Lehrstuhl für Paläontologie & Geobiologie
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2025

  1. Reichenbacher, B., Bannikov, A.F., Erpenbeck, D. (2025). Earliest gobioid fishes were coral-reef associated dwarfs: New evidence from the Eocene of Monte Bolca, Italy. Journal of Systematic Palaeontology, 23(1):2546601. DOI: 10.1080/14772019.2025.2546601
  2. Zhao, Z., Ma, J., Yang, Q., Wörheide, G., Erpenbeck, D. (2025). First report on presence of mitochondrial introns in freshwater sponges, and pseudogenic evidence of their loss. Journal of Molecular Evolution (in press). DOI: 10.1007/s00239-025-10289-x
  3. Erpenbeck, D., Deister, F., Ekins, M., Dotzler, N., Hooper, J.N.A., Samaai, T., Schätzle, S., van der Sprong, J., Vargas, S., Wörheide, G. (2025) Target-enriched multilocus assay on poriferan museum collections unsettles tethyid classification. Mol Phylogenet Evol 213:108436. DOI: 10.1016/j.ympev.2025.108436
  4. van der Sprong, J., de Voogd, N.J., Schätzle, S., Dotzler, N., Vargas, S., Wörheide, G., Erpenbeck, D. (2025) Moving beyond morphology: Genomic insights into evolutionary histories of haplosclerid sponges. Zoologica Scripta (in press). DOI: 10.1111/zsc.70017
  5. Ruengsawang, N., Sangpradub, N., Cubeddu, T., Erpenbeck, D., Wörheide, G., Pronzato, R., Manconi, R. (2025) Bangkok urban census of aquatic invertebrate fauna by an integrative taxonomic approach: the case of Suan Luang Rama IX Park and its freshwater sponges (Spongillida: Spongillidae). Zootaxa 5660:371–388. DOI: 10.11646/zootaxa.5660.3.4
  6. O. Voigt, M V Wilde, T Fröhlich, B Fradusco, S Vargas, G Wörheide. Genetic parallels in biomineralization of the calcareous sponge Sycon ciliatum and stony corals, eLife. DOI: 10.7554/eLife.106239
  7. Francis, W.R., Vargas, S., Wörheide, G., 2025. Genomic changes are varied across congeneric species pairs of animals. Peer Community Journal 5, e56. DOI: 10.24072/pcjournal.563
  8. Kellermann, M., Cuesta, E., & Rauhut, O.W.M., 2025. Re-evaluation of the Bahariya formation carcharodontosaurid (Dinosauria: Theropoda) and its implications for allosauroid phylogeny. PLoS One, 20, e0311096. DOI: 10.1371/journal.pone.0311096
  9. Delcourt, R., Grillo, O. N., Hendrickx, C., Kellermann, M., & Langer, M. C., 2025. The coelurosaur theropods of the Romualdo formation, early Cretaceous (Aptian) of Brazil: Santanaraptor placidus meets Mirischia asymmetrica. The Anatomical Record, 1–38. DOI: 10.1002/ar.70085
  10. Beccari, V., Guillaume, A.R.D., Jones, M.E.H., Villa, A., Cooper, N., Regnault, S., Rauhut, O.W.M., 2025. An arboreal rhynchocephalian from the Late Jurassic of Germany, and the importance of the appendicular skeleton for ecomorphology in lepidosaurs. Zoological Journal of the Linnean Society 204 (3), zlaf073. DOI: 10.1093/zoolinnean/zlaf073
  11. Beccari, V., Jones, M.E.H., Villa, A., Glaw, F., Rauhut, O.W.M., 2025. A juvenile Pleurosaurus Meyer, 1831 (Lepidosauria: Rhynchocephalia) from the Tithonian of Mörnsheim Formation, Germany. Anatomical Record 308 (3): 844-867. DOI: 10.1002/ar.25545
  12. Becerra, M.G., Pol, D., Cerda, I.A., Porro, L.B., Rauhut, O.W.M., 2025. Postcranial osteology of Manidens condorensis (Ornithischia: Heterodontosauridae) from the Lower Jurassic of Argentina: 3D reconstruction, histology, and phylogenetic implications. Papers in Palaeontology 11 (6), e70053. DOI: 10.1002/spp2.70053
  13. Fernandes, A.E., Tischlinger, H., Rothgaenger, M., Rauhut, O.W.M., 2025. A new species and the earliest occurrence of the Gnathosaurinae from the Late Kimmeridgian of Brunn, Germany. PalZ 99: 339-353. DOI: 10.1007/s12542-025-00725-0
  14. Foth, C. van de Kamp, T., Tischlinger, H., Kantelis, T., Carney, R.M., Zuber, M., Hamann, E., Wallaard, J.J.W., Lenz, N., Rauhut, O.W.M., Frey, E., 2025. A new Archaeopteryx from the lower Tithonian Mörnsheim Formation at Mühlheim (Late Jurassic). Fossil Record 28 (1): 17-43. DOI: 10.3897/fr.28.131671
  15. Rauhut, O.W.M., Canudo, J.I., Castanera, D., 2025. Revision of the theropod dinosaur Camarillasaurus cirugedae from the Early Cretaceous (Barremian) of Teruel province, Spain. Palaeontologia electronica 28(3): a40. DOI: 10.26879/1543
  16. Ebert M, Kölbl-Ebert M (2025) Jurassic fish choking on floating belemnites. Scientific Reports 15: 16095. DOI:10.1038/s41598-025-00163-7
  17. Ebert M, Kölbl-Ebert M (2025): Hunted hunters – prey of Aspidorhynchus (Actinopterygii) within isolated gastrointestinal tracts from the late Jurassic of the Solnhofen Archipelago. Fossil Record 28: 347–357. DOI:10.3897/fr.28.169110
  18. Durieux, T., Harper, C.J., Decombeix, A.L. & Krings, M. (2025). A rare permineralized Sphenophyllum (Sphenophyta, Sphenophyllales) stem containing abundant fungal remains from the Permian auf Autun, central France. Review of Palaeobotany and Palynology 343, 105416. DOI: 10.1016/j.revpalbo.2025.105416
  19. Krings, M. (2025). Deciphering interfungal relationships in the 410-million-year-old Rhynie chert: Glomites bacatus nov. sp. (sporocarp-forming Glomeromycota) and associated microfungi. Review of Palaeobotany and Palynology 343, 105418. DOI: 10.1016/j.revpalbo.2025.105418
  20. Krings, M. (2025). Oldest fossil evidence of cell wall apposition as a plant defense response to fungal invasion, with notes on an analogous mechanism in equally old arbuscular mycorrhizal fungi. Neues Jahrbuch für Geologie und Paläontologie, Abhandlungen 315, 175–185. DOI: 10.1127/njgpa/1272
  21. Krings, M. (2025): Unusual chytrid-like fossils in a land plant cell from the Rhynie cherts. Review of Palaeobotany and Palynology 337, 105315. DOI: 10.1016/j.revpalbo.2025.105315
  22. Moore, Z. & Krings, M. (2025): Morphological diversity of fungal reproductive units in the Lower Devonian Rhynie cherts of Scotland: A new type with a two-layered hyphal mantle. Neues Jahrbuch für Geologie und Paläontologie, Abhandlungen 313, 233–243. DOI: 10.1127/njgpa/2025/1232
  23. Neubauer, T.A., Harzhauser, M., & Sebe, K. (2025). A mixed marine/non-marine mollusk assemblage from the Middle Miocene of Hidas (Hungary). Bulletin of Geosciences, 100(1), 57-86. DOI: 10.3140/bull.geosci.1917
  24. Neubauer, T.A., Gofas, S., & Harzhauser, M. (2025). Biogeographic patterns of modern benthic shallow-water molluscs and the roles of temperature and palaeogeographic legacy. Scientific Reports, 15, 20304. DOI: 10.1038/s41598-025-06473-0
  25. Neubauer, T.A., Karapunar, B., Schneider, S., & Werner, W. (2025). The Mesozoic pectinid genera Velata and Eopecten and their type species (Bivalvia: Pteriomorphia). Neues Jahrbuch für Geologie und Paläontologie - Abhandlungen, 315(1), 39-56. DOI: 10.1127/njgpa/1263
  26. Luján, À.H., Paclík, V., Demirci, E., Villa, A., Neubauer, T.A., Tuncer, A., Ivanov, M., Blanco-Lapaz, À., Vega-Pagán, K.A., & Sanjuan, J. (2025). An Integrated Paleoenvironmental Reconstruction of the Early Pleistocene Hominin-Bearing Site of Dursunlu (Türkiye). Diversity, 17 (9), 631. DOI: 10.3390/d17090631
  27. Neubauer, T.A., Mandic, O., & Sebe, K. (2025). The Early–Middle Miocene freshwater mollusk fauna of the Mecsek Mts. (S Hungary): a biogeographic stepping stone. Bulletin of Geosciences, 100(3), 319-357. DOI: 10.3140/bull.geosci.1948
  28. Pohle, A., Hoffmann, R., Nützel, A, Seuss, B., Aubrechtová, M., Kröger, B., Stevens, K. & Immenhauser, A. (2025). Microstructural and geochemical evidence offers a solution to the cephalopod cameral deposits riddle. Palaeontology 68, 1–29. DOI: 10.1111/pala.70032
  29. Nützel, A., Nose, M. & Hautmann, M. (2025). Latest Triassic bivalves and gastropods from South Germany – implications for the end-Triassic mass extinction and the early evolution of veneroid bivalves. Bulletin of Geosciences 100, 255–270. DOI 10.3140/bull.geosci.1934
  30. Bakayeva, S., D’Arpa, C., Berthet, D., Hryniewicz, C., Nützel A. & Kaim A. (2025). Stem cypraeid gastropods—the revision of the genus Zittelia Gemmellaro, 1869. Annales Societatis Geologorum Poloniae 95, 93–118. DOI: 10.14241/asgp.2025.09
  31. Nützel, A., Schneider, S., Bakayeva, S. & Kaim, A. (2025). The earliest cowries: the origin of cypraeoid gastropods. Acta Palaeontologica Polonica 70, 213–223. DOI: 10.4202/app.01245.2025
  32. Thielecke, A., Fernández-Méndez, M., Arístegui, J., Baumann, M., Behncke, J., Berger, S.A., Georgieva, S., Goldenberg, S., Gomez-Saez, G.V., Graco, M., Heene, T., Kittu, L., Krause, J., Ludwig, A., Meyer, J., Mohrholz, V., Nejstgaard, J.C., Ortiz, J., Schulz, K., Smith, A., Spilling, K., Sswat, M., Taucher, J., Vanharanta, M., Varmanen, P., Riebesell, U. (2025) Disentangling upwelling: how light and nutrient supply shape primary producers and stoichiometry in the Humboldt Upwelling system. Deep-Sea Research Part II 223, 105522. DOI: 10.1016/j.dsr2.2025.105522
  33. Coskun, Ö.K., Orsi, W.D., D´Hondt, S., Gomez-Saez, G.V. (2025) Identifying the active microbes driving organosulfur cycling from taurine and methionine in marine sediment. ISME communications, ycaf033. DOI: 10.1093/ismeco/ycaf033
  34. Helmbrecht, V., Reichelt, R., Grohmann, D., & Orsi, W. D. (2025). Simulated early Earth geochemistry fuels a hydrogen-dependent primordial metabolism. Nature Ecology & Evolution, 1-10. DOI: 10.1038/s41559-025-02676-w
  35. Mills DB, Vuillemin A, Muschler K, Coskun Ö, Orsi W* (2025) The rise of algae promoted eukaryote predation in the Neoproterozoic benthos. Science Advances 11, eadt2147. DOI: 10.1126/sciadv.adt2147
  36. Stuehrenberg J, Kitzinger K, von Arx J, Graf J, Lavik G, Littmann S, Milucka J, Orsi W, Schorn S, Speth D, Vuillemin A, Wu S, Marchant H, Kuypers M (2025) Urea use drives niche separation between dominant marine ammonia oxidizing archaea. Nature Communications. DOI: 10.1038/s41467-025-67048-1
  37. Fierer, N Leung PM, Lappan R, Eisenhofer R, Ricci F, Holland SI, Dragone N, Blackall LL, Dong X, Dorador C, Ferrari BC, Goordial J, Holmes SP, Inagaki F, Korem R, Li SS, Makhalanyane TP, Metcalf JL, Nagarajan N, Orsi W, Shanahan ER, Walker A, Weyrich L, Gilbert J, Willis A, Callahan B, Shade A, Parkhill J, Banfield J & Greening C (2025) Guidelines for preventing and reporting contamination in low-biomass microbiome studies. Nature Microbiology 10, 1570–1580. DOI: 10.1038/s41564-025-02035-2
  38. Kopperud B.T. & Höhna S. 2025. Phylogenetic Estimation of Branch-specific Shifts in the Tempo of Origination. Systematic Biology, 74(6), 985-1006. DOI: 10.1093/sysbio/syaf041
  39. Capobianco A. & Höhna S. 2025. On the Mkv Model with Among-Character Rate Variation. Systematic Biology, 74(6), 952-966. DOI: 10.1093/sysbio/syaf038
  40. Capobianco A. 2025. How many characters are needed to reconstruct a phylogeny? Biology Letters, 21 (10): 20250288. DOI: 10.1098/rsbl.2025.0288
  41. Zhu W. & Höhna S. 2025. Two-step Species Tree Inference under the Multispecies Coalescent Using Full-Likelihood. Evolutionary Journal of the Linnean Society, 4(1), kzaf018. DOI: 10.1093/evolinnean/kzaf018
  42. Zhu, W., Chen, L., van der Burgt, X.M., Haba, P.M., Garaeva, D., Lau, P., Morales-Briones, D.F. & Veranso-Libalah, M.C. (2025). Rediscovery and phylogenomic placement of Feliciadamia stenocarpa (Feliciadamieae: Melastomataceae): assessing gene tree discordance. Botanical Journal of the Linnean Society, 1-16. DOI: 10.1093/botlinnean/boaf047
  43. Paterson R.S. , Mackie M., Capobianco A., Heckeberg N.S., Fraser D., Demarchi B., Munir F., Patramanis I., Ramos-Madrigal J., Liu S., Ramsøe A.D., Dickinson M.R., Baldreki C., Gilbert M., Sardella R., Bellucci L., Scorrano G., Leonardi M., Manica A., Racimo F., Willerslev E., Penkman K.E.H., Olsen J.V., MacPhee R.D.E., Rybczynski N., Höhna S. & Cappellini E. Phylogenetically-informative proteins from an Early Miocene rhinocerotid. Nature, 643 (8072), 719-724. DOI: 10.1038/s41586-025-09231-4
  44. Blanco F., Lazagabaster I.A., Sanisidro Ó., Bibi F., Heckeberg N.S., Ríos M., Mennecart B., Alberdi M.T., Prado S.L., Saarinen J., Silvestro D., Müller J., Calatayud J. & Cantalapiedra J.L. 2025. Two major ecological shifts shaped 60 million years of ungulate faunal evolution. Nature Communications, 16:4648. DOI: 10.1038/s41467-025-59974-x
  45. Heckeberg N.S. 2025. The Systematics of Cervidae. Deer of the World. DOI: 10.1007/978-3-031-17756-9_1
  46. Catalán A., Gygax D., Candolin U., Tusso S., Duchen P & Höhna S. 2025. Sex-biased migration and demographic history of the big European firefly Lampyris noctiluca. Molecular Biology and Evolution, 42:6, msaf123. DOI: 10.1093/molbev/msaf123
  47. Höhna S. & Catalán A. 2025. Bayesian StairwayPlot for Inferring Single Population Demographic Histories from Site Frequency Spectra. Molecular Ecology Resources, 25:e14087. DOI: 10.1111/1755-0998.14087
  48. Darlim G. & Höhna S. 2025. The effects of cryptic diversity on diversification dynamics analyses in Crocodylia. Proceedings of the Royal Society B., 292 (2043): 20250091. DOI: 10.1098/rspb.2025.0091
  49. Olroyd S.L. & Kopperud B.T. 2025. Allometry of sound reception structures and evidence for a mandibular middle ear in non-mammalian synapsids. Evolution, 79(6), 905-921. DOI: 10.1093/evolut/qpaf041
  50. Höhna S., Lower S.E., Duchen P. & Catalán A. 2025. Robustness of divergence time estimation despite gene tree estimation error: a case study of fireflies (Coleoptera: Lampyridae). Systematic Biology, 74(2), 335-348. DOI: 10.1093/sysbio/syae065
  51. Mulvey L.P.A., May M.R., Brown J.M., Höhna S., Wright A.M. & Warnock R.C.M. 2025. Assessing the Adequacy of Morphological Models Using Posterior Predictive Simulations. Systematic Biology, 74(1), 34-52. DOI: 10.1093/sysbio/syae055
  52. Capobianco A., Zouhri S., Friedman M. 2025. A long-snouted marine bonytongue (Teleostei: Osteoglossidae) from the early Eocene of Morocco and the phylogenetic affinities of marine osteoglossids. Zoological Journal of the Linnean Society, 203(1), zlae015. DOI: 10.1093/zoolinnean/zlae015