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Phaeocystis, major link in the biogeochemical cycling of climate-relevant elements Van Leeuwe, M.A.; Stefels, J.; Belviso, S.; Lancelot, C.; Verity, P.G.; Gieskes, W.W.C. (Ed.) (2007). Phaeocystis, major link in the biogeochemical cycling of climate-relevant elements. Biogeochemistry, 83(1-3). Springer: Dordrecht. ISBN 978-1-4020-6213-1. 330 pp. https://dx.doi.org/10.1007/978-1-4020-6214-8
Deel van: Biogeochemistry. Springer: Dordrecht; Lancaster; Boston. ISSN 0168-2563; e-ISSN 1573-515X, meer
Bevat: Alderkamp, A.-C.; Buma, A.G.J.; van Rijssel, M. (2007). The carbohydrates of Phaeocystis and their degradation in the microbial food web. Biogeochemistry 83(1-3): 99-118. https://dx.doi.org/10.1007/s10533-007-9078-2, meer
Becquevort, S.; Lancelot, C.; Schoemann, V. (2007). The role of iron in the bacterial degradation of organic matter derived from Phaeocystis antarctica. Biogeochemistry 83(1-3): 119-135. https://dx.doi.org/10.1007/s10533-007-9079-1, meer
Brussaard, C.P.D.; Bratbak, G.; Baudoux, A.-C.; Ruardij, P. (2007). Phaeocystis and its interaction with viruses. Biogeochemistry 83(1-3): 201-215. https://dx.doi.org/10.1007/s10533-007-9096-0, meer
DiTullio, G.R.; Garcia, N.; Riseman, S.F.; Sedwick, P.N. (2007). Effects of iron concentration on pigment composition in Phaeocystis antarctica grown at low irradiance. Biogeochemistry 83(1-3): 71-81. https://dx.doi.org/10.1007/s10533-007-9080-8, meer
Gaebler, S.; Hayes, P.K.; Medlin, L.K. (2007). Methods used to reveal genetic diversity in the colony-forming prymnesiophytes Phaeocystis antarctica, P. globosa and P. pouchetii : preliminary results. Biogeochemistry 83(1-3): 19-27. https://dx.doi.org/10.1007/s10533-007-9084-4, meer
Gieskes, W.W.C.; Leterme, S.C.; Peletier, H.; Edwards, M.; Reid, P.C. (2007). Phaeocystis colony distribution in the North Atlantic Ocean since 1948, and interpretation of long-term changes in the Phaeocystis hotspot in the North Sea. Biogeochemistry 83(1-3): 49-60. https://dx.doi.org/10.1007/s10533-007-9082-6, meer
Medlin, L.; Zingone, A. (2007). A taxonomic review of the genus Phaeocystis. Biogeochemistry 83(1-3): 3-18. https://dx.doi.org/10.1007/s10533-007-9087-1, meer
Nejstgaard, J.C.; Tang, K.W.; Steinke, M.; Dutz, J.; Koski, M.; Antajan, E.; Long, J.D. (2007). Zooplankton grazing on Phaeocystis: A quantitative review and future challenges. Biogeochemistry 83(1-3): 147-172. https://dx.doi.org/10.1007/s10533-007-9098-y, meer
Reigstad, M.; Wassmann, P. (2007). Does Phaeocystis spp. contribute significantly to vertical export of organic carbon? Biogeochemistry 83(1-3): 217-234. https://dx.doi.org/10.1007/s10533-007-9093-3, meer
Rousseau, V.; Chrétiennot-Dinet, M.-J.; Jacobsen, A.; Verity, P.; Whipple, S. (2007). The life cycle of Phaeocystis: state of knowledge and presumptive role in ecology. Biogeochemistry 83(1-3): 29-47. https://dx.doi.org/10.1007/s10533-007-9085-3, meer
Sazhin, A.F.; Artigas, L.F.; Nejstgaard, J.C.; Frischer, M.E. (2007). The colonization of two Phaeocystis species (Prymnesiophyceae) by pennate diatoms and other protists: a significant contribution to colony biomass. Biogeochemistry 83(1-3): 137-145. https://dx.doi.org/10.1007/s10533-007-9086-2, meer
Schmidt, S.; Belviso, S.; Wassmann, P.; Thouzeau, G.; Stefels, J. (2007). Vernal sedimentation trends in north Norwegian fjords: temporary anomaly in 234Th particulate fluxes related to Phaeocystis pouchetii proliferation. Biogeochemistry 83(1-3): 235-244. https://dx.doi.org/10.1007/s10533-007-9094-2, meer
Sedwick, P.N.; Garcia, N.S.; Riseman, S.F.; Marsay, C.M.; DiTullio, G.R. (2007). Evidence for high iron requirements of colonial Phaeocystis antarctica at low irradiance. Biogeochemistry 83(1-3): 83-97. https://dx.doi.org/10.1007/s10533-007-9081-7, meer
Seuront, L.; Lacheze, C.; Doubell, M.J.; Seymour, J.R.; Van Dongen-Vogels, V.; Newton, K.; Alderkamp, A.-C.; Mitchell, J.G. (2007). The influence of Phaeocystis globosa on microscale spatial patterns of chlorophyll a and bulk-phase seawater viscosity. Biogeochemistry 83(1-3): 173-188. https://dx.doi.org/10.1007/s10533-007-9097-z, meer
Shenoy, D.M.; Kumar, M.D. (2007). Variability in abundance and fluxes of dimethyl sulphide in the Indian Ocean. Biogeochemistry 83(1-3): 277-292. https://dx.doi.org/10.1007/s10533-007-9092-4, meer
Stefels, J.; Steinke, M.; Turner, S.M.; Malin, G.; Belviso, S. (2007). Environmental constraints on the production and removal of the climatically active gas dimethylsulphide (DMS) and implications for ecosystem modelling. Biogeochemistry 83(1-3): 245-275. https://dx.doi.org/10.1007/s10533-007-9091-5, meer
Van Leeuwe, M.A.; Stefels, J. (2007). Photosynthetic responses in Phaeocystis antarctica towards varying light and iron conditions. Biogeochemistry 83(1-3): 61-70. https://dx.doi.org/10.1007/s10533-007-9083-5, meer
van Rijssel, M.; Alderkamp, A.-C.; Nejstgaard, J.C.; Sazhin, A.F.; Verity, P.G. (2007). Haemolytic activity of live Phaeocystis pouchetii during mesocosm blooms. Biogeochemistry 83(1-3): 189-200. https://dx.doi.org/10.1007/s10533-007-9095-1, meer
Verity, P.G.; Brussaard, C.P.D.; Nejstgaard, J.C.; Van Leeuwe, M.A.; Lancelot, C.; Medlin, L.K. (2007). Current understanding of Phaeocystis ecology and biogeochemistry, and perspectives for future research. Biogeochemistry 83(1-3): 311-330. https://dx.doi.org/10.1007/s10533-007-9090-6, meer
Whipple, S.J.; Patten, B.C.; Verity, P.G.; Frischer, M.E.; Long, J.D.; Nejstgaard, J.C.; Anderson, J.T.; Jacobsen, A.; Larsen, A.; Martinez-Martinez, J.; Borrett, S.R. (2007). Gaining integrated understanding of Phaeocystis spp. (Prymnesiophyceae) through model-driven laboratory and mesocosm studies. Biogeochemistry 83(1-3): 293-309. https://dx.doi.org/10.1007/s10533-007-9089-z, meer
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Trefwoorden |
Climatic changes Cycles > Chemical cycles > Geochemical cycle > Biogeochemical cycle Ecology Nutrients (mineral) Phaeocystis Lagerheim, 1893 [WoRMS] Marien/Kust |
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