Family
Saccomorphidae Wisshak, Knaust et Bertling, 2019
Taxon description
Wisshak et al., 2019a
Diagnosis: Spherical, sac-shaped, or multilobate microborings interconnected by thin tunnels.
Ethological category: Fodinichnia (combined dwelling and feeding traces).
Selection of related publications
Golubić, S., Radtke, G., Hook, J. E., Campbell, S. E. 2024. Ichnotaxonomy of microboring traces in marine aphotic depths. Geologia Croatica 77, 3, 193-233. DOI:10.4154/gc.2024.19
Peel, J. S. 2024. Musculature of an Ordovician (Darriwilian) patelliform gastropod from Estonia. GFF 145, 3-4, 113–122. DOI:10.1080/11035897.2023.2301542
Martinell, J., Domènech, R. 2022. Bioerosió en molluscs pleistocens de la plataforma marina catalana [Bioerosion in Pleistocene mollusks from the Catalan marine platform]. Nemus 12, 237-261.
Wisshak, M., Meyer, N., Kuklinski, P., Rüggeberg, A., Freiwald, A. 2022. ‘Ten Years After’—a long‐term settlement and bioerosion experiment in an Arctic rhodolith bed (Mosselbukta, Svalbard). Geobiology 20, 1, 112-136. DOI:10.1111/gbi.12469
Meyer, N., Wisshak, M., Freiwald, A. 2021. Bioerosion ichnodiversity in barnacles from the Ross Sea, Antarctica. Polar Biology 44, 4, 667-682. DOI:10.1007/s00300-021-02825-4
Seuss, B., Nützel, A. 2019. Bioerosion in fossil cephalopods: a case study from the Upper Carboniferous Buckhorn Asphalt Quarry Lagerstätte, Oklahoma, USA. Facies 65, 2, 6-17. DOI:10.1007/s10347-018-0547-y
Wisshak, M., Meyer, N., Radtke, G., Golubić, S. 2018. Saccomorpha guttulata: a new marine fungal microbioerosion trace fossil from cool- to cold-water settings. Paläontologische Zeitschrift 92, 3, 525-533. DOI:10.1007/s12542-018-0407-7
Charó, M. P., Cavallotto, J. L., Aceñolaza, G. 2017. Macrobioerosion and Microbioerosion in Marine Molluscan Shells from Holocene and Modern Beaches (39°-40°S, South of Buenos Aires Province, Argentina). Acta Geologica Sinica 91, 4, 1215-1230. DOI:10.1111/1755-6724.13356
Golubić, S., Radtke, G., Campbell, S. E., Lee, S.-J., Vogel, K., Wisshak, M. 2014. The Complex Fungal Microboring Trace Saccomorpha stereodiktyon isp. nov. Reveals Growth Strategy of its Maker. Ichnos 21, 2, 100-110. DOI:10.1080/10420940.2014.888301
Radtke, G., Glaub, I., Vogel, K., Golubić, S. 2010. A New Dichotomous Microboring: Abeliella bellafurca isp. nov., Distribution, Variability and Biological Origin. Ichnos 17, 1, 25-33. DOI:10.1080/10420940903358628
Vogel, K., Brett, C. E. 2009. Record of microendoliths in different facies of the Upper Ordovician in the Cincinnati Arch region USA: The early history of light-related microendolithic zonation. Palaeogeography, Palaeoclimatology, Palaeoecology 281, 1-2, 1-24. DOI:10.1016/j.palaeo.2009.06.032
Santos, A., Mayoral, E. 2008. Bioerosion versus colonisation on Bivalvia: A case study from the Upper Miocene of Cacela (southeast Portugal). Geobios 41, 1, 43-59. DOI:10.1016/j.geobios.2007.01.009
Wisshak, M., Seuß, M., Nützel, A. 2008. Evolutionary implications of an exceptionally preserved Carboniferous microboring assemblage in the Buckhorn Asphalt lagerstätte (Oklahoma, USA). Current Developments in Bioerosion, pp. 21-54. Springer. DOI:10.1007/978-3-540-77598-0_2
Wisshak, M., Gektidis, M., Freiwald, A., Lundälv, T. 2005. Bioerosion along a bathymetric gradient in a cold-temperate setting (Kosterfjord, SW Sweden): an experimental study. Facies 51, 1-4, 93-117. DOI:10.1007/s10347-005-0009-1
Radtke, G., Golubić, S. 2005. Microborings in mollusk shells, Bay of Safaga, Egypt: Morphometry and ichnology. Facies 51, 1-4, 118-134. DOI:10.1007/s10347-005-0016-02
Bundschuh, M., Balog, S.-J. 2000. Fasciculus rogus nov. isp., an endolithic trace fossil. Ichnos 7, 2, 149-152. DOI:10.1080/10420940009380153
Bundschuh, M. 2000. Silurische Mikrobohrspuren - ihre Beschreibung und Verteilung in verschiedenen Faziesräumen (Schweden, Litauen, Großbritannien und USA). pp. 1-129. Johann Wolfgang Goethe University.
Glaub, I. 1994. Mikrobohrspuren in ausgewählten Ablagerungsräumen des europäischen Jura und der Unterkreide (Klassifikation und Palökologie). Courier Forschungsinstitut Senckenberg 174, 1-324.
Schmidt, H. 1992. Mikrobohrspuren ausgewählter Faziesbereiche der tethyalen und germanischen Trias (Beschreibung, Vergleich und bathymetrische Interpretation). Frankfurter geowissenschaftliche Arbeiten; A: Geologie, Paläontologie 12, 1-228.
Radtke, G. 1991. Die mikroendolithischen Spurenfossilien im Alt-Tertiär West-Europas und ihre palökologische Bedeutung. Courier Forschungsinstitut Senckenberg 138, 1-185.
Mayoral, E. 1988. Pennatichnus nov. icnogen.; Pinaceocladichnus nov. icnogen. e Iramena. Huellas de bioerósion debidas a Bryozoa perforantes (Ctenostomata, Plioceno inferior) en la cuenca del Bajo Guadalquivir [Pennatichnus nov. icnogen; Pinaceocladichnus nov. icnogen. and Iramena. Bioerósion traces due to perforating Bryozoa (Ctenostomata, lower Pliocene) in the Lower Guadalquivir basin]. Revista Española de Paleontología 3, 13–23.
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