isopod Excirolana braziliensis. Estuar. Coast. Shelf Sci. 61: 559-568. https://doi.org/10.1016/j.ecss.2004.06.021Test; Carvalho N., Grande H., Rosa Filho J., Jacobucci G. 2018. The structure of gammarid amphipod (Crustacea, Peracarida) assemblages associated with Sargassum (Phaeophyta, Fucales) and their link with the structural complexity of algae. Hydrobiologia. 820: 245-254. https://doi.org/10.1007/s10750-018-3661-5Test; Craveiro N., Alves R., Menezes J., et al. 2021. Immediate effects of the 2019 oil spill on the macrobenthic fauna associated with macroalgae on the tropical coast of Brazil. Mar. Pollut. Bull. 165: 1-8. https://doi.org/10.1016/j.marpolbul.2021.112107Test PMid:33550001; de Souza F., Gilbert E., de Camargo M., Pieper W. 2013. The spatial distribution of the subtidal benthic macrofauna and its relationship with environmental factors using geostatistical tools: A case study in Trapandé Bay, southern Brazil. Zoologia 30: 55-65. https://doi.org/10.1590/S1984-46702013000100007Test; Domingues E.C., Schettini C.A.F., Truccolo E.C., Oliveira Filho J.C. de. 2017. Hidrografia e correntes da Plataforma Continental de Pernambuco. Rev. Bras. de Recur. Hidr. 22: 1-17. https://doi.org/10.1590/2318-0331.0217170027Test; Ewers-Saucedo C. 2019. Evaluating reasons for biased sex ratios in Crustacea. Invertebr. Reprod. Dev. 63: 222-230. https://doi.org/10.1080/07924259.2019.1588792Test; Fonseca D., D'Incao F. 2003. Growth and reproductive parameters of Kalliapseudes schubartii in the estuarine region of the Lagoa dos Patos (southern Brazil). J. Mar. Biolog. Assoc. U.K. 83: 931-935. https://doi.org/10.1017/S0025315403008087hTest; Fontoura N., Braun A., Milani P. 2009. Estimating size at first maturity (L50) from Gonadossomatic Index (GSI) data. Neotrop. Ichthyol. 7: 217-222. https://doi.org/10.1590/S1679-62252009000200013Test; Gardiner L. 1975. The Systematics, Postmarsupial Development, and Ecology of the Deep-Sea Family Neotanaidae (Crustacea: Tanaidacea) (Vol. 170). Smithsonian Institution Press, City of Washington, 274 pp . https://doi.org/10.5479/si.00810282.170Test; Guevara M., Lodeiros C., Donato M., et al. 2005. Nutritional quality of Metamysidopsis insularis Brattegard (Crustacea: Mysidacea). Aquac. Nutr. 11: 315-319. https://doi.org/10.1111/j.1365-2095.2005.00361.xTest; Guțu M. 2016. Systematic Novelties of the Enigmatic Universe of the Leptocheliids: Crustacea: Tanaidacea. ePublishers, Bucharest, 205 pp.; Hacker S., Steneck R. 1990. Habitat Architecture and the Abundance and Body-Size-Dependent Habitat Selection of a Phytal Amphipod. Ecology. 71: 2269-2285. https://doi.org/10.2307/1938638Test; Highsmith R. 1983. Sex Reversal and Fighting Behavior: Coevolved Phenomena in a Tanaid Crustacean. Ecology. 64: 719-726. https://doi.org/10.2307/1937194Test; Holanda T., Gonçalves R., Lino A., et al. 2020. Morphodynamic classification, variations and coastal processes of Paiva Beach, PE, Brazil. Rev. Bras. de Geomorfol. 21: 235-251. https://doi.org/10.20502/rbg.v21i2.1796Test; Holdich D., Jones J. 1983. Tanaids (Synopses of the British Fauna) (Vol. 27). Cambridge University Press, Cambridge, 112 pp.; Horta P., Amancio E. Coimbra C., Oliveira E. 2001. Considerações sobre a distribuição e origem da flora de macroalgas marinhas brasileiras. Hoehnea. 28: 243-265.; Jarquín-González J., Carrera-Parra L. 2022. Chondrochelia Guţu, 2016 (Crustacea, Peracarida, Tanaidacea, Leptocheliidae) from North America: new species, redescription and distribution using morphological and molecular data. PeerJ. 10: 1-47. https://doi.org/10.7717/peerj.12773Test PMid:35116196 PMCid:PMC8785663; Johnson S., Attramadal Y. 1982. Reproductive Behaviour and Larval Development of Tanais cavolinii (Crustacea: Tanaidacea). Mar. Biol. 71: 11-16. https://doi.org/10.1007/BF00396987Test; Kakui K., Fleming J., Mori M., et al. 2021. Comprehensive Transcriptome Sequencing of Tanaidacea with Proteomic Evidences for Their Silk. Genome Biol. Evol. 13: 1-11. https://doi.org/10.1093/gbe/evab281Test PMid:34904645 PMCid:PMC8715525; Keesing J., Gartner A., Westera M., et al. 2018. Impacts and Environmental Risks of Oil Spills on Marine Invertebrates, Algae and Seagrass: A Global Review from an Australian Perspective. In: Hawkins S., Evans A., et al. (eds), Oceanography and Marine Biology. CRC Press, pp. 2-61. https://doi.org/10.1201/9780429454455-5Test; Krasnow L., Taghon, G. 1997. Rate of tube building and sediment particle size selection during tube construction by the tanaid crustacean, Leptochelia dubia. Estuaries. 20: 534-546. https://doi.org/10.2307/1352612Test; Krøyer H. 1842. Nye Arter af Slaegten Tanais. Naturhistorisk Tidsskrift Ser. I. 4: 167-188.; Laborel J. 1970. Les peuplements de madréporaires des côtes tropicales du Brésil. Annales de l'Universit'e d'Abidjan (Ecologie), Abidjan, 265 pp.; Leite F., Turra A., Souza, E. 2003. Population biology and distribution of the tanaid Kalliapseudes schubarti Mañé-Garzon, 1949, in an intertidal flat in southeastern Brazil. Braz. J. Biol. 63: 469-479. https://doi.org/10.1590/S1519-69842003000300013Test PMid:14758706; Longo P., Mansur K., Leite F., Passos F. 2019. The highly diverse gastropod assemblages associated with Sargassum spp. (Phaeophyceae: Fucales) habitats. J. Mar. Biolog. Assoc. U.K. 99: 1295-1307. https://doi.org/10.1017/S0025315419000304Test; Martínez-Laiz G., Ros M., Navarro-Barranco C., Guerra-García J. 2018. Habitat selection of intertidal caprellid amphipods in a changing scenario. Behav. Process. 153: 16-24. https://doi.org/10.1016/j.beproc.2018.05.005Test PMid:29747045; Masunari S. 1983. Postmarsupial development and population dynamics of Leptochelia Sa Vignyi (Kroyer, 1842) (Tanaidacea). Crustaceana. 44: 151-162. https://doi.org/10.1163/156854083X00776Test; Mathews C., & Samuel, M. 1990. Using the growth performance index Φ' to choose species aquaculture: an example from Kuwait. Aquabyte 3: 2-4.; Mendoza J. 1982. Some Aspects of the Autecology of Leptochelia dubia (Krøyer, 1842) (Tanaidacea). Crustaceana. 43: 225-240. https://doi.org/10.1163/156854082X00164Test; Mildenberger T., Taylor M., Wolff M. 2017. TropFishR: an R package for fisheries analysis with length-frequency data. Methods Ecol. Evol. 8: 1520-1527 https://doi.org/10.1111/2041-210X.12791Test; Modlin R., Harris P. 1989. Observations on the natural history and experiments on the reproductive strategy of Hargeria rapax (Tanaidacea). J. Crustac. Biol. 9: 678-586. https://doi.org/10.1163/193724089X00593Test; Pandian T. 2016. Reproduction and Development in Crustacea. CRC Press, India, 316 pp. https://doi.org/10.1201/b20080Test; Pauly D., Munro J. 1984. Once more on the comparison of growth in fish and invertebrates. Fishbyte. 2: 1-21.; Pennafirme S., Soares-Gomes A. 2009. Population biology and reproduction of Kalliapseudes schubartii Mañé-Garzón, 1949 (Peracarida, Tanaidacea) in a tropical coastal Lagoon, Itaipu, Southeastern Brazil. Crustaceana 82: 1509-1526. https://doi.org/10.1163/001121609X12487811051589Test; Pennafirme S., Soares-Gomes A. 2017. Population dynamics and secondary production of a key benthic tanaidacean; Monokalliapseudes schubarti (Mañé-Garzón, 1949) (Tanaidacea, Kalliapseudidae), from a tropical coastal lagoon in southeastern Brazil. Crustaceana. 90: 1483-1499. https://doi.org/10.1163/15685403-00003704Test; R Core Team. 2022. R: A language and environment for statistical computing.; Rumbold C., Obenat S., Spivak E. 2015. Comparison of life history traits of Tanais dulongii (Tanaidacea: Tanaididae) in natural and artificial marine environments of the south-western Atlantic. Helgol. Mar. Res. 69: 231-242. https://doi.org/10.1007/s10152-015-0432-9Test; Schwamborn R., Mildenberger T., Taylor, M. 2019. Assessing sources of uncertainty in length-based estimates of body growth in populations of fishes and macroinvertebrates with bootstrapped ELEFAN. Ecol. Modell. 393: 37-51. https://doi.org/10.1016/j.ecolmodel.2018.12.001Test; Soares M., Teixeira C., Bezerra L., et al. 2020. Oil spill in South Atlantic (Brazil): Environmental and governmental disaster. Marine Policy. 115: 1-8. https://doi.org/10.1016/j.marpol.2020.103879Test; Sparre P., Venema S. 1998. Introduction to tropical fish stock assessment - Part I: Manual. FAO, Rome, 423 pp.; Stoner A. 1986. Cohabitation on Algal Habitat Islands by Two Hermaphroditic Tanaidacea (Crustacea: Peracarida). J. Crustac. Biol. 6: 719-728. https://doi.org/10.1163/193724086X00523Test; Sudo H. 2003. Effect of temperature on growth, sexual maturity and reproduction of Acanthomysis robusta (Crustacea: Mysidacea) reared in the laboratory. Mar. Biol. 143: 1095-1107. https://doi.org/10.1007/s00227-003-1160-2Test; Tano S., Eggertsen M., Wikström S., et al. 2016. Tropical seaweed beds are important habitats for mobile invertebrate epifauna. Estuar. Coast. Shelf Sci. 183: 1-12. https://doi.org/10.1016/j.ecss.2016.10.010Test; Taylor C. 1958. Cod Growth and Temperature. ICES J. Mar. Sci. 23: 366-370. https://doi.org/10.1093/icesjms/23.3.366Test; Toniollo V., Masunari S. 2007. Postmarsupial development of Sinelobus stanfordi (Richardson, 1901) (Tanaidacea: Tanaidae). Nauplius. 15: 15-41.; Torrejon-Magallanes J. 2020. sizeMat: Estimate Size at Sexual Maturity (R package version 1.1.2).; Tuya F., Pérez J., Medina L., Luque A. 2001. Seasonal variations of the macrofauna from three seagrass meadows of Cymodocea nodosa off Gran Canaria (Central-eastern Atlantic Ocean). Cienc. Mar. 27: 223-234. https://doi.org/10.7773/cm.v27i2.462Test; Zamora-Sarabia F., Arreguín-Sánchez F., de Anda-Montañez, J.A., Jacob-Cervantes M. 2022. Effect of sea surface temperature on the growth performance of the thread herring Opisthonema libertate (Günther, 1868) in the southern Gulf of California. Lat. Am. J. Aquat. Res. 50: 31-38. https://doi.org/10.3856/vol50-issue1-fulltext-2746Test; https://scientiamarina.revistas.csic.es/index.php/scientiamarina/article/view/1946Test

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    المساهمون: Instituto Humanize, Coordenação de Aperfeiçoamento de Pessoal de Nível Superior, Conselho Nacional de Desenvolvimento Científico e Tecnológico, Fundação de Amparo à Ciência e Tecnologia do Estado de Pernambuco, Brazilian Biodivesity Fund

    المصدر: Marine Pollution Bulletin ; volume 192, page 115087 ; ISSN 0025-326X

    مصطلحات موضوعية: Pollution, Aquatic Science, Oceanography