Risgaard-Petersen, N., Revil, A., Meister, P.
& Nielsen, L. P. (2012).
Sulfur, iron-, and calcium cycling associated with natural electric currents running through marine sediment.
Geochimica et Cosmochimica Acta,
92, 1-13.
https://doi.org/10.1016/j.gca.2012.05.036
Deusner, C., Holler, T.
, Arnold, G. L., Bernasconi, S. M., Formolo, M. J.
& Brunner, B. (2014).
Sulfur and oxygen isotope fractionation during sulfate reduction coupled to anaerobic oxidation of methane is dependent on methane concentration.
Earth and Planetary Science Letters,
399, 61-73.
https://doi.org/10.1016/j.epsl.2014.04.047
Poser, A., Vogt, C., Knoeller, K., Sorokin, D. Y.
, Finster, K. W. & Richnow, H.-H. (2016).
Sulfur and Oxygen Isotope Fractionation During Bacterial Sulfur Disproportionation Under Anaerobic Haloalkaline Conditions.
Geomicrobiology Journal,
33(10), 934-941.
https://doi.org/10.1080/01490451.2015.1128993
Brunner, B., Spivack, A. J., Murray, R. W.
, Gribsholt, B., Graham, D., Schrum, H. N. & D'Hondt, S. L. (2009).
Sulfur and Oxygen Isotope Composition of Pore Water Sulfate in the Eastern Equatorial Pacific. Poster session presented at AGU Fall Meeting 2009, San Francisco, United States.
Holmkvist, L., Kamyshny Jr., A., Brüchert, V., Ferdelman, T. G.
& Jørgensen, B. B. (2014).
Sulfidization of lacustrine glacial clay upon Holocene marine transgression (Arkona Basin, Baltic Sea).
Geochimica et Cosmochimica Acta,
142, 75-94.
https://doi.org/10.1016/j.gca.2014.07.030
Bonaglia, S.
, Marzocchi, U., Ekeroth, N., Brüchert, V., Blomqvist, S. & Hall, P. O. J. (2019).
Sulfide oxidation in deep Baltic Sea sediments upon oxygenation and colonization by macrofauna.
Marine Biology,
166, Article 149.
https://doi.org/10.1007/s00227-019-3597-y
Pedersen, C. L., Liu, D., Hansen, M. J., Feilberg, A., Jensen, L. H. S.
, Guldberg, L. B., Schramm, A. & Nielsen, L. P. (2012).
Sulfide oxidation in a biofilter.
http://www.isme-microbes.org/isme14
Findlay, A. J., Boyko, V.
, Pellerin, A., Ayetisyan, K., Guo, Q., Yang, X. & Kamyshny, A. (2019).
Sulfide oxidation affects the preservation of sulfur isotope signals.
Geology,
47(8), 739-743.
https://doi.org/10.1130/G46153.1
Holmer, M., Pedersen, O.
, Krause-Jensen, D., Olesen, B., Petersen, M. H., Schopmeyer, S., Koch, M.
, Lomstein, B. A. & Jensen, H. S. (2009).
Sulfide intrusion in the tropical seagrasses Thalassia testudinum and Syringodium filiforme.
Estuarine, Coastal and Shelf Science,
85, 319-326.
https://doi.org/10.1016/j.ecss.2009.08.015
Kallmeyer, J., Ferdelman, T. G., Liu, B., Parkes, R. J.
, Røy, H. & Jørgensen, B. B. (2025).
Sulfate reduction rates in Peru Margin sediments: From 1 cm to 100 m below seafloor.
Geochimica et Cosmochimica Acta,
399, 111-124.
https://doi.org/10.1016/j.gca.2025.04.019
Jaussi, M., Kjeldsen, K. U., Seidenkrantz, M.-S., Lomstein, B. A., Jørgensen, B. B. & Røy, H. (2015).
Sulfate reduction rates and the size of the sulfate-reducer community are tightly linked in the subsurface of an arctic fjord (Greenland).. Abstract from EMBO Workshop on Microbial Sulfur Metabolism, Helsingør, Denmark.
Holmkvist, L., Kamyshny Jr., A., Vogt, C., Vamvakopoulos, K., Ferdelman, T. G.
& Jørgensen, B. B. (2011).
Sulfate reduction below the sulfate-methane transition in Black Sea sediments.
Deep-Sea Research Part I: Oceanographic Research Papers,
58, 493-504.
https://doi.org/10.1016/j.dsr.2011.02.009
Grijalva-Rodriguez, T. I.
, Antler, G., Eliani-Russak, E., Feng, D., Gong, S.
, Pellerin, A., Røy, H., Solomovich, K., Turchyn, A. V., Zweig, I. & Alexey, K. (2026).
Sulfate Reduction and Hydrogen Sulfide Oxidation Rates in Marine Sediments with Cryptic Sulfur Cycling.
Journal of the Geological Society,
183(2).
https://doi.org/10.1144/jgs2025-088
Leloup, J.
, Fossing, H., Kohls, K., Holmkvist, L., Borowski, C.
& Jørgensen, B. B. (2009).
Sulfate-reducing bacteria in marine sediment (Aarhus Bay, Denmark): abundance and diversity related to geochemical zonation.
Environmental Microbiology,
11(5), 1278-1291.
https://doi.org/10.1111/j.1462-2920.2008.01855.x
Teske, A., Ramsing, NB., Habicht, K., Fukui, M., Kuver, J.
, Jørgensen, BB. & Cohen, Y. (1998).
Sulfate-reducing bacteria and their activities in cyanobacterial mats of Solar Lake (Sinai, Egypt).
Applied and Environmental Microbiology,
64(8), 2943-2951.
Gittel, A., Donhauser, J., Kjeldsen, K. U., Røy, H. & Jørgensen, B. B. (2015).
Sulfate-reducing alkane degraders in cold marine surficial sediments: Microbial targets in oil and gas exploration. Poster session presented at EMBO Workshop on Microbial Sulfur Metabolism, Helsingør, Denmark.
Eller, F., Guo, X., Ye, S., Mozdzer, T. J.
& Brix, H. (2020).
Suitability of Wild Phragmites australis as Bio-Resource: Tissue Quality and Morphology of Populations from Three Continents.
Resources,
9(12), 1-17. Article 143.
https://doi.org/10.3390/resources9120143
Gittel, A., Kofoed, M., Sørensen, K. B.
, Ingvorsen, K. & Schramm, A. (2012).
Succession of Deferribacteres and Epsilonproteobacteria through a nitrate-treated high-temperature oil production facility.
Systematic and Applied Microbiology,
35, 165-174.
https://doi.org/10.1016/j.syapm.2012.01.003
Schauer, R., Risgaard-Petersen, N., Kjeldsen, K. U., Bjerg, J. J., Jørgensen, B. B., Schramm, A. & Nielsen, L. P. (2014).
Succession of cable bacteria and electric currents in marine sediment.
I S M E Journal,
8, 1314-1322.
https://doi.org/10.1038/ismej.2013.239
Foskolos, I., Johnson, M., Clement, D., Belonovich, O., Childerhouse, S., van Helden, A., MacKenzie, D., Ogle, M., Pavanato, H., Williams, R. & Constantine, R. (2025).
Subsurface Behaviors of Hector's Dolphins Could Increase Their Risk of Bycatch.
Conservation Letters,
18(5), Article e13144.
https://doi.org/10.1111/conl.13144
Campbell, K. L., Roberts, J. E. E., Watson, L. N., Stetefeld, J., Sloan, A. M., Signore, A. V., Howatt, J. W., Tame, J. R. H., Rohland, N., Shen, T.-J., Austin, J. J., Hofreiter, M.
, Weber, R. E. & Cooper, A. (2010).
Substitutions in woolly mammoth hemoglobin confer biochemical properties adaptive for cold tolerance.
Nature Genetics,
42, 536-540.
https://doi.org/10.1038/ng.574
Pearce, E. A., Mazier, F.
, Normand, S., Fyfe, R., Andrieu, V., Bakels, C., Balwierz, Z., Bińka, K., Boreham, S., Borisova, O. K., Brostrom, A., de Beaulieu, J. L., Gao, C., González-Sampériz, P., Granoszewski, W., Hrynowiecka, A., Kołaczek, P.
, Kuneš, P., Magri, D.
... Svenning, J. C. (2023).
Substantial light woodland and open vegetation characterized the temperate forest biome before Homo sapiens.
Science Advances,
9(45), Article eadi9135.
https://doi.org/10.1126/sciadv.adi9135
Maraia, H., Charles-Dominique, T., Tomlinson, KW., Staver, AC., Jorge, LR.
, Gélin, U., Jancuchova-Laskova, J., Sam, L., Hattas, D., Freiberga, I. & Sam, K. (2024).
Substantial Insect Herbivory in a South African Savanna-Forest Mosaic: A Neglected Topic.
Ecology and Evolution,
14(11), Article e70466.
https://doi.org/10.1002/ece3.70466