Burgess, S. C., Baskett, M. L., Grosberg, R. K., Morgan, S. G. & Strathmann, R. R. When is dispersal for dispersal? Unifying marine and terrestrial perspectives. Biol. Rev. 91, 867–882 (2016).
Google Scholar
Cowman, P. F. & Bellwood, D. R. Vicariance across major marine biogeographic barriers: Temporal concordance and the relative intensity of hard versus soft barriers. Proc. R. Soc. B Biol. Sci. 280, 20131541 (2013).
Floeter, S. R. et al. Atlantic reef fish biogeography and evolution. J. Biogeogr. 35, 22–47 (2008).
Luiz, O. J. et al. Ecological traits influencing range expansion across large oceanic dispersal barriers: Insights from tropical Atlantic reef fishes. Proc. R. Soc. B Biol. Sci. 279, 1033–1040 (2012).
Rocha, L. A. et al. Recent invasion of the tropical Atlantic by an Indo-Pacific coral reef fish. Mol. Ecol. 14, 3921–3928 (2005).
Google Scholar
Thornhill, D. J., Mahon, A. R., Norenburg, J. L. & Halanych, K. M. Open-ocean barriers to dispersal: A test case with the Antarctic Polar Front and the ribbon worm Parborlasia corrugatus (Nemertea: Lineidae). Mol. Ecol. 17, 5104–5117 (2008).
Google Scholar
Fraser, C. I., Kay, G. M., du Plessis, M. & Ryan, P. G. Breaking down the barrier: Dispersal across the Antarctic Polar Front. Ecography 40, 235–237 (2017).
Thorrold, S. R. & McKinnon, A. D. Response of larval fish assemblages to a riverine plume in coastal waters of the central Great Barrier Reef lagoon. Limnol. Oceanogr. 40, 177–181 (1995).
Google Scholar
Rocha, L. A. Patterns of distribution and processes of speciation in Brazilian reef fishes. J. Biogeogr. 30, 1161–1171 (2003).
Lentz, S. J. The Amazon River plume during AmasSeds: Subtidal current variability and the importance of wind forcing. J. Geophys. Res. 100, 2377–2390 (1995).
Google Scholar
Figueiredo, A. G., Allison, M. & Nittrouer, C. A. Amazon Discharge: Internal Report for AMASSEDS Researches. (1991).
Nittrouer, C. A. & DeMaster, D. J. The Amazon shelf setting: Tropical, energetic, and influenced by a large river. Cont. Shelf Res. 16, 553–573 (1996).
Google Scholar
Jo, Y.-H., Yan, X. H., Dzwonkowski, B. & Liu, W. T. A study of the freshwater discharge from the Amazon River into the tropical Atlantic using multi-sensor data. Geophys. Res. Lett. 32, 1–4 (2005).
Moura, R. L. et al. An extensive reef system at the Amazon River mouth. Sci. Adv. 2, 1–11 (2016).
Francini-Filho, R. B. et al. Perspectives on the Great Amazon Reef: Extension, biodiversity, and threats. Front. Mar. Sci. 5, 142 (2018).
Neumann-Leitão, S. et al. Zooplankton from a reef system under the influence of the Amazon River plume. Front. Microbiol. 9, 1–15 (2018).
Targino, A. K. G. & Gomes, P. B. Distribution of sea anemones in the Southwest Atlantic: Biogeographical patterns and environmental drivers. Mar. Biodivers. 50, 80 (2020).
Barroso, C. X., Lotufo, T. M. C. & Matthews-Cascon, H. Biogeography of Brazilian prosobranch gastropods and their Atlantic relationships. J. Biogeogr. 43, 2477–2488 (2016).
Brandini, F. P., Lopes, R. M., Gutseit, K. S. & Sassi, R. Planctonologia na Plataforma Continental do Brasil: Diagnose e Revisão Bibliográfica. (CEMAR/MMA/CIRM/FEMAR, 1997).
Loder, J. W., Boicourt, W. C. & Simpson, J. H. Western ocean boundary shelves coastal segment (W). Sea 11, 3–27 (1998).
Chollett, I., Mumby, P. J., Müller-Karger, F. E. & Hu, C. Physical environments of the Caribbean Sea. Limnol. Oceanogr. 57, 1233–1244 (2012).
Google Scholar
Costello, M. J. et al. Marine biogeographic realms and species endemicity. Nat. Commun. 8, 1057 (2017).
Google Scholar
Saeedi, H., Simões, M. & Brandt, A. Endemicity and community composition of marine species along the NW Pacific and the adjacent Arctic Ocean. Prog. Oceanogr. 178, 102199 (2019).
OBIS. Ocean Biogeographic Information System. http://www.iobis.org (2021).
Spalding, M. D. et al. Marine ecoregions of the world: A bioregionalization of coastal and shelf areas. Bioscience 57, 573–583 (2007).
Hortal, J. et al. Seven shortfalls that beset large-scale knowledge of biodiversity. Annu. Rev. Ecol. Evol. Syst. 46, 523–549 (2015).
Baselga, A. Partitioning the turnover and nestedness components of beta diversity. Glob. Ecol. Biogeogr. 19, 134–143 (2010).
Fu, H. et al. Local and regional drivers of turnover and nestedness components of species and functional beta diversity in lake macrophyte communities in China. Sci. Total Environ. 687, 206–217 (2019).
Google Scholar
Costello, M. J., Stocks, K., Zhang, Y., Grassle, J. F. & Fautin, D. G. About the Ocean Biogeographic Information System. Vol. 29. (2007).
Miloslavich, P. et al. Marine biodiversity in the Caribbean: Regional estimates and distribution patterns. PLoS ONE 5, e11916 (2010).
Google Scholar
Boltovskoy, D. & Valentin, J. L. Overview of the history of biological oceanography in the southwestern Atlantic, with emphasis on plankton. in Plankton Ecology of the Southwestern Atlantic (eds. Hoffmeyer, M. S., Sabatini, M. E., Brandini, F. P., Calliari, D. L. & Santinelli, N. H.). 3–34. https://doi.org/10.1007/978-3-319-77869-3_1 (Springer, 2018).
Costello, M. J. et al. A census of marine biodiversity knowledge, resources, and future challenges. PLoS ONE 5, e12110 (2010).
Google Scholar
Lopes, R. M. Marine zooplankton studies in Brazil: A brief evaluation and perspectives. An. Acad. Bras. Ciênc. 79, 369–379 (2007).
Google Scholar
Alves-Júnior, F. D. A. et al. Taxonomy of deep-sea shrimps of the superfamily Oplophoroidea Dana 1852 (Decapoda: Caridea) from Southwestern Atlantic. Zootaxa 4613, 401–442 (2019).
Eduardo, L. N. et al. Biodiversity, ecology, fisheries, and use and trade of Tetraodontiformes fishes reveal their socio-ecological significance along the tropical Brazilian continental shelf. Aquat. Conserv. Mar. Freshw. Ecosyst. 30, 761–774 (2020).
Tosetto, E. G., Bertrand, A., Neumann-Leitão, S., Costa da Silva, A. & Nogueira Júnior, M. Spatial patterns in planktonic cnidarian distribution in the western boundary current system of the tropical South Atlantic Ocean. J. Plankton Res. 43, 270–287 (2021).
Tosetto, E. G., Neumann-Leitão, S. & Nogueira Júnior, M. New species of Eirenidae (Hydrozoa: Leptothecata) from the Amazonian coast (northern Brazil). Sci. Mar. 84, 421–430 (2020).
Santana, C. S. et al. Amazon river plume influence on planktonic decapods in the tropical Atlantic. J. Mar. Syst. 212, 103428 (2020).
Tosetto, E. G., Neumann-Leitão, S., Bertrand, A. & Júnior, M. N. First record of Cirrholovenia polynema (Hydrozoa: Leptothecata) in the Western Atlantic Ocean. Ocean Coast. Res. 69, e21006 (2021).
Roberts, C. M. et al. Marine biodiversity hotspots and conservation priorities for tropical reefs. Science 295, 1280–1284 (2002).
Google Scholar
Bowen, B. W., Muss, A., Rocha, L. A. & Grant, W. S. Shallow mtDNA coalescence in Atlantic Pygmy angelfishes (genus Centropyge) indicates a recent invasion from the Indian Ocean. J. Hered. 97, 1–12 (2005).
Rocha, L. A., Robertson, D. R., Roman, J. & Bowen, B. W. Ecological speciation in tropical reef fishes. Proc. R. Soc. B Biol. Sci. 272, 573–579 (2005).
Rocha, L. A., Rocha, C. R., Robertson, D. R. & Bowen, B. W. Comparative phylogeography of Atlantic reef fishes indicates both origin and accumulation of diversity in the Caribbean. BMC Evol. Biol. 8, 157 (2008).
Google Scholar
Agard, J. B. R., Hubbard, R. H. & Griffith, J. K. The relation between productivity, disturbance and the biodiversity of Caribbean phytoplankton: Applicability of Huston’s dynamic equilibrium model. J. Exp. Mar. Biol. Ecol. 202, 1–17 (1996).
Toonen, R. J., Bowen, B. W., Iacchei, M. & Briggs, J. C. Biogeography, marine. in Encyclopedia of Evolutionary Biology (ed. Kliman, R. M.). 166–178. https://doi.org/10.1016/B978-0-12-800049-6.00120-7 (Academic Press, 2016).
Briggs, J. C. & Bowen, B. W. Marine shelf habitat: Biogeography and evolution. J. Biogeogr. 40, 1023–1035 (2013).
Bradbury, I. R., Laurel, B., Snelgrove, P. V. R., Bentzen, P. & Campana, S. E. Global patterns in marine dispersal estimates: The influence of geography, taxonomic category and life history. Proc. R. Soc. B Biol. Sci. 275, 1803–1809 (2008).
Bartlow, A. W. & Agosta, S. J. Phoresy in animals: Review and synthesis of a common but understudied mode of dispersal. Biol. Rev. 96, 223–246 (2021).
Google Scholar
South Atlantic Zooplankton. (Backhuys Publishers, 1999).
Mapstone, G. M. Global diversity and review of Siphonophorae (Cnidaria: Hydrozoa). PLoS ONE 9, 1–37 (2014).
Young, C. M., Sewell, M. A. & Rice, M. E. Atlas of Marine Invertebrate Larvae. Vol. 6. (Academic Press, 2002).
Strathmann, R. Length of pelagic period in echinoderms with feeding larvae from the Northeast Pacific. J. Exp. Mar. Biol. Ecol. 34, 23–27 (1978).
Haddoock, S. H. D. A golden age of gelata Past and future research on planktonic ctenophores and cnidarians. Hydrobiologia 530–531, 549–556 (2004).
Dossa, A. N. et al. Near-surface western boundary circulation off Northeast Brazil. Prog. Oceanogr. 190, 102475 (2021).
Luiz, O., Floeter, S., Rocha, L. & Ferreira, C. Perspectives for the lionfish invasion in the South Atlantic: Are Brazilian reefs protected by the currents?. Mar. Ecol. Prog. Ser. 485, 1–7 (2013).
Google Scholar
Maldonado, M. The ecology of the sponge larva. Can. J. Zool. 84, 175–194 (2006).
Giangrande, A. Polychaete reproductive patterns, life cycles and life histories: An overview. in Oceanography and Marine Biology. Vol. 35. (eds. Ansell, A., Gibson, R. N. & Barnes, M.) (CRC Press, 1997).
Nogueira Júnior, M. & Oliveira, V. M. Strategies of plankton occupation by polychaete assemblages in a subtropical estuary (south Brazil). J. Mar. Biol. Assoc. U. K. 97, 1651–1661 (2017).
Assunção, R. V. et al. 3D characterisation of the thermohaline structure in the southwestern tropical Atlantic derived from functional data analysis of in situ profiles. Prog. Oceanogr. 187, 102399 (2020).
Molleri, G. S. F., Novo, E. M. L. M. & Kampel, M. Space-time variability of the Amazon River plume based on satellite ocean color. Cont. Shelf Res. 30, 342–352 (2010).
Google Scholar
López, R., López, J. M., Morell, J., Corredor, J. E. & Del Castillo, C. E. Influence of the Orinoco River on the primary production of eastern Caribbean surface waters: Primary Production of Caribbean waters. J. Geophys. Res. Oceans 118, 4617–4632 (2013).
Google Scholar
Hsieh, T. C., Ma, K. H. & Chao, A. iNEXT: iNterpolation and EXTrapolation for Species Diversity. (2014).
Clarke, K. R. & Gorley, R. N. PRIMER 6 + PERMANOVA. (2006).
Larsson, J. et al. Package ‘eulerr’. (2018).
Baselga, A. & Orme, C. D. L. betapart: An R package for the study of beta diversity. Methods Ecol. Evol. 3, 808–812 (2012).
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