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B
Z. S. Kolber, Van Dover, C. L., Niederman, R. A., and Falkowski, P. G., Bacterial photosynthesis in the surface waters of the open ocean, Nature, vol. 407, pp. 177–179, 2000.
T. Hinzke, Kleiner, M., Meister, M., Schlüter, R., Hentschker, C., Pané-Farré, J., Hildebrandt, P., Felbeck, H., Sievert, S. M., Bonn, F., Völker, U., Becher, D., Schweder, T., and Markert, S., Bacterial symbiont subpopulations have different roles in a deep-sea symbiosis, eLife, vol. 10, p. e58371, 2021.
H. Kobayashi and Nagahama, T., The bacterium isolated from Hirondellea gigas (Shinkaioosokoebi), JAMSTEC Journal of Deep Sea Research, pp. 19–22, 2000.
T. Urabe and Kusakabe, M., Barite-silica chimneys from the Sumisu Rift, Izu-Bonin arc: possible analog to hematitic chert associatied with Kuroko depostis, Earth and Planetary Science Letters, vol. 100, pp. 283–290, 1990.
W. P. Meurer, Sturm, M. E., Klein, E. M., and Karson, J. A., Basalt compositions from the Mid-Atlantic Ridge at the SMARK area (22 degrees 30'N to 22 degrees 50'N) - implications for parental liquid variability at isotopically homogeneous spreading centers, Earth and Planetary Science Letters, vol. 186, pp. 451–469, 2001.
W. P. Meurer, Sturm, M. E., Klein, E. M., and Karson, J. A., Basalt compositions from the Mid-Atlantic Ridge at the SMARK area (22 degrees 30'N to 22 degrees 50'N) - implications for parental liquid variability at isotopically homogeneous spreading centers, Earth and Planetary Science Letters, vol. 186, pp. 451–469, 2001.
I. Barany and Karson, J. A., Basaltic breccias of the Clipperton fracture zone (East Pacific): Sedimentation and tectonics in a fast-slipping oceanic transform, Geological Society of America Bulletin, vol. 101, pp. 204–220, 1989.
T. Fujiwara, Goto, S., and Kobayashi, K., Bathymetric and gravity survey of the eastern Nankai Trough, JAMSTEC Journal of Deep Sea Research, pp. 357–361, 1999.
J. M. Bernhard, Kormas, K., Pachiadaki, M., Rocke, E., Beaudoin, D. J., Morrison, C., Visscher, P. T., Cobban, A., Starczak, V. R., and Edgcomb, V. P., Benthic protists and fungi of Mediterranean deep hypsersaline anoxic basin redoxcline sediments, Frontiers in Microbiology, vol. 5, p. 605, 2014.
R. Kunzig, Between home and the abyss, Discover, vol. 14, pp. 66–75, 1993.
D. L. Valentine, Kastner, M., Wardlaw, G. D., Wang, X. C., Purdy, A., and Bartlett, D. H., Biogeochemical investigations of marine methane seeps, Hydrate Ridge, Oregon, Journal of Geophysical Research, vol. 110, p. G02005, 2005.
E. Suess, Carson, B., Ritger, S. D., Moore, J. C., Jones, M. L., Kulm, L. D., and Cochrane, G. R., Biological communities at vent sites along the subduction zone off Oregon, in Hydrothermal vents of the Eastern Pacific: An overview, vol. 6, M. L. Jones, Ed. Vienna, Va.: INFAX, 1985.
C. L. Van Dover, Aharon, P., Bernhard, J. M., Caylor, E., Doerries, M. B., Flickinger, W., Gilhooly, W., Goffredi, S. K., Knick, K. E., Macko, S. A., Rapoport, S., Raulfs, E. C., Ruppel, C., Salerno, J. L., Seitz, R. D., Gupta, B. K. Sen, Shank, T. M., Turnipseed, M., and Vrijenhoek, R. C., Blake Ridge methane seeps: Characterization of a soft-sediment, chemosynthetically based ecosystem, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 50, pp. 281–300, 2003.
J. A. Karson and Rona, P. A., Block-tilting, transfer faults, and structural control of magmatic and hydrothermal processes in the TAG area, Mid-Atlantic Ridge 26 degrees N, Geological Society of America Bulletin, vol. 102, pp. 1635–1645, 1990.
G. H. Keller, Lambert, D., Rowe, G., and Staresinic, N., Bottom currents in the Hudson Canyon, Science, vol. 180, pp. 181–183, 1973.
S. V. Galkin, Bottom fauna of the Mohns Ridge: submersible investigations, in Bentos morei Rossii i Severnoi Atlantiki: sbornik nauchnykh trudov (Benthos of the Russian Sea and the Northern Atlantic), A. P. Kuznetsov, Ed. Moscow, Russia: Nauka, 2000, pp. 81–85.
C
C. B. Koons and Thomas, J. P., C15+ hydrocarbons in the sediments of the New York Bight, in Proceedings: 1979 Oil Spill Conference (Prevention, Behavior, Control, Cleanup), March 19-22, 1979, Los Angeles, California, Washington, D.C.: American Petroleum Institute, 1979, pp. 625–628.
M. J. Kennish and Lutz, R. A., Calcium carbonate dissolution rates in deep-sea bivalve shells on the East Pacific Rise at 21 degrees N: results of an 8- year in-situ experiment, Palaeogeography, Palaeoclimatology, Palaeoecology, vol. 154, pp. 293–299, 1999.
R. A. Lutz, Kennish, M. J., Pooley, A. S., and Fritz, L. W., Calcium carbonate dissolution rates in hydrothermal vent fields of the Guaymas Basin, Journal of Marine Research, vol. 52, pp. 969–982, 1994.
V. Krukenberg, Harding, K., Richter, M., Gloeckner, F. O., Gruber-Vodicka, H. R., Adam, B., Berg, J. S., Knittel, K., Tegetmeyer, H. E., Boetius, A., and Wegener, G., Candidatus Desulfofervidus auxilii, a hydrogenotrophic sulfate-reducing bacterium involved in the thermophilic anaerobic oxidation of methane, Environmental Microbiology, vol. 18, pp. 3073–3091, 2016.
V. Krukenberg, Harding, K., Richter, M., Gloeckner, F. O., Gruber-Vodicka, H. R., Adam, B., Berg, J. S., Knittel, K., Tegetmeyer, H. E., Boetius, A., and Wegener, G., Candidatus Desulfofervidus auxilii, a hydrogenotrophic sulfate-reducing bacterium involved in the thermophilic anaerobic oxidation of methane, Environmental Microbiology, vol. 18, pp. 3073–3091, 2016.
C. J. Hahn, Laso-Perez, R., Vulcano, F., Vaziourakis, K. M., Stokke, R., Steen, I. H., Teske, A., Boetius, A., Liebeke, M., Amann, R., Knittel, K., and Wegener, G., "Candidatus Ethanoperedens," a Thermophilic Genus of Archaea Mediating the Anaerobic Oxidation of Ethane, Mbio, vol. 11, 2020.
C. Basak, Rathburn, A. E., Perez, M. E., Martin, J. B., Kluesner, J. W., Levin, L. A., De Deckker, P., Gieskes, J. M., and Abriani, M., Carbon and oxygen isotope geochemistry of live (stained) benthic foraminifera from the Aleutian Margin and the Southern Australian Margin, Marine Micropaleontology, vol. 70, pp. 89–101, 2009.

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