Publications for 2025

Peer-reviewed scientific journal publications

*About 96 articles have been reported until now

Kuhn, M., Olefeldt, D., Arndt, K.A.... Varner, R.K., et al., 2025. Current and future methane emissions from boreal-Arctic wetlands and lakes. Nat. Clim. Chang. 15, 986–991. https://doi.org/10.1038/s41558-025-02413-y

ten Hientbrik, S., Dugan, B., Patton, H, and Hong, W-L., 2025. Impact of glacial-interglacial cycles on the groundwater system of the Lofoten-Vesterålen continental margin, Norway, since the Last Interglacial. Hydrogeology Journal. https://doi.org/10.1007/s10040-025-02994-0

Oskolkov, N., Jin, C., Clinton, S.L., Guinet, B., Wijnands, F., Johnson, E., Kutschera, V.E., Kinsella, C.M., Heintzman, P.D., van der Valk, T., 2025. Improving taxonomic inference from ancient environmental metagenomes by masking microbial-like regions in reference genomes. GigaScience: 14, giaf108. https://doi.org/10.1093/gigascience/giaf108

Chacón-Duque, J.C., Thorpe, J.A.T., Li, W., Dehasque, M., Pečnerová, P., Barlow, A., Díez-del-Molino, D., Henneberger, K., Jin, C., Moreland, K.N., Paijmans, J.L.A., van der Valk, T., Westbury, M.V., Wijnands, F., Barnes, I., Germonpré, M., Hall, E., Hewitson, S., Mol, D., Nikolskiy, P., Sablin, M., Vartanyan, S., Zazula, G.D., Götherström, A., Lister, A.M., Hofreiter, M., Heintzman, P.D., Dalén, L., 2025. A Million Years of Mammoth Mitogenome Evolution. Molecular Biology and Evolution: 42, 4, msaf065. https://doi.org/10.1093/molbev/msaf065

Zetter, S., Garcés-Pastor, S., Lammers, Y., Brown, A. G., Walsh, K., Goslar, T., Lavergne, S., Coissac, E., Consortium, P., Tribsch, A., Heintzman, P. D., & Greve Alsos, I., 2025. SedaDNA shows that transhumance of domestic herbivores has enhanced plant diversity over the Holocene in the Eastern European Alps. The Holocene: 35(4), 383–396. https://doi.org/10.1177/09596836241307304

Wooldridge, T.B., Wang, M-S., Saremi, N.F., Kapp, J.D., Moon, K.L., Heintzman, P.D., Dumbacher, J.P., Alagona, P.S., Long, B., Shapiro, B., 2025. Genomic data from the extinct California brown bear suggests a source population for reintroduction to California. Journal of Heredity: 116, 4, 422–434. https://doi.org/10.1093/jhered/esaf018

Stewart, J.R., Alsos, I.G., Brown, A.G., Dalén, L., Heintzman, P.D., 2025. The progressive evolution of cold-adapted species. Trends in Ecology & Evolution: 40, 7, 687-698, ISSN 0169-5347. https://doi.org/10.1016/j.tree.2025.04.005

Sharif, M.B., Ferry, B., Fuchs, J., Cronholm, B., Heintzman, P.D., Dalén, L., 2025. Environmental DNA from peck marks shows potential for non‑invasive monitoring of woodpeckers. PLOS. https://doi.org/10.1371/journal.pone.0328831

Rijal, D.P., Bråthen, K.A., Brown, A.G., Heintzman, P.D., Alsos, I.G., Yoccoz, N.G., 2025. Millennia of Metacommunity Diversification and Homogenization Captured by Sedimentary Ancient DNA. Ecology Letters: 28(9), e70218. https://doi.org/10.1111/ele.70218

Dehasque, M., van der Valk, T., Chacón-Duque, J.C., Termes, L., Larsson, P., Moots, H.M., Tubbesing, F., Larsdotter, J., Oteo-García, G., Moreland, K., van Essen, H., Arbour, V., Keddie, G., Richards, M.P., Díez-del-Molino, D., Heintzman, P.D., Lister, A., Dalén, L., 2025. Genomic and morphological analysis reveals long-term mammoth hybridization in British Columbia, Canada. Biol Lett: 21 (9): 20250305. https://doi.org/10.1098/rsbl.2025.0305

Gilardet, A., Oppenheimer, J., Sinding, M-H. S., Lord, E., Chacón-Duque, J.C., Oteo-García, G., Xenikoudakis, G., Kosintsev, P., Southon, J., Vasiliev, S.K., Shunkov, M.V., Kozlikin, M.B., Douka, K., Shapiro, B., Heintzman, P.D., Dalén, L., 2025. Paleogenomics Reveals a Loss of Bovine Lineages in Mid-latitude Asia Over the Last 200,000 Years. Genome Biology and Evolution: 17, 11, evaf206. https://doi.org/10.1093/gbe/evaf206

Garcés-Pastor, S., Heintzman, P.D., Zetter, S. et al., 2025. Wild and domesticated animal abundance is associated with greater late-Holocene alpine plant diversity. Nat Commun: 16, 3924. https://doi.org/10.1038/s41467-025-59028-2

von Friesen, L.W., Löscher, C.R., Bertilsson, S., Farnelid, H., Snoeijs-Leijonmalm, P., Sundbom, M., Traving, S.J., Vermassen, F., Riemann, L., 2025. Nitrogen Fixation Potential in Bathypelagic Sediment of the Ice-Covered Arctic Ocean Revealed Through Long-Term Stable Isotope Incubations. Environmental Microbiology Reports: 17(5), e70173. https://doi.org/10.1111/1758-2229.70173

Zhao, S., Saad, E.M., Pickering, R.A., Liu, P., Zuo, H., Zhao, L., Ingall, E., Taillefert, M., Reinhard, C.T., [...], and Tang, Y., 2025. Rapid transformation of biogenic silica to authigenic clay: Mechanisms and geochemical constraints. Science Advances: 11(44), eadt3374. DOI: 10.1126/sciadv.adt3374

Michalopoulos, P., Krause, J.W., Pickering, R.A. et al., 2025. Rapid microbial activity in marine sediments significantly enhances silica cycling rates compared to abiotic processes. Commun Earth Environ: 6, 982. https://doi.org/10.1038/s43247-025-02941-7

Closset, I., Baronas, J.J., Torricella, F., de Tombeur, F., Liguori, B.T.P., Petrucciani, A., Bryan, N., López-Acosta, M., Churakova, Y., Thielecke, A.U., Zhang, Z., Monferrer, N.L., Pickering, R.A., Guyomard, M., and Zhu, D., 2025. Silicification in the ocean: from molecular pathways to silicifiers' ecology and biogeochemical cycles. Ocean ScienceOpen source preview, 2025, 21(6), pp. 3427–3470. https://doi.org/10.5194/os-21-3427-2025

Zhang, S-J., Scarsbrook, L., Li, H., Carmagnini, A., Charlton, S., Feuerborn, T., ... Linderholm, A., ... and Wang, G-D., 2025. Science: 390(6774), pp. 735–740. DOI: 10.1126/science.adu2836

Evin, A., Ameen, C., Brassard, C., Dennis, S., Antipina, E.E., Bonhomme, V., Boudadi-Maligne, M., Britton, K., Cano, F.G., Carden, R.F., Claude, J., Colominas, L., Curth, S., Fedorov, S.E., Frances, J., Kalthoff, D.C., Kitchener, A.C., Knecht, R., Kosintsev, P., Linderholm, A., ... and Larson, G., 2025. The emergence and diversification of dog morphology. Science: 390(6774), pp. 741–744. DOI: 10.1126/science.adt0995

Quintela, O., Burchardt, S., Mattsson, T., Almqvist, B., Stevenson, C., McCarthy, W., Óskarsson, B.V., Pitcairn, I., Rhodes, E., Witcher, T., Greiner, S.H.M., Latimer, B., 2025. The Magnetic Fingerprint of Pulsed Granite Magma Emplacement and Alteration: Slaufrudalur Pluton, Iceland. Geochemistry Geophysics Geosystems: 26(9), e2025GC012199. https://doi.org/10.1029/2025GC012199

Dunst, R., Pitcairn, I., Jansson, N.F. et al., 2025. Element mobility during regional hydrothermal sodium and magnesium alteration: implications for ore formation in the Bergslagen ore district, Sweden. Miner Deposita. https://doi.org/10.1007/s00126-025-01390-8

Wasiljeff, J., Yu, C., Heikkilä, P., Lahaye, Y., Kurhila, M., Hong, W‐L., Lepland, A., Suuroja, S., Liebetrau, V., Virtasalo, J.J., 2025. Mineral phases and growth conditions of morphologically diverse shelfal ferromanganese concretions. Geochimica et Cosmochimica Acta: 400, 227-247,
ISSN 0016-7037. https://doi.org/10.1016/j.gca.2025.05.012

Szymczycha, B., Diak, M., Hong, W-L., Böttcher, M.E., Lepland, A., Makuch, P., ten Hietbrink, S., Saghravani, S.R., Sen, A., Winogradow, A., Silberberger, M.J., 2025. Submarine groundwater discharge and gas hydrate dissociation fuel organic matter formation in Arctic fjord sediments.
Marine Chemistry: 273, 104570, ISSN 0304-4203. https://doi.org/10.1016/j.marchem.2025.104570

Regnéll, C., Greenwood, S.L., Gyllencreutz, R., Peterson, G., Regnéll, J., Öhrling, C., Hardeng, J., Johnson, E., Bakke, J., Cederstrøm, J.M., 2025. Anchoring the Swedish Time Scale to the radiocarbon time scale—An absolute age for De Geer’s zero varve. Geology: 53 (7), 601–606. https://doi.org/10.1130/G53280.1

Bisander, T., Prytherch, J., and Brüchert, V., 2025. Methane ebullition as the dominant pathway for carbon sea-air exchange in coastal, shallow water habitats of the Baltic Sea. Biogeosciences: 22, 4779–4796. https://doi.org/10.5194/bg-22-4779-2025

Chanda, P., Misra, S., Dalai, T.K., Bohlin, M.S., Stevenson, E.I., Williams, H.M., 2025. How estuaries modulate the riverine fluxes of copper (Cu) and cadmium (Cd) to seawater. Chemical Geology: 694, 123011, ISSN 0009-2541. https://doi.org/10.1016/j.chemgeo.2025.123011

Skelton, A., Noone, K.J., 2025. The Case for the Anthropocene Epoch Is Stronger Than the Case for the Holocene Epoch. Earth S Future: 13(5), e2024EF005719. https://doi.org/10.1029/2024EF005719

Toftgård, A., Wedberg, R., Skelton, A., Olsson, M.J., Niemi, M., 2025. Making the difficult easy: Reducing carbon footprint while preserving quality of life through effective behavior change,
Energy Research & Social Science: 127, 104266, ISSN 2214-6296. https://doi.org/10.1016/j.erss.2025.104266

Uysal, I.T., Karabacak, V., Aykut, T., Ring, U., Liu, E., Sancar, T., Leonard, N., Tong, K., Todd, A.J., Temel, A., 2025. Was the Formation of the North Anatolian Fault Influenced by the Aegean Extension? Terra Nova: 37(5), pp. 342–352. https://doi.org/10.1111/ter.12782

Peillod, A., Hess, B., Moulas, E., Hector, S., Patten, C.G.C., Beranoaguirre, A., Ring, U., 2025.
Duration of isobaric heating and slab rollback in the Aegean extensional province, Eastern Mediterranean: Evidence from garnet diffusion modelling. Earth and Planetary Science Letters: 663, 119409, ISSN 0012-821X. https://doi.org/10.1016/j.epsl.2025.119409

Ring, U., Glodny, J. & Peillod, A., 2025 Top-to-the-S vs top-to-the-N extensional shearing in the southern Cyclades, Aegean Sea, Greece: new geochronologic data. Int J Earth Sci (Geol Rundsch) 114, 825–840. https://doi.org/10.1007/s00531-025-02521-2

Aykut, T., Yıldırım, C., Uysal, I.T., Ring, U., Zhao, J-X., 2025. Coeval upper crustal extension and surface uplift in the Central Taurides (Türkiye) above the Cyprus Subduction Zone. Nat Commun: 16, 3921). https://doi.org/10.1038/s41467-024-55802-w

Yeshanew, F. G., Whitehouse, M. J., Pease, V., Badenszki, E., & Daly, J. S., 2025. Continental-scale sediment mixing and dispersal across northern Gondwana: detrital zircon U-Pb-O-Hf isotopic evidence from the Cambro-Ordovician sandstones overlying the Arabian Shield. International Geology Review: 67(3), 285–305. https://doi.org/10.1080/00206814.2024.2392142

Yang, F., Yin, J., Yang, Z., Fowler, M., Kerr, A.C., Pease, V., Strachan, R., Chen, W., Tao, Z., Chen, Y., Wang, T., Xiao, W., 2025. Petrogenesis of Late Miocene High Ba–Sr Granitoids in Eastern Pamir, Northwest Tibetan Plateau: Insights into Lithospheric Mantle Evolution and Geodynamic Processes during India–Asia Bidirectional Subduction. Journal of Petrology: 66, 4, egaf026. https://doi.org/10.1093/petrology/egaf026

Zhang, Q -H., Su, B., Chen, Y., Pease, V., Peng, T-P., Chu, Z-Y., Li, Y-B., Shi, K-H., Chen, S., 2025. Fragments of ancient continental lithospheric mantle in the Mogok metamorphic Belt, Northern Myanmar: Re–Os isotope and platinum group element constraints. Precambrian Research: 427, 107865, ISSN 0301-9268. https://doi.org/10.1016/j.precamres.2025.107865

Lyså, A., Benediktsson, Í.Ö., Larsen, N.K., Müller, J., O'Regan, M., 2025. Processes and Palaeo-Environmental Changes in the Arctic from Past to Present (PalaeoArc) – introduction. Boreas: 54, 3. Special issue: Processes and Palaeo‐Environmental Changes in the Arctic from Past to Present (PalaeoArc), 284-287. https://doi.org/10.1111/bor.70021

du Bois d'Aische, E., Jonard, F., Hirst, C., Villani, M., Thomas, M., Giesler, R., Mörth, C-M., Lundin, E., Van Oost, K., Vanacker, V. et al., 2025. Permafrost Thaw Drives Iron and Organic Carbon Release Into Soil Pore Water During Palsa to Degraded Palsa Transition. Permafrost and Periglacial Processes: 37, 1, 107-123. https://doi.org/10.1002/ppp.70018

Gindorf, S., Baptista-Salazar, C., Liem-Nguyen, V., Giesler, R., Mörth, C-M., Jonsson, S., 2025. Catchment Properties as Drivers of Mercury Speciation in Streams and Lakes Across a Sub-Arctic Climate Gradient. Journal of Geophysical Research Biogeosciences: 130(8), e2024JG008661.
https://doi.org/10.1029/2024JG008661

Ehnvall, B., Ratcliffe, J.L., ... Mörth, C-M., et al., 2025. Carbon accumulation in recently deposited peat is reduced by increased nutrient supply. Nat Commun 16, 4271. https://doi.org/10.1038/s41467-025-59387-w

Holmes, F.A., Barnett, J., Åkesson, H., Morlighem, M., Nilsson, J., Kirchner, N., and Jakobsson, M., 2025. Sea level rise contribution from Ryder Glacier in northern Greenland varies by an order of magnitude by 2300 depending on future emissions. CryosphereOpen source preview, 2025, 19(7), pp. 2695–2714. https://doi.org/10.5194/tc-19-2695-2025

Barnett, J., Holmes, F.A., Cuzzone, J., Åkesson, H., Morlighem, M., O'Regan, M., Nilsson, J., Kirchner, N., and Jakobsson, M., 2025. Simulating the Holocene evolution of Ryder Glacier, North Greenland. CryosphereOpen source preview, 2025, 19(9), pp. 3631–3653. https://doi.org/10.5194/tc-19-3631-2025

Akhoudas, C., Ulfsbo, A., Thornton, B.F., Pohlman, J.W., Boze, L-G., Jakobsson, M. & Stranne, C., 2025. Unraveling ocean pCO2 dynamics in Northwest Greenland Fjords. Sci Rep 15, 29341. https://doi.org/10.1038/s41598-025-12720-1

Sime, L.C., Sivankutty, R., Malmierca-Vallet, I., Oger, S.G., LeGrande, A.N., McClymont, E.L., de Boer, A.M., Cauquoin, A., and Werner, M., 2025. H11 meltwater and standard 127 ka Last Interglacial simulations suggest more modest peak temperatures for both Greenland and Antarctica: a multi-model study of water isotopes. Climate of the PastOpen source preview: 21(10), pp. 1725–1753. https://doi.org/10.5194/cp-21-1725-2025

de Boer, A.M., Krishnan, S., Burls, N.J., Hutchinson, D.K., Renoult, M., 2025. Evaluation of Quasi-Equilibrium Criteria for Coupled Climate Model Simulations. Geophysical Research Letters, Open source preview: 52(22), e2025GL117040. https://doi.org/10.1029/2025GL117040

Roquet, F., Bell, M.J., de Boer, A.M. et al., 2025. Controls of the global overturning circulation of the ocean. npj Clim Atmos Sci 8, 304. https://doi.org/10.1038/s41612-025-01185-8

Knutz, P.C., Jennings, A.E., Childress, L.B., Bryant, R., Cargill, S.K., Coxall, H.K., Frank, T.D., Grant, G.R., Gray, R.E., Ives, L., Kumar, V., Le Houedec, S., Martens, J., Naim, F., Nelissen, M., Özen, V., Passchier, S., Pérez, L.F., Ren, J., Romans, B.W., Seki, O., Staudigel, P., Tauxe, L., Tibbett, E.J., Yokoyama, Y., Zhang, Y., and Zimmermann, H., 2025. Expedition 400 methods. In Knutz, P.C., Jennings, A.E., Childress, L.B., and the Expedition 400 Scientists, NW Greenland Glaciated Margin. Proceedings of the International Ocean Discovery Program, 400: College Station, TX (International Ocean Discovery Program). https://doi.org/10.14379/iodp.proc.400.102.2025

Knutz, P.C., Jennings, A.E., Childress, L.B., Bryant, R., Cargill, S.K., Coxall, H.K., Frank, T.D., Grant, G.R., Gray, R.E., Ives, L., Kumar, V., Le Houedec, S., Martens, J., Naim, F., Nelissen, M., Özen, V., Passchier, S., Pérez, L.F., Ren, J., Romans, B.W., Seki, O., Staudigel, P., Tauxe, L., Tibbett, E.J., Yokoyama, Y., Zhang, Y., and Zimmermann, H., 2025. Site U1605. In Knutz, P.C., Jennings, A.E., Childress, L.B., and the Expedition 400 Scientists, NW Greenland Glaciated Margin. Proceedings of the International Ocean Discovery Program, 400: College Station, TX (International Ocean Discovery Program). https://doi.org/10.14379/iodp.proc.400.105.2025

Knutz, P.C., Jennings, A.E., Childress, L.B., Bryant, R., Cargill, S.K., Coxall, H.K., Frank, T.D., Grant, G.R., Gray, R.E., Ives, L., Kumar, V., Le Houedec, S., Martens, J., Naim, F., Nelissen, M., Özen, V., Passchier, S., Pérez, L.F., Ren, J., Romans, B.W., Seki, O., Staudigel, P., Tauxe, L., Tibbett, E.J., Yokoyama, Y., Zhang, Y., and Zimmermann, H., 2025. Expedition 400 summary. In Knutz, P.C., Jennings, A.E., Childress, L.B., and the Expedition 400 Scientists, NW Greenland Glaciated Margin. Proceedings of the International Ocean Discovery Program, 400: College Station, TX (International Ocean Discovery Program). https://doi.org/10.14379/iodp.proc.400.101.2025

Knutz, P.C., Jennings, A.E., Childress, L.B., Bryant, R., Cargill, S.K., Coxall, H.K., Frank, T.D., Grant, G.R., Gray, R.E., Ives, L., Kumar, V., Le Houedec, S., Martens, J., Naim, F., Nelissen, M., Özen, V., Passchier, S., Pérez, L.F., Ren, J., Romans, B.W., Seki, O., Staudigel, P., Tauxe, L., Tibbett, E.J., Yokoyama, Y., Zhang, Y., and Zimmermann, H., 2025. Site U1604. In Knutz, P.C., Jennings, A.E., Childress, L.B., and the Expedition 400 Scientists, NW Greenland Glaciated Margin. Proceedings of the International Ocean Discovery Program, 400: College Station, TX (International Ocean Discovery Program). https://doi.org/10.14379/iodp.proc.400.104.2025

Jonkers, L., Strack, T., Alonso-Garcia, M., D'haenens, S., Huber, R., Kucera, M., Hernández-Almeida, I., Jones, C. L. C., Metcalfe, B., Saraswat, R., . . . Coxall, H.K., . . . Weinmann, A. E., 2025. Community guidelines to increase the reusability of marine microfossil assemblage data. Journal of Micropalaeontology: 44(1), 145–168. https://doi.org/10.5194/jm-44-145-2025

Suosaari, E. P., Dupraz, C., Oehlert, A. M., Lascu, I., Vitek, B. E., Piggot, A. M., Palma, A. T., & Reid, R. P. (2025). Coupled authigenic Mg silicate and carbonate precipitation in saline lakes of the Salar de Atacama, Northern Chile. The Depositional Record, 12, e70055. https://doi.org/10.1002/dep2.70055

Pollier, C. G. L., Reid, R. P., Suosaari, E. P., Vitek, B. E., Dupraz, C., & Oehlert, A. M. (2025). Arsenic enrichment patterns are defined by microbialite morphology, fabric, and accretion mechanism. Nature Communications, 16, 10218. https://doi.org/10.1038/s41467-025-65007-4

Trasune, L., Orozco, L.E., Salonen, J.S., Otiniano, G.A., Porter, T.J., Weckström, J., Phillips, M.A., Schenk, F., Heikkilä, M., 2025. A comparison of Holocene temperature reconstructions from vegetation proxies and brGDGTs in northern Fennoscandia. Quaternary Science Reviews: 372, 109727, https://doi.org/10.1016/j.quascirev.2025.109727

Weitkamp, T.M., Bird, C., Darling, K.F., Hsiang, A.Y., Ramsay, J., Vermassen, F., and Coxall, H.K., 2025. Aberrant coiling signatures reveal the specialised reproductive strategy of the planktonic foraminifera Neogloboquadrina pachyderma under Central Arctic perennial sea ice. Marine Micropaleontology: 201, 102503,
ISSN 0377-8398. https://doi.org/10.1016/j.marmicro.2025.102503

Kuhn, M., Olefeldt, D., Arndt, K.A., Bastviken, D., Bruhwiler, L., Crill, P., DelSontro, T., Fluet-Chouinard, E., Grosse, G., Hovemyr, M., Hugelius, G., MacIntyre, S., Malhotra, A., McGuire, A.D., Oh, Y., Poulter, B., Treat, C.C., Turetsky, M.R., Varner, R.K., Walter Anthony, K.M., Watts, J.D. & Zhang, Z., 2025. Current and Future Methane Emissions from Boreal-Arctic Wetlands and Lakes. Nature Climate Change. https://doi.org/10.1038/s41558-025-02413-y

Ayala-Ortiz, C., Hough, M., Eder, E.K., Hoy, D.W., Chu, R.K., Toyoda, J., Blazewicz, S.J., Crill, P.M., Varner, R, Saleska, S.R., Rich, V.I. and Tfaily, M,M., 2025. Tracing Priming Effects in Palsa Peat Carbon Dynamics Using a Stable Isotope-Assisted Metabolomics Approach. Frontiers in Molecular Biosciences: 12:1621357. doi: 10.3389/fmolb.2025.1621357

Manzotti, P., Schiavi, F., Ballèvre, M., and Nosenzo, F., 2025. Garnet growth across the quartz–coesite transition in metapelites: equilibrium vs. kinetics. European Journal of Mineralogy_ 37, 455–482. https://doi.org/10.5194/ejm-37-455-2025

Huang, T-H., Sun, X., Kim, J-H., Mark, C., and Hong, W-L., 2025. Extremely high alkalinity due to dissolution of Mg-rich phyllosilicate in the hemipelagic sediments of the Ulleung Basin (East/Japan Sea): stable Si isotopic evidence and reactive transport modeling. Geochimica et Cosmochimica Acta. https://doi.org/10.1016/j.gca.2025.07.022

Trapp-Müller, G., Rugenstein, J.C., Conley, D.J., Geilert, S., Hagens, M., Hong, W-L., Jeandel, C., Longman, J., Mason, P.R.D., Middelburg, J.J., Milliken, K.L., Navarre-Sitchler, A., Planavsky, N.J., Reichart, G-J., Slomp, C.P., Sluijs, A., van Hinsbergen, D.J.J., & Zhang, X.Y., 2025. Earth’s silicate weathering continuum. Nature Geoscience: 18, 691–701. https://www.nature.com/articles/s41561-025-01743-y

ten Hietbrink, S., Patton, H., Dugan, B., Szymczycha, B., Sen, A., Lepland, A., Knies, J., Kim, J-H., Chen, N-C., & Hong, W-L., 2025. Deglaciation drove seawater infiltration and slowed submarine groundwater discharge. Nature Geoscience. https://doi.org/10.1038/s41561-025-01750-z

Wooldridge, T. B., Wang, M.-S., Saremi, N. F., Kapp, J. D., Moon, K. L., Heintzman, P.D., Dumbacher, J. P., Mychajliw, A. M., Alagona, P. S. & Shapiro, B., 2025. Genomic data from the extinct California grizzly bear suggests a potential source population for reintroduction to California. Journal of Heredity esaf018. https://doi.org/10.1093/jhered/esaf018

Lindahl, A., Epp, L. S., Boessenkool, S., Pedersen, M.W., Brace, S., Heintzman, P.D., Dalén, L. & Díez del Molino, D., 2025. Palaeogenomic inference of biodiversity dynamics across Quaternary timescales. Nature Reviews Biodiversity: 1(4), 233-247. https://doi.org/10.1038/s44358-025-00033-0

Trudgill, M., Rae, J.W.B., Whiteford, R., Adloff, M., Crumpton-Banks, J., Van Mourik, M., Burke, A., Cuperus, M., Corsetti, F., Doherty, D., Gray, W., Greenop, R., Hong, W-L., Lepland, A., McIntyre, A., Neiroukh, N., Rose, C.V., Ruhl, M., Saunders, D., Siri, M.M.F.R., Steele, R.C.J., Stüeken, E.E., West, A.J., Ziegler, M. & Greene, S.E., 2025. Pulses of ocean acidification at the Triassic–Jurassic boundary. Nature Communications 16, 6471. https://www.nature.com/articles/s41467-025-61344-6

ten Hietbrink, S., Materić, D., Holzinger, R., Groeskamp, S. & Niemann, H., 2025. Nanoplastic concentrations across the North Atlantic. Nature: 643, 412–416.  https://www.nature.com/articles/s41586-025-09218-1

Knies, J., O’Regan, M., and Marcel, C.H., 2025. Finding Consensus on Arctic Ocean Climate History. EOS. https://eos.org/science-updates/finding-consensus-on-arctic-ocean-climate-history

Naik, T. J., de Boer, A. M.,Coxall, H. K., Burls, N. J., Bradshaw, C. D., Donnadieu, Y., et al., 2025. Ocean Meridional Overturning Circulation during the early and middle Miocene. Paleoceanography and Paleoclimatology: 40, e2024PA005055. https://doi.org/10.1029/2024PA005055

Zhang, Y., de Boer, A. M., Qin, G., Lunt, D.J., Hutchinson, D.K., Steinig, S., Niezgodzki, I., Wade, B.S., Liu, X., Poulsen, C.J., Lohmann, G., 2025. Poleward expansion of North Pacific gyre circulation during the warm early Eocene inferred from inter-model comparisons. Palaeogeography, Palaeoclimatology, Palaeoecology: 661, 2025, 112712, ISSN 0031-0182. https://doi.org/10.1016/j.palaeo.2024.112712.

Ju, N., Liu, B., Gong, Y.N., Qiu, Q.F., Wu, Y., Liu, X., Shi, L., Nan, Z., Ma, D.Z., Wang, H.H., Jiang, M.Y., Feng, Y.H., 2025. Apatite U-Pb ages, trace elements, and in situ Sr-Nd isotopes and pyrite S isotopes of the Saima alkaline complex: Implications for the petrogenesis and tectonic setting of Nb-Ta-REE mineralization in Northeast China. Ore Geology Reviews: 183, 106704. https://doi.org/10.1016/j.oregeorev.2025.106704

Vermassen, F., Bird, C., Weitkamp, T.M., Darling, K.F., Farnelid, H., Heuzé, C., Hsiang, A.Y., Karam, S., Stranne, C., Sundbom, M., and Coxall, H.K., 2025. The distribution and abundance of planktonic foraminifera under summer sea ice in the Arctic Ocean. Biogeosciences: 22, 9, 2261–2286. https://doi.org/10.5194/bg-22-2261-2025

Clementi, V.J., Hong, W-L., Rosenthal, Y., Bova, S.C., Childress, L.B., 2025. Pore Fluid Origins, Circulation, and Links With Methane Hydrate on the South-Central Chilean Margin. Geochemistry, Geophysics, Geosystems: 26, 4, e2025GC012195. https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2025GC012195

Naik, T.J., de Boer, A.M., Coxall, H.K., Burls, N.J., Bradshaw, C.D., Donnadieu, Y., Farnsworth, A., Frigola, A., Herold, N., Huber, M., Karami, M.P., Knorr, G., LeGrande, A.N., Li, Y., Lohmann, G., Lunt, D.J., Prange, M., and Zhang, Y., 2025. Paleoceanography and Paleoclimatology: 40, 4, e2024PA005055. https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2024PA005055

Salonen, J.S., Schenk, F., Williams, J.W., Shuman, B., Lindroth Dauner, A.L., Wagner, S., Jungclaus, J., Zhang, Q. and Luoto, M., 2025. Patterns and drivers of Holocene moisture variability in mid-latitude eastern North America. Nature Communications: 16, 3582. https://doi.org/10.1038/s41467-025-58685-7

Gilardet, A., Lord, E., García, G.O., Xenikoudakis, G., Douka, K., Wooller, M.J., Rowe, T., Martin, M.D., Le Moullec, M., Anisimov, M., Heintzman, P.D., Dalén, L., 2025. A High-Throughput Ancient DNA Extraction Method for Large-Scale Sample Screening. Molecular Ecology Resources: 25 (4), e14077. DOI: 10.1111/1755-0998.14077

Julián-Posada, I., Gil-Romera, G., Garcés-Pastor, S., Heintzman, P.D., Gómez, D., Fillat, F., Moreno, A., Lara-Recuero, J., Bover, P., Montes, L., Sierra, A., Valero-Garcés, B., Alsos, I.G., González-Sampériz, P., 2025. Neolithic pastoralism and plant community interactions at high altitudes of the Pyrenees, southern Europe. Communications Earth and Environment: 6 (1), 48. DOI: 10.1038/s43247-025-02023-8

Zhong, Y., Lu, Z., Kaboth-Bahr, S., Yu, J., Horikawa, K., Dekkers, M.J., Larrasoaña, J.C., Clift, P.D., Weber, M.E., Vermassen, F., Kender, S., Sun, C., Yang, H., Wang, X., Andresen, C.S., Liu, Y., Zhang, H., Dai, Z., Niu, L., Zhang, J., Feng, X., Zhao, D., Xia, W., Yang, S., Li, H., Liu, Q., 2025. Precession modulates the poleward expansion of atmospheric circulation to the Arctic Ocean. Nature Communications: 16 (1), 1143. DOI: 10.1038/s41467-025-56542-1

tamm, F.M., Pickering, R.A., Frings, P.J., Frick, D.A., Richoz, S., Conley, D.J., 2025. Impact of Diagenesis on Biogenic Silica- Structural, Chemical, and Isotope Proxies. Journal of Geophysical Research: Biogeosciences: 130 (2), e2024JG008160. DOI: 10.1029/2024JG008160

Cory, A.B., Wilson, R.M., Ogles, O.C., Crill, P.M., Li, Z., Chang, K.-Y., Bosman, S.H., Rich, V.I., Chanton, J.P., Hough, M., Dominguez, S., Irwin-Raab, N., Trubl, G., Jones, R.M., Anderson, D., Zayed, A., Ferriere, R., Ibba, M., Varner, R.K., Hodgkins, S.B., Fahnestock, M.F., Sullivan, M.B., Rich, V.I., 2025. On the Relationship Between Methane Production in Anaerobic Incubations of Peat Material and In Situ Methane Emissions. Journal of Geophysical Research: Biogeosciences: 130 (4), e2024JG008371. DOI: 10.1029/2024JG008371

Bolhar R., Weaver S.D., Turnbull R., Waight T.E., Whitehouse M.J., Maas R., Ring U., 2025. The mid-Cretaceous Hohonu Batholith (South Island, New Zealand): Identifying magmatic sources and processes during onset of crustal extension. Lithos: 494-495, 107847. DOI: 10.1016/j.lithos.2024.107847

Seminara S., Pease V., Toro J., Omma J., 2025. Provenance studies and basin evolution: Insight from the Yukon–Koyukuk Basin, Alaska. Sedimentology: 72 (2), 666-687. DOI: 10.1111/sed.13248

Villani M., Hirst C., du Bois d’Aische E., Thomas M., Lundin E., Giesler R., Mörth C.-M., Opfergelt S., 2025. Lengthening of biogeochemical processes during winter in degraded permafrost soils. Geochemical Perspectives Letters: 34, 36–42. DOI: 10.7185/geochemlet.2511

Holthuis M., Nixon F.C., Kylander M.E., van der Bilt W.G.M., Hong I., Joyse K.M., Lakeman T.R., Martin J., Peter M., Holme S.S., Horton B.P., 2025. Relative sea-level trends in southern Norway during the last millennium. Boreas. DOI: 10.1111/bor.70006

Holman, L.E., Zampirolo, G., Gyllencreutz, R., Scourse, J., Frøslev, T., Carøe, C., Gopalakrishnan, S., Pedersen, M.W., Bohmann, K., 2025. Navigating Past Oceans: Comparing Metabarcoding and Metagenomics of Marine Ancient Sediment Environmental DNA. Molecular Ecology Resources. DOI: 10.1111/1755-0998.14086

Singh, A., Ho, S.L., Chen, M.-T., Wang, P.-L., Jakobsson, M., Gyllencreutz, R., Löwemark, L., 2025. Spatial distribution of n-alkanes and GDGTs in the central Arctic Ocean during Marine Isotope Stages 1, 2 and 3. Organic Geochemistry: 201, 104920. DOI: 10.1016/j.orggeochem.2024.104920

Zhang, Y., de Boer, A.M., Qin, G., Lunt, D.J., Hutchinson, D.K., Steinig, S., Niezgodzki, I., Wade, B.S., Liu, X., Poulsen, C.J., Lohmann, G., 2025. Poleward expansion of North Pacific gyre circulation during the warm early Eocene inferred from inter-model comparisons. Palaeogeography, Palaeoclimatology, Palaeoecology: 661, 112712. DOI: 10.1016/j.palaeo.2024.112712

Ring U., Fassoulas C., Uysal I.T., Glodny J., Tong K., Todd A., 2025. Timing of the switchover from thrusting to normal faulting in the Cretan nappe pile, Greece. Tectonophysics: 899, 230652. DOI: 10.1016/j.tecto.2025.230652

Jakobsson V., Glodny J., Ring U., Skelton A., 2025. The temporal and kinematic constraints on the early Alpine orogen: insights from Rb–Sr geochronology and geological mapping of the Avers nappe (Eastern Swiss-Alps). Swiss Journal of Geosciences: 118 (1). DOI: 10.1186/s00015-025-00478-7

Hong, W-L., Xiaole, S., Torres, M.E., Huang, T-H., Pickering, R.A., 2025. The role of silicate alteration in regulating marine carbon cycling. Chemical Geology: 122769, ISSN 0009-2541. https://doi.org/10.1016/j.chemgeo.2025.122769

Li, Z, Riley, W.J., Marschmann, G.L., Karaoz, U., Shirley, I.A., Wu, Q., Bouskill, N.J., Chang, K.-Y., Crill, P.M., Grant, R.F., King, E., Saleska, S.R., Sullivan, M.B., Tang, J., Varner, R.K., Woodcroft, B.J., Wrighton, K.C., 2025. EMERGE Project Coordinators and E.L. Brodie. A framework for integrating genomics, microbial traits, and ecosystem biogeochemistry. Nature Communications 16:2186. https://doi.org/10.1038/s41467-025-57386-5

Cory, A.B., Wilson, R.M., Holmes, M.E., Riley, W.J., Li, Y.-F., Tfaily, M.M., Bagby, S.C., Isogenie Field Team, EMERGE Project Coordinators, Crill, P.M., Ernakovich, J.G., Rich, V.I., & Chanton, J.P., 2025. A climatically significant abiotic mechanism driving carbon loss and nitrogen limitation in peat bogs. Scientific Reports 15, 2560. https://doi.org/10.1038/s41598-025-85928-w

Gaina, C., Jakobsson, M., Straume, E.O., Timmermans, M.-L., Boggild, K., Bünz, S., Schlindwein, V., and Døssing, A., 2025. Arctic Ocean bathymetry and its connections to tectonics, oceanography and climate. Nat Rev Earth Environ: 6, 211–227. https://www.nature.com/articles/s43017-025-00647-0

Ryberg, E., Valdés, A., Ehrlén, J., Väliranta, M., and Kylander, M.E., 2025. Quantitative assessment of past variations in Sphagnum bog community structure using paleo-species distribution modeling. Ecology: 106, 3, e70033. https://doi.org/10.1002/ecy.70033

Phillips, S.C., Johnson, J.E., Clyde, W.C., Hong, W-L., Setera, J.B., and Torres, M.E., 2025. Tracking diagenetic alteration of magnetic susceptibility in thrust ridge and slope basin sediments of the Cascadia margin (ODP Sites 1249 and 1252; IODP Site U1325). Marine Geology: 483, 107519, ISSN 0025-3227. https://doi.org/10.1016/j.margeo.2025.107519

Vonk, J.E., Fritz, M., Speetjens, N.J., Babin, M., Bartsch, A., Basso, L.S., Bröder, L., Göckede, M., Gustafsson, Ö., Hugelius, G., Irrgang, A.M., Juhls, B., Kuhn, M.A., Lantuit, H., Manizza, M., Martens, J., O’Regan, M., Suslova, A., Tank, S.E., Terhaar, J., and Zolkos, S., 2025. The land–ocean Arctic carbon cycle. Nature Reviews Earth & Environment: 6, pp.86-105. https://doi.org/10.1038/s43017-024-00627-w

Manzotti, P., Millonig, L.J., Gerdes, A., Whitehouse, M.J., Jeon, H., Poujol, M., and Ballèvre, M., 2025. Protolith age, and timing of burial and exhumation of the UHP Chasteiran Unit (Dora-Maira Massif, Western Alps), constrained by zircon, garnet and rutile petrochronology. Lithos: 496–497, 107951, ISSN 0024-4937. https://doi.org/10.1016/j.lithos.2025.107951.

Weitkamp, T.M., Razmjooei, M.J., Pearson, P.N., and Coxall, H.K., 2025. Upper Oligocene to Pleistocene planktonic foraminifera stratigraphy at North Atlantic DSDP Site 407, Reykjanes Ridge: diversity trends and biozonation using modern Neogene taxonomic concepts, J. Micropalaeontol.: 44, 1–78. https://doi.org/10.5194/jm-44-1-2025.

Zhang, M., Leppäranta, M., Heikkilä, M., Weckström, K., Korhola, A., Kirchner, N., Granebeck, A., Schenk F., & Weckström, J., 2025. The thermal structure of small and shallow Arctic Fennoscandian lakes. Arctic, Antarctic, and Alpine Research: 57(1). https://doi.org/10.1080/15230430.2024.2433829

Liu, B., Ma, J., Li, P., Hong, Y., and Feng, W., 2025. First boron isotopes in the southern Jilin TTG series uncover a Neoarchean oceanic arc in the eastern North China Craton. Gondwana Research: 139, 243-259, ISSN 1342-937X. https://doi.org/10.1016/j.gr.2024.11.008

Last updated: 2026-03-08

Source: Department of Geological Sciences