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Determinants of community structure in the global plankton interactome
Lima-Mendez, G.; Faust, K.; Henry, N.; Decelle, J.; Colin, S.; Carcillo, F.; Chaffron, S.; Ignacio-Espinoza, J.C.; Roux, S.; Vincent, F.; Bittner, L.; Darzi, Y.; Wang, J.; Audic, S.; Berline, L.; Bontempi, G.; Cabello, A.M.; Coppola, L.; Cornejo-Castillo, F.M.; De Meester, L.; Ferrera, I.; Garet-Delmas, M.-J.; Guidi, L.; Lara, E.; Pesant, S.; Royo-Llonch, M.; Salazar, G.; Sánchez, P.; Sebastian, M.; Souffreau, C.; Dimier, C.; Picheral, M.; Searson, S.; Kandels-Lewis, S.; Gorsky, G.; Not, F.; Ogata, H.; Speich, S.; Stemmann, L.; Weissenbach, J.; Wincker, P.; Acinas, S.G.; Sunagawa, S.; Bork, P.; Sullivan, M.B.; Karsenti, E.; Bowler, C.; de Vargas, C.; Raes, J. (2015). Determinants of community structure in the global plankton interactome. Science (Wash.) 348(6237): 9 pp. hdl.handle.net/10.1126/science.1262073
In: Science (Washington). American Association for the Advancement of Science: New York, N.Y. ISSN 0036-8075; e-ISSN 1095-9203, meer
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Auteurs  Top 
  • Lima-Mendez, G.
  • Faust, K.
  • Henry, N.
  • Decelle, J.
  • Colin, S.
  • Carcillo, F.
  • Chaffron, S.
  • Ignacio-Espinoza, J.C.
  • Roux, S.
  • Vincent, F.
  • Bittner, L.
  • Darzi, Y.
  • Wang, J.
  • Audic, S.
  • Berline, L.
  • Bontempi, G.
  • Cabello, A.M.
  • Coppola, L.
  • Cornejo-Castillo, F.M.
  • De Meester, L.
  • Ferrera, I.
  • Garet-Delmas, M.-J.
  • Guidi, L.
  • Lara, E.
  • Pesant, S.
  • Royo-Llonch, M.
  • Salazar, G.
  • Sánchez, P.
  • Sebastian, M.
  • Souffreau, C.
  • Dimier, C.
  • Picheral, M.
  • Searson, S.
  • Kandels-Lewis, S.
  • Gorsky, G.
  • Not, F.
  • Ogata, H.
  • Speich, S.
  • Stemmann, L.
  • Weissenbach, J.
  • Wincker, P.
  • Acinas, S.G.
  • Sunagawa, S.
  • Bork, P.
  • Sullivan, M.B.
  • Karsenti, E.
  • Bowler, C.
  • de Vargas, C.
  • Raes, J.

Abstract
    Species interaction networks are shaped by abiotic and biotic factors. Here, as part of the Tara Oceans project, we studied the photic zone interactome using environmental factors and organismal abundance profiles and found that environmental factors are incomplete predictors of community structure. We found associations across plankton functional types and phylogenetic groups to be nonrandomly distributed on the network and driven by both local and global patterns. We identified interactions among grazers, primary producers, viruses, and (mainly parasitic) symbionts and validated network-generated hypotheses using microscopy to confirm symbiotic relationships. We have thus provided a resource to support further research on ocean food webs and integrating biological components into ocean models.

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