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D. Kadko, Baross, J., and Alt, J., The Magnitude and global implications of hydrothermal flux, in Seafloor Hydrothermal Systems: Physical, Chemical, Biological, and Geochemical Interactions, S. E. Humphris, Ed. Washington, D.C.: American Geophysical Union, 1995, pp. 446–466.
C. T. Howell, Grosenbaugh, M. A., Moxnes, S., Anderson, J., and Triantafyllou, M. S., Maneuvering underwater vehicles employing low-tension tethers, in Proceedings of the Second (1992) International Offshore and Polar Engineering Conference, Golden, Colo.: International Society of Offshore and Polar Engineer (ISOPE), 1992, pp. 321–326.
D. J. Fornari, Kurras, G., Edwards, M., Spencer, W., and Hersey, B., Mapping volcanic morphology on the crest of the East Pacific Rise 9 degrees 49'-52'N using the WHOI towed camera system: a versatile new digital camera sled for seafloor mapping, BRIDGE Newsletter, pp. 4–12, 1998.
D. Leary, Vierros, M., Hamon, G., Arico, S., and Monagle, C., Marine genetic resources:A review of scientific and commercial interest, Marine Policy, vol. 33, pp. 183–194, 2009.
J. Francheteau, Needham, H. D., Choukroune, P., Juteau, T., Seguret, M., Ballard, R. D., Fox, P. J., Normark, W., Carranza, A., Cordoba, D., Guerrero, J., Rangin, C., Bougault, H., Cambon, P., and Hekinian, R., Massive deep-sea sulphide ore deposits discovered on the East Pacific Rise, Nature, vol. 277, pp. 523–528, 1979.
L. N. Germanovich, Hurt, R. S., Smith, J. E., Genc, G., and Lowell, R. P., Measuring fluid flow and heat output in seafloor hydrothermal environments, Journal of Geophysical Research: Solid Earth, vol. 120, pp. 8031–8055, 2015.
M. A. Zumberge, Hatfield, W., and Wyatt, F. K., Measuring Seafloor Strain With an Optical Fiber Interferometer, Earth and Space Science, vol. 5, no. 8, pp. 371 - 379, 2018.
K. L. Haedrich and Rowe, G. T., Megafaunal biomass in the deep sea, Nature, vol. 269, pp. 141–142, 1977.
H. Felbeck, Powell, M. A., Hand, S. A., and Somero, G. N., Metabolic adaptations of hydrothermal vent animals, in Hydrothermal vents of the Eastern Pacific: An overview, M. L. Jones, Ed. Vienna, Va.: INFAX, 1985, pp. 261–272.
J. J. Childress and Thuesen, E. V., Metabolic potentials of deep-sea fishes: a comparative approach, in Environmental and Ecological Biochemistry, P. W. Hochachka, Ed. New York: Elsevier, 1995, pp. 175–196.
M. S. Henry, Childress, J. J., and Figueroa, D., Metabolic rates and thermal tolerances of chemoautotrophic symbioses from Lau Basin hydrothermal vents and their implications for species distributions, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 55, pp. 679–695, 2008.
Y. He, Xiao, X., and Wang, F., Metagenome reveals potential microbial degradation of hydrocarbon coupled with sulfate reduction in an oil-immersed chimney from Guaymas Basin, FRONTIERS IN MICROBIOLOGY, vol. 4, 2013.
J. Reveillaud, Anderson, R., Reves-Sohn, S., Cavanaugh, C., and Huber, J. A., Metagenomic investigation of vestimentiferan tubeworm endosymbionts from Mid-Cayman Rise reveals new insights into metabolism and diversity, Microbiome, vol. 6, no. Journal Article, pp. 19 - 19, 2018.
J. A. Vargas, Hilton, D. R., Ramirez, C., and Molina, J., Metals in bivalve mollusks from the Jaco Scar seep, Pacific, Costa Rica, Revista de biologia tropical, vol. 66, no. Journal Article, pp. S269 - S279, 2018.
R. L. Hansman, Thurber, A. R., Levin, L. A., and Aluwihare, L. I., Methane fates in the benthos and water column at cold seep sites along the continental margin of Central and North America, Deep Sea Research Part I: Oceanographic Research Papers, vol. 120, pp. 122–131, 2017.
M. Kurr, Huber, R., Konig, H., Jannasch, H. W., Fricke, H., Trincone, A., Kristiansson, J. K., and Stetter, K. O., Methanopyrus kandleri, gen. and sp. nov. represents a novel group of hyperthermophilic methanogens growing at 110C, Archives of Microbiology, vol. 156, pp. 239–247, 1991.
L. M. Nigro, Harris, K., Orcutt, B. N., Hyde, A., Clayton-Luce, S., Becker, K., and Teske, A., Microbial communities at the borehole observatory on the Costa Rica Rift flank (Ocean Drilling Program Hole 896A), FRONTIERS IN MICROBIOLOGY, vol. 3, 2012.
L. M. Nigro, Harris, K., Orcutt, B. N., Hyde, A., Clayton-Luce, S., Becker, K., and Teske, A., Microbial communities at the borehole observatory on the Costa Rica Rift flank (Ocean Drilling Program Hole 896A), FRONTIERS IN MICROBIOLOGY, vol. 3, 2012.
F. Dowell, Cardman, Z., Dasarathy, S., Kellermann, M. Y., Lipp, J. S., S Ruff, E., Biddle, J. F., McKay, L. J., MacGregor, B. J., Lloyd, K. G., Albert, D. B., Mendlovitz, H., Hinrichs, K. - U., and Teske, A., Microbial Communities in Methane- and Short Chain Alkane-Rich Hydrothermal Sediments of Guaymas Basin, FRONTIERS IN MICROBIOLOGY, vol. 7, 2016.
A. Teske, Wegener, G., Chanton, J. P., White, D., MacGregor, B., Hoer, D., de Beer, D., Zhuang, G., Saxton, M. A., Joye, S. B., Lizarralde, D., S. Soule, A., and S. Ruff, E., Microbial Communities Under Distinct Thermal and Geochemical Regimes in Axial and Off-Axis Sediments of Guaymas Basin, Frontiers in Microbiology, vol. 12, p. 633649, 2021.
V. Krukenberg, Reichart, N. J., Spietz, R. L., and Hatzenpichler, R., Microbial Community Response to Polysaccharide Amendment in Anoxic Hydrothermal Sediments of the Guaymas Basin, Frontiers in Microbiology, vol. 12, p. 763971, 2021.
S. R. Shah Walter, Jaekel, U., Osterholz, H., Fisher, A. T., Huber, J. A., Pearson, A., Dittmar, T., and Girguis, P. R., Microbial decomposition of marine dissolved organic matter in cool oceanic crust, Nature Geoscience, vol. 11, no. 5, p. 334 - +, 2018.
J. A. Huber, Johnson, H. P., Butterfield, D. A., and Baross, J. A., Microbial life in ridge flank crustal fluids, Environmental Microbiology, vol. 8, pp. 88–99, 2006.

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