Traits taxon details
Neogloboquadrina dutertrei (d'Orbigny, 1839)
113473 (urn:lsid:marinespecies.org:taxname:113473)
accepted
Species
Globoquadrina dutertrei (d'Orbigny, 1839) · unaccepted
marine, brackish, fresh, terrestrial
recent + fossil
(of ) Orbigny, A. D. d'. (1839). Foraminifères, in de la Sagra R., Histoire physique, politique et naturelle de l'ile de Cuba. <em>A. Bertrand.</em> 1-224., available online at https://books.google.pt/books?id=KpVeAAAAcAAJ&pg [details]
Hayward, B.W.; Le Coze, F.; Vachard, D.; Gross, O. (2021). World Foraminifera Database. Neogloboquadrina dutertrei (d'Orbigny, 1839). Accessed through: Marine Species Traits editorial board (2021) Marine Species Traits at: http://marinespecies.org/traits/aphia.php?p=taxdetails&id=113473 on 2025-05-27
Marine Species Traits editorial board (2025). Marine Species Traits. Neogloboquadrina dutertrei (d'Orbigny, 1839). Accessed at: https://www.marinespecies.org/traits/aphia.php?p=taxdetails&id=113473 on 2025-05-27
original description
(of ) Orbigny, A. D. d'. (1839). Foraminifères, in de la Sagra R., Histoire physique, politique et naturelle de l'ile de Cuba. <em>A. Bertrand.</em> 1-224., available online at https://books.google.pt/books?id=KpVeAAAAcAAJ&pg [details]
context source (Deepsea) Intergovernmental Oceanographic Commission (IOC) of UNESCO. The Ocean Biogeographic Information System (OBIS), available online at http://www.iobis.org/ [details]
context source (Bermuda) Deuser, W. G. et al. (1981). Seasonal changes in species composition, numbers, mass, size and isotopic composition of planktonic Foraminifera settling into the deep Sargasso Sea. Palaeogeography, Palaeoclimatology, Palaeoecology, 33: 103-127 [details]
basis of record Gross, O. (2001). Foraminifera, <B><I>in</I></B>: Costello, M.J. <i>et al.</i> (Ed.) (2001). <i>European register of marine species: a check-list of the marine species in Europe and a bibliography of guides to their identification. Collection Patrimoines Naturels,</i> 50: pp. 60-75 (look up in IMIS) [details]
additional source Sen Gupta, B. K.; Smith, L. E.; Machain-Castillo, M. L. (2009). Foraminifera of the Gulf of Mexico in Felder, D.L. and D.K. Camp (eds.), Gulf of Mexico–Origins, Waters, and Biota. <em>Biodiversity. Texas A&M Press, College Station, Texas.</em> 87-129. [details] Available for editors
ecology source Leles, S. G.; Mitra, A.; Flynn, K. J.; Stoecker, D. K.; Hansen, P. J.; Calbet, A.; McManus, G. B.; Sanders, R. W.; Caron, D. A.; Not, F.; Hallegraeff, G. M.; Pitta, P.; Raven, J. A.; Johnson, M. D.; Glibert, P. M.; Våge, S. (2017). Oceanic protists with different forms of acquired phototrophy display contrasting biogeographies and abundance. <em>Proceedings of the Royal Society B: Biological Sciences.</em> 284(1860): 20170664., available online at https://doi.org/10.1098/rspb.2017.0664 [details] Available for editors
ecology source Takagi, H.; Kimoto, K.; Fujiki, T.; Saito, H.; Schmidt, C.; Kucera, M.; Moriya, K. (2019). Characterizing photosymbiosis in modern planktonic foraminifera. <em>Biogeosciences.</em> 16(17): 3377-3396., available online at https://doi.org/10.5194/bg-16-3377-2019 [details] Available for editors
ecology source Mitra, A.; Caron, D. A.; Faure, E.; Flynn, K. J.; Leles, S. G.; Hansen, P. J.; McManus, G. B.; Not, F.; Do Rosario Gomes, H.; Santoferrara, L. F.; Stoecker, D. K.; Tillmann, U. (2023). The Mixoplankton Database (MDB): Diversity of photo‐phago‐trophic plankton in form, function, and distribution across the global ocean. <em>Journal of Eukaryotic Microbiology.</em> 70(4)., available online at https://doi.org/10.1111/jeu.12972 [details]
ecology source Gastrich, M.D. (1987). Ultrastructure of a new intracellular symbiotic alga found within planktonic foraminifera. <em>Journal of Phycology.</em> 23:623-632. [details]
ecology source Groeneveld, J.; Filipsson, H. L.; Austin, W. E. N.; Darling, K.; McCarthy, D.; Quintana Krupinski, N. B.; Bird, C.; Schweizer, M. (2018). Assessing proxy signatures of temperature, salinity, and hypoxia in the Baltic Sea through foraminifera-based geochemistry and faunal assemblages. <em>Journal of Micropalaeontology.</em> 37(2): 403-429., available online at https://doi.org/10.5194/jm-37-403-2018 [details]
ecology source Bird, C.; Darling, K. F.; Russell, A. D.; Fehrenbacher, J. S.; Davis, C. V.; Free, A.; Ngwenya, B. T. (2018). 16S rRNA gene metabarcoding and TEM reveals different ecological strategies within the genus Neogloboquadrina (planktonic foraminifer). <em>PLOS ONE.</em> 13(1): e0191653., available online at https://doi.org/10.1371/journal.pone.0191653 [details]
context source (Deepsea) Intergovernmental Oceanographic Commission (IOC) of UNESCO. The Ocean Biogeographic Information System (OBIS), available online at http://www.iobis.org/ [details]
context source (Bermuda) Deuser, W. G. et al. (1981). Seasonal changes in species composition, numbers, mass, size and isotopic composition of planktonic Foraminifera settling into the deep Sargasso Sea. Palaeogeography, Palaeoclimatology, Palaeoecology, 33: 103-127 [details]
basis of record Gross, O. (2001). Foraminifera, <B><I>in</I></B>: Costello, M.J. <i>et al.</i> (Ed.) (2001). <i>European register of marine species: a check-list of the marine species in Europe and a bibliography of guides to their identification. Collection Patrimoines Naturels,</i> 50: pp. 60-75 (look up in IMIS) [details]
additional source Sen Gupta, B. K.; Smith, L. E.; Machain-Castillo, M. L. (2009). Foraminifera of the Gulf of Mexico in Felder, D.L. and D.K. Camp (eds.), Gulf of Mexico–Origins, Waters, and Biota. <em>Biodiversity. Texas A&M Press, College Station, Texas.</em> 87-129. [details] Available for editors

ecology source Leles, S. G.; Mitra, A.; Flynn, K. J.; Stoecker, D. K.; Hansen, P. J.; Calbet, A.; McManus, G. B.; Sanders, R. W.; Caron, D. A.; Not, F.; Hallegraeff, G. M.; Pitta, P.; Raven, J. A.; Johnson, M. D.; Glibert, P. M.; Våge, S. (2017). Oceanic protists with different forms of acquired phototrophy display contrasting biogeographies and abundance. <em>Proceedings of the Royal Society B: Biological Sciences.</em> 284(1860): 20170664., available online at https://doi.org/10.1098/rspb.2017.0664 [details] Available for editors

ecology source Takagi, H.; Kimoto, K.; Fujiki, T.; Saito, H.; Schmidt, C.; Kucera, M.; Moriya, K. (2019). Characterizing photosymbiosis in modern planktonic foraminifera. <em>Biogeosciences.</em> 16(17): 3377-3396., available online at https://doi.org/10.5194/bg-16-3377-2019 [details] Available for editors

ecology source Mitra, A.; Caron, D. A.; Faure, E.; Flynn, K. J.; Leles, S. G.; Hansen, P. J.; McManus, G. B.; Not, F.; Do Rosario Gomes, H.; Santoferrara, L. F.; Stoecker, D. K.; Tillmann, U. (2023). The Mixoplankton Database (MDB): Diversity of photo‐phago‐trophic plankton in form, function, and distribution across the global ocean. <em>Journal of Eukaryotic Microbiology.</em> 70(4)., available online at https://doi.org/10.1111/jeu.12972 [details]
ecology source Gastrich, M.D. (1987). Ultrastructure of a new intracellular symbiotic alga found within planktonic foraminifera. <em>Journal of Phycology.</em> 23:623-632. [details]
ecology source Groeneveld, J.; Filipsson, H. L.; Austin, W. E. N.; Darling, K.; McCarthy, D.; Quintana Krupinski, N. B.; Bird, C.; Schweizer, M. (2018). Assessing proxy signatures of temperature, salinity, and hypoxia in the Baltic Sea through foraminifera-based geochemistry and faunal assemblages. <em>Journal of Micropalaeontology.</em> 37(2): 403-429., available online at https://doi.org/10.5194/jm-37-403-2018 [details]
ecology source Bird, C.; Darling, K. F.; Russell, A. D.; Fehrenbacher, J. S.; Davis, C. V.; Free, A.; Ngwenya, B. T. (2018). 16S rRNA gene metabarcoding and TEM reveals different ecological strategies within the genus Neogloboquadrina (planktonic foraminifer). <em>PLOS ONE.</em> 13(1): e0191653., available online at https://doi.org/10.1371/journal.pone.0191653 [details]




To Biodiversity Heritage Library (4 publications)
To European Nucleotide Archive, ENA (Neogloboquadrina dutertrei)
To GenBank (186 nucleotides; 0 proteins)
To Mikrotax (Neogloboquadrina dutertrei (d'Orbigny, 1839))
To MNHN Fossil collection (Neogloboquadrina dutertrei (d'ORBIGNY, 1839); Lectotype; F.FO306)
To PESI
To European Nucleotide Archive, ENA (Neogloboquadrina dutertrei)
To GenBank (186 nucleotides; 0 proteins)
To Mikrotax (Neogloboquadrina dutertrei (d'Orbigny, 1839))
To MNHN Fossil collection (Neogloboquadrina dutertrei (d'ORBIGNY, 1839); Lectotype; F.FO306)
To PESI
From editor or global species database