13.07.2015 Views

Latitudinal and temporal variability in the community structure and ...

Latitudinal and temporal variability in the community structure and ...

Latitudinal and temporal variability in the community structure and ...

SHOW MORE
SHOW LESS

Create successful ePaper yourself

Turn your PDF publications into a flip-book with our unique Google optimized e-Paper software.

92 K. Guil<strong>in</strong>i et al. / Progress <strong>in</strong> Oceanography 110 (2013) 80–92Soetaert, K., Franco, M., Lampadariou, N., Muthumbi, A., Steyaert, M., V<strong>and</strong>epitte, L.,v<strong>and</strong>en Berge, E., Vanaverbeke, J., 2009. Factors affect<strong>in</strong>g nematode biomass,length <strong>and</strong> width from <strong>the</strong> shelf to <strong>the</strong> deep sea. Mar<strong>in</strong>e Ecology Progress Series392, 123–132.Soltwedel, T., 1997. Temporal variabilities <strong>in</strong> benthic activity <strong>and</strong> biomass on<strong>the</strong> western European cont<strong>in</strong>ental marg<strong>in</strong>. Oceanologica Acta 20, 871–879.Soltwedel, T., 2000. Metazoan meiobenthos along cont<strong>in</strong>ental marg<strong>in</strong>s: a review.Progress <strong>in</strong> Oceanography 46, 59–84.Soltwedel, T., Pfannkuche, O., Thiel, H., 1996. The size <strong>structure</strong> of deep-seameiobenthos <strong>in</strong> <strong>the</strong> North-eastern Atlantic: nematode size spectra <strong>in</strong> relation toenvironmental variables. Journal of <strong>the</strong> Mar<strong>in</strong>e Biological Association of <strong>the</strong>United K<strong>in</strong>gdom 76, 327–344.Suhr, S.B., Pond, D.W., Gooday, A.J., Smith, C.R., 2003. Selective feed<strong>in</strong>g by benthicforam<strong>in</strong>ifera on phytodetritus on <strong>the</strong> western Antarctic Pen<strong>in</strong>sula shelf:evidence from fatty acid biomarker analyses. Mar<strong>in</strong>e Ecology Progress Series262, 153–162.Tabachnick, B.G., Fidell, L.S., 1989. Us<strong>in</strong>g Multivariate Statistics. Harper Coll<strong>in</strong>sPublishers, New York, NY.Ullberg, J., Ólafsson, E., 2003. Effects of biological disturbance by Monoporeia aff<strong>in</strong>is(Amphipoda) on small-scale migration of mar<strong>in</strong>e nematodes <strong>in</strong> low-energy softsediments. Mar<strong>in</strong>e Biology 143, 867–874.Van Gaever, S., Moodley, L., Pasotti, F., Houtekamer, M., Middelburg, J.J., Danovaro,R., Vanreusel, A., 2009. Trophic specialisation of metazoan meiofauna at <strong>the</strong>Håkon Mosby Mud Volcano: fatty acid biomarker isotope evidence. Mar<strong>in</strong>eBiology 156, 1289–1296.Vanaverbeke, J., Soetaert, K., V<strong>in</strong>cx, M., 2004. Changes <strong>in</strong> morphometriccharcteristics of nematode communities dur<strong>in</strong>g a spr<strong>in</strong>g phytoplankton bloomdeposition. Mar<strong>in</strong>e Ecology Progress Series 273, 139–146.Vanhove, S., Wittoeck, J., Desmet, G., Van den Berghe, B., Herman, R.L., Bak, R.P.M.,Nieuwl<strong>and</strong>, G., Vosjan, J.H., Boldr<strong>in</strong>, A., Rabitti, S., V<strong>in</strong>cx, M., 1995. Deep-seameiofauna communities <strong>in</strong> Antarctica: structural analysis <strong>and</strong> relation with <strong>the</strong>environment. Mar<strong>in</strong>e Ecology Progress Series 127, 65–76.Vanhove, S., Arntz, W., V<strong>in</strong>cx, M., 1999. Comparative study of <strong>the</strong> nematodecommunities on <strong>the</strong> sou<strong>the</strong>astern Weddell Sea shelf <strong>and</strong> slope (Antarctica).Mar<strong>in</strong>e Ecology Progress Series 181, 237–256.Vanhove, S., Vermeeren, H., Vanreusel, A., 2004. Meiofauna towards <strong>the</strong> SouthS<strong>and</strong>wich Trench (750–6300 m), focus on nematodes. Deep-Sea Research Part II51, 1665–1687.Vanreusel, A., V<strong>in</strong>cx, M., Bett, B.J., Rice, A.L., 1995. Nematode biomass spectra at twoabyssal sites <strong>in</strong> <strong>the</strong> NE Atlantic with contrast<strong>in</strong>g food supply. InternationaleRevue der Gesamten Hydrobiologie 80 (2), 287–296.Vanreusel, A., Fonseca, G., Danovaro, R., da Silva, M.C., Esteves, A.M., Ferrer, T., Gad,G., Galtsova, V., Gambi, C., Genevois, V., Ingels, J., Ingole, B., Lampadariou, N.,Merckx, B., Miljut<strong>in</strong>, D.M., Miljut<strong>in</strong>a, M.M., Muthumbi, A., Netto, S., Portnova, D.,Radziejewska, T., Raes, M., Tchesunov, A., Vanaverbeke, J., Van Gaever, S.,Venekey, V., Bezerra, T., Fl<strong>in</strong>t, H., Copley, J., Pape, E., Zeppeli, D., Mart<strong>in</strong>ez, P.,Galéron, J., 2010. The contribution of deep-sea macrohabitat heterogeneity toglobal nematode diversity. Mar<strong>in</strong>e Ecology 31, 6–20.Veit-Köhler, G., Guil<strong>in</strong>i, K., Peeken, I., Sachs, O., Sauter, E.J., Würzberg, L., 2011.Antarctic deep-sea meiofauna <strong>and</strong> bacteria react to <strong>the</strong> deposition of particulateorganic matter after a phytoplankton bloom. Deep-Sea Research Part II 58,1983–1995.Veit-Köhler, G., Guil<strong>in</strong>i, K., Peeken, I., Quillfeldt, P., Mayr, C., 2013. Carbon <strong>and</strong>nitrogen stable isotope signatures of deep-sea meiofauna followoceanographical gradients across <strong>the</strong> Sou<strong>the</strong>rn Ocean. Progress <strong>in</strong>Oceanography 110, 69–79.Vermeeren, H., Vanreusel, A., Vanhove, S., 2004. Species distribution with<strong>in</strong> <strong>the</strong> freeliv<strong>in</strong>gmar<strong>in</strong>e nematode genus Dichromadora <strong>in</strong> <strong>the</strong> Weddell Sea <strong>and</strong> adjacentareas. Deep-Sea Research Part II 51, 1643–1664.Watts, J.L., Browse, J., 2002. Genetic dissection of polyunsaturated fatty acidsyn<strong>the</strong>sis <strong>in</strong> Caenorhabditis elegans. Proceed<strong>in</strong>gs of <strong>the</strong> National Academy ofSciences (USA) 99 (9), 5854–5859.Wefer, G., Fischer, G., 1991. Annual primary production <strong>and</strong> export flux <strong>in</strong> <strong>the</strong>Sou<strong>the</strong>rn Ocean from sediment trap data. Mar<strong>in</strong>e Chemistry 35 (1–4), 597–613.Wei, C.-L., Rowe, G.T., Escobar-Briones, E., Boetius, A., Soltwedel, T., Caley, M.J.,Soliman, Y., Huettmann, F., Qu, F., Yu, Z., Pitcher, C.R., Haedrich, R.L., Wicksten,M.K., Rex, M.A., Baguley, J.G., Sharma, J., Danovaro, R., MacDonald, I.R., Nunnally,C.C., Dem<strong>in</strong>g, J.W., Montagna, P., Lévesque, M., Weslawski, J.M., Wlodarska-Kowalczuk, M., Ingole, B.S., Bett, B.J., Billett, D.S.M., Yool, A., Bluhm, B.A., Iken, K.,Narayanaswamy, B.E., 2010. Global patterns <strong>and</strong> predictions of seafloor biomassus<strong>in</strong>g r<strong>and</strong>om forests. PloS ONE 5 (12), e15323.Wieser, W., 1953. Die Beziehung zwischen Mundhöhlengestalt, Ernährungsweiseund Vorkommen bei freilebenden mar<strong>in</strong>en Nematoden. E<strong>in</strong>e ökologischemorphologischeStudie. Arkiv Fur Zoologi 4, 439–483.Wilmsen, E., Schüller, M., 2011. Diversity <strong>and</strong> distribution of Polychaeta <strong>in</strong> deepAntarctic <strong>and</strong> Subantarctic waters along <strong>the</strong> Greenwich meridian. Deep-SeaResearch Part II 58, 2004–2012.Würzberg, L., Peters, J., Br<strong>and</strong>t, A., 2011a. Fatty acid patterns of Sou<strong>the</strong>rn Oceanshelf <strong>and</strong> deep sea peracarid crustaceans <strong>and</strong> a possible food source,foram<strong>in</strong>iferans. Deep-Sea Research Part II 58, 2027–2035.Würzberg, L., Peters, J., Schüller, M., Br<strong>and</strong>t, A., 2011b. Diet <strong>in</strong>sights of deep-seapolychaetes derived from fatty acid analyses. Deep-Sea Research Part II 58,153–162.

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!