Articles | Volume 17, issue 10
https://doi.org/10.5194/bg-17-2731-2020
https://doi.org/10.5194/bg-17-2731-2020
Research article
 | 
20 May 2020
Research article |  | 20 May 2020

Biogeography and community structure of abyssal scavenging Amphipoda (Crustacea) in the Pacific Ocean

Tasnim Patel, Henri Robert, Cedric D'Udekem D'Acoz, Koen Martens, Ilse De Mesel, Steven Degraer, and Isa Schön

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Cited articles

Appeltans, W., Ahyong, S. T., Anderson, G., Angel, M. V., Artois, T., Bailly, N., Bamber, R., Barber, A., Bartsch, I., Berta, A., Błażewicz-Paszkowycz, M., Bock, P., Boxshall, G., Boyko, C. B., Brandão, S. N., Bray, R. A., Bruce, N. L., Cairns, S. D., Chan, T. Y., Cheng, L., Collins, A. G., Cribb, T., Curini-Galletti, M., Dahdouh-Guebas, F., Davie, P. J., Dawson, M. N., De Clerck, O., Decock, W., De Grave, S., de Voogd, N. J., Domning, D. P., Emig, C. C., Erséus, C., Eschmeyer, W., Fauchald, K., Fautin, D. G., Feist, S. W., Fransen, C. H., Furuya, H., Garcia-Alvarez, O., Gerken, S., Gibson, D., Gittenberger, A., Gofas, S., Gómez-Daglio, L., Gordon, D. P., Guiry, M. D., Hernandez, F., Hoeksema, B. W., Hopcroft, R. R., Jaume, D., Kirk, P., Koedam, N., Koenemann, S., Kolb, J. B., Kristensen, R. M., Kroh, A., Lambert, G., Lazarus, D. B., Lemaitre, R., Longshaw, M., Lowry, J., Macpherson, E., Madin, L. P., Mah, C., Mapstone, G., McLaughlin, P. A., Mees, J., Meland, K., Messing, C. G., Mills, C. E., Molodtsova, T. N., Mooi, R., Neuhaus, B., Ng, P. K., Nielsen, C., Norenburg, J., Opresko, D. M., Osawa, M., Paulay, G., Perrin, W., Pilger, J. F., Poore, G. C., Pugh, P., Read, G. B., Reimer, J. D., Rius, M., Rocha, R. M., Saiz-Salinas, J. I., Scarabino, V., Schierwater, B., Schmidt-Rhaesa, A., Schnabel, K. E., Schotte, M., Schuchert, P., Schwabe, E., Segers, H., Self-Sullivan, C., Shenkar, N., Siegel, V., Sterrer, W., Stöhr, S., Swalla, B., Tasker, M. L., Thuesen, E. V., Timm, T., Todaro, M. A., Turon, X., Tyler, S., Uetz, P., van der Land, J., Vanhoorne, B., van Ofwegen, L. P., van Soest, R. W., Vanaverbeke, J., Walker-Smith, G., Walter, T. C., Warren, A., Williams, G. C., Wilson, S. P., and Costello, M. J.: The Magnitude of Global Marine Biodiversity, Curr. Biol., 22, 2189–2202, https://doi.org/10.1016/j.cub.2012.09.036, 2012. 
Baldwin, R. J. and Smith Jr., K. L.: Temporal variation in the catch rate, length, color, and sex of the necrophagus amphipod, Eurythenes gryllus, from the central and eastern North Pacific, Deep-Sea Res. Pt. I, 34, 425–439, https://doi.org/10.1016/0198-0149(87)90146-4, 1987. 
Barnard, J. L.: Gammaridean Amphipoda from depth of 400 to 6000 meters, Galathea. Rep., 5, 23–128, 1961. 
Barnard, J. L. and Ingram, C.: Lysianassoid Amphipoda (Crustacea) from Deep-Sea Thermal Vents, Smithson Contrib. Zool., 499, 1–80, 1990. 
Barnard, J. L. and Karaman, G.: The Families and Genera of Marine Gammaridean Amphipoda (Except Marine Gammaroids), Rec. Aust. Mus., 13, 1–866, https://doi.org/10.3853/j.0812-7387.13.1991.367, 1991. 
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Short summary
Exploitation of deep-sea resources in one of the largest ecosystems on the planet has rendered research of its biodiversity more urgent than ever before. We investigated the known habitats and connectivity of deep-sea scavenging amphipods and obtained important knowledge about several species. We also demonstrated that a long-term disturbance experiment has possibly reduced amphipod biodiversity. These data and further sampling expeditions are instrumental for formulating sustainable policies.
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