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G
B. Govenar, Freeman, M., Bergquist, D. C., Johnson, G. A., and Fisher, C. R., Composition of a One-Year-Old Riftia pachyptila Community Following a Clearance Experiment: Insight to Succession Patterns at Deep-Sea Hydrothermal Vents, Biological Bulletin, vol. 207, pp. 177–182, 2004.
D. Grimaud, Ishibashi, J. I., Lagabrielle, Y., Auzende, J. M., and Urabe, T., Chemistry of hydrothermal fluids from the 17 degrees S active site on the North Fiji Basin Ridge (SW Pacific), Chemical Geology, vol. 93, pp. 209–218, 1991.
M. Grinar, A characterization of a hydrothermal vent community from a diffuse flow vertical wall of "The tower" sulfide edifice at the Juan de Fuca Ridge, Temple University, 2011.
A. Grosche, Sekaran, H., Perez-Rodriguez, I., Starovoytov, V., and Vetriani, C., Cetia pacifica gen. nov., sp nov., a chemolithoautotrophic, thermophilic, nitrate-ammonifying bacterium from a deep-sea hydrothermal vent, INTERNATIONAL JOURNAL OF SYSTEMATIC AND EVOLUTIONARY MICROBIOLOGY, vol. 65, pp. 1144–1150, 2015.
E. Pacific Ri Group, Ballard, R. D., Craig, H., Edmond, J., Einaudi, M., Holcomb, R., Holland, H. D., Hopson, C., Luyendyk, B. P., Macdonald, K., Morton, J., Orcutt, J., and Sleep, N., Crustal processes of the Mid-Ocean Ridge, Science, vol. 213, pp. 31–40, 1981.
B. Gueguen, Rouxel, O. J., Rouget, M. - L., Bollinger, C., Ponzevera, E., Germain, Y., and Fouquet, Y., Comparative geochemistry of four ferromanganese crusts from the Pacific Ocean and significance for the use of Ni isotopes as paleoceanographic tracers, Geochimica et Cosmochimica Acta, vol. 189, pp. 214–235, 2016.
K. Guilini, Levin, L. A., and Vanreusel, A., Cold seep and oxygen minimum zone associated sources of margin heterogeneity affect benthic assemblages, diversity and nutrition at the Cascadian margin (NE Pacific Ocean), Progress in Oceanography, vol. 96, pp. 77–92, 2012.
H
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.
A. M. Hartwell, Voight, J. R., and C. Wheat, G., Clusters of deep-sea egg-brooding octopods associated with warm fluid discharge: An ill-fated fragment of a larger, discrete population?, Deep Sea Research Part I: Oceanographic Research Papers, vol. 135, pp. 1-8, 2018.
E. E. Hays and Hoskins, H., Cruise plan for joint cruise of Alvin-Lulu \#27 and Gosnold \#136: 15-24 October 1968}. Woods Hole, Mass.: Woods Hole Oceanographic Institution, 1968, p. 4.
T. P. Heyl, Gilhooly, W. P., Chambers, R. M., Gilchrist, G. W., Macko, S. A., Ruppel, C. D., and Van Dover, C. L., Characteristics of vesicomyid clams and their environment at the Blake Ridge cold seep, South Carolina, USA, Marine Ecology Progress Series, vol. 339, pp. 169–184, 2007.
M. J. Hornbach, Ruppel, C., Saffer, D. M., Van Dover, C. L., and Holbrook, W. S., Coupled geophysical constraints on heat flow and fluid flux at a salt diapir, Geophysical Research Letters, vol. 32, p. L24617, 2005.
J. L. Houghton, Seyfried, W. E., Banta, A. B., and Reysenbach, A. - L., Continuous enrichment culturing of thermophiles under sulfate and nitrate-reducing conditions and at deep-sea hydrostatic pressures, Extremophiles, vol. 11, pp. 371–382, 2007.
F. Hover, Grosenbaugh, M. A., and Triantafyllou, M., Calculations of dynamic motions and tensions of towed underwater vehicles, IEEE Journal of Oceanic Engineering, vol. 19, pp. 449–457, 1994.
S. E. Humphris and Cann, J. R., Constraints on the energy and chemical balances of the modern TAG and ancient Cyprus seafloor sulfide deposits, Journal of Geophysical Research, vol. 105, pp. 28,428–477,488, 2000.
S. D. Hurst and Karson, J. A., Crack Structure of Seafloor Outcrops Based on Analysis of Digital Images: A New Approach to the Study of the Structure and Acoustic Properties of the Uppermost Oceanic Crust, EOS, Transactions, American Geophysical Union, vol. 74, p. 306, 1993.
L. A. Hurtado, Mateos, M., Lutz, R. A., and Vrijenhoek, R. C., Coupling of bacterial endosymbiont and host mitochondrial genomes in the hydrothermal vent clam Calyptogena magnifica, Applied and Environmental Microbiology, vol. 69, pp. 2058–2064, 2003.
J
A. Jacobson, Plouviez, S., Thaler, A. D., and Van Dover, C. L., Characterization of 9 polymorphic microsatellite loci in Lamellibrachia sp 2, a tubeworm found at deep-sea hydrothermal vents and cold seeps, Conservation Genetics Resources, vol. 5, pp. 1005–1007, 2013.
A. Jacobson, Plouviez, S., Thaler, A. D., and Van Dover, C. L., Characterization of 13 polymorphic microsatellite loci in Rimicaris hybisae, a shrimp from deep-sea hydrothermal vents, Conservation Genetics Resources, vol. 5, pp. 449–451, 2013.
H. W. Jannasch, Chemosynthetic microbial mats of deep sea hydrothermal vents, in Microbial Mats, Stromatolites: Based on the Proceedings of the Integrated Approach to the Study of Microbial Mats, July 26-31, 1982, Sponsored by Microbial Ecology and Marine Ecology Courses, and the Ecosystems Center, Marine Biological Laboratory, Woods, Y. Cohen, Ed. New York, N.Y.: A.R. Liss, 1984, pp. 121–131.
H. W. Jannasch, Chemolithotrophic productivity at deep-sea hydrothermal vents, in Recent advances in microbial ecology: Proceedings of the 5th International Symposium on Microbiology and Ecology, T. Hattori, Ed. Tokyo: Japan Scientific Societies Press, 1989, pp. 23–27.
H. W. Jannasch, The chemosynthetic support of life and the microbial diversity at deep-sea hydrothermal vents, Proceedings Royal Society of London Series B Biological Sciences, vol. 225, pp. 277–297, 1985.
H. W. Jannasch, Wirsen, C. O., Molyneaux, S. J., and Langworthy, T. A., Comparative physiological studies on hyperthermophilic Archaea isolated from deep sea hot vents with emphasis on Pyrococcus Strain GB-D, Applied and Environmental Microbiology, vol. 58, pp. 3472–3481, 1992.
H. W. Jannasch, Chemosynthetic production of biomass: An idea from a recent oceanographic discovery, Oceanus, vol. 22, pp. 59–63, 1979.
H. W. Jannasch, Chemosynthesis: The nutritional basis for life at deep-sea vents, Oceanus, vol. 27, pp. 73–78, 1984.

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