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Expedition-related bibliography*Citation data for IODP publications and journal articles in RIS format IODP publicationsScientific ProspectusEdwards, K.J., Bach, W., and Klaus, A., 2010. Mid-Atlantic Ridge flank microbiology: initiation of long-term coupled microbiological, geochemical, and hydrological experimentation within the seafloor at North Pond, western flank of the Mid-Atlantic Ridge. IODP Sci. Prosp., 336. doi:10.2204/ Preliminary ReportExpedition 336 Scientists, 2012. Mid-Atlantic Ridge microbiology: initiation of long-term coupled microbiological, geochemical, and hydrological experimentation within the seafloor at North Pond, western flank of the Mid-Atlantic Ridge. IODP Prel. Rept., 336. doi:10.2204/ Scientific Drilling journalWheat, C.G., Edwards, K.J., Pettigrew, T., Jannasch, H.W., Becker, K., Davis, E.E., Villinger, H., and Bach, W., 2012. CORK-lite: bringing legacy boreholes back to life. Sci. Drill., 14:39–43. doi:10.2204/ Proceedings volumeEdwards, K.J., Bach, W., Klaus, A., and the Expedition 336 Scientists, 2012. Proc. IODP, 336: Tokyo (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/ Expedition reportsExpedition 336 Scientists, 2012. Expedition 336 summary. In Edwards, K.J., Bach, W., Klaus, A., and the Expedition 336 Scientists, Proc. IODP, 336: Tokyo (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/ Expedition 336 Scientists, 2012. Methods. In Edwards, K.J., Bach, W., Klaus, A., and the Expedition 336 Scientists, Proc. IODP, 336: Tokyo (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/ Expedition 336 Scientists, 2012. Site 395. In Edwards, K.J., Bach, W., Klaus, A., and the Expedition 336 Scientists, Proc. IODP, 336: Tokyo (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/ Expedition 336 Scientists, 2012. Site U1382. In Edwards, K.J., Bach, W., Klaus, A., and the Expedition 336 Scientists, Proc. IODP, 336: Tokyo (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/ Expedition 336 Scientists, 2012. Site U1383. In Edwards, K.J., Bach, W., Klaus, A., and the Expedition 336 Scientists, Proc. IODP, 336: Tokyo (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/ Expedition 336 Scientists, 2012. Sediment and basement contact coring. In Edwards, K.J., Bach, W., Klaus, A., and the Expedition 336 Scientists, Proc. IODP, 336: Tokyo (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/ Schmidt-Schierhorn, F., Kaul, N., Stephan, S., and Villinger, H., 2012. Geophysical site survey results from North Pond (Mid-Atlantic Ridge). In Edwards, K.J., Bach, W., Klaus, A., and the Expedition 336 Scientists, Proc. IODP, 336: Tokyo (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/ Edwards, K.J., Wheat, C.G., Orcutt, B.N., Hulme, S., Becker, K., Jannasch, H., Haddad, A., Pettigrew, T., Rhinehart, W., Grigar, K., Bach, W., Kirkwood, W., and Klaus, A., 2012. Design and deployment of borehole observatories and experiments during IODP Expedition 336, Mid-Atlantic Ridge flank at North Pond. In Edwards, K.J., Bach, W., Klaus, A., and the Expedition 336 Scientists, Proc. IODP, 336: Tokyo (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/ Orcutt, B.N., Barco, R.A., Joye, S.B., and Edwards, K.J., 2012. Summary of carbon, nitrogen, and iron leaching characteristics and fluorescence properties of materials considered for subseafloor observatory assembly. In Edwards, K.J., Bach, W., Klaus, A., and the Expedition 336 Scientists, Proc. IODP, 336: Tokyo (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/ Griffin, D.W., 2012. Long-range transatlantic transport of microorganisms in clouds of African desert dust: a study of atmospheric microbiology, chemistry, and the influence of desert dust on surface water microbial ecology aboard the R/V JOIDES Resolution, IODP Expedition 336, 16 September–16 November 2011. In Edwards, K.J., Bach, W., Klaus, A., and the Expedition 336 Scientists, Proc. IODP, 336: Tokyo (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/ Expedition research resultsBreuker, A., and Schippers, A., 2013. Data report: total cell counts and qPCR abundance of Archaea and Bacteria in shallow subsurface marine sediments of North Pond: gravity cores collected during site survey cruise prior to IODP Expedition 336. In Edwards, K.J., Bach, W., Klaus, A., and the Expedition 336 Scientists, Proc. IODP, 336: Tokyo (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/ Defforey, D., and Paytan, A., 2015. Data report: characteristics of sedimentary phosphorus at North Pond, IODP Expedition 336. In Edwards, K.J., Bach, W., Klaus, A., and the Expedition 336 Scientists, Proceedings of the Integrated Ocean Drilling Program, 336: Tokyo (Integrated Ocean Drilling Program Management International, Inc.). http:// Hirayama, H., Abe, M., Miyazaki, J., Sakai, S., Nagano, Y., and Takai, K., 2015. Data report: cultivation of microorganisms from basaltic rock and sediment cores from the North Pond on the western flank of the Mid-Atlantic Ridge, IODP Expedition 336. In Edwards, K.J., Bach, W., Klaus, A., and the Expedition 336 Scien-tists, Proceedings of the Integrated Ocean Drilling Program, 336: Tokyo (Integrated Ocean Drilling Program Management International, Inc.). http:// Sakata, K., Yabuta, H., Ikehara, M., and Kondo, T., 2015. Data report: carbon content and isotopic composition of basalts and sediments in North Pond, Expedition 336. In Edwards, K.J., Bach, W., Klaus, A., and the Expedition 336 Scientists, Proceedings of the Integrated Ocean Drilling Program, 336: Tokyo (Integrated Ocean Drilling Program Management International, Inc.). http:// Türke, A., Bach, W., and Mehmood, M.S., 2014. Data report: X-ray fluorescence scanning of sediment cores from Holes U1382B, U1383D, U1384A, and 1074A from the North Pond area. In Edwards, K.J., Bach, W., Klaus, A., and the Expedition 336 Scientists, Proc. IODP, 336: Tokyo (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/ Journals/BooksAnderson, R.E., Graham, E.D., Huber, J.A., and Tully, B.J., 2022. Microbial populations are shaped by dispersal and recombination in a low biomass subseafloor habitat. mBio, 13(4):e00354-00322. https://doi.org/10.1128/mbio.00354-22 Becker, K., Davis, E.E., and Villinger, H., 2022. Long-term observations of subseafloor temperatures and pressures in a low-temperature, off-axis hydrothermal system in North Pond on the western flank of the Mid-Atlantic Ridge. Geochemistry, Geophysics, Geosystems, 23(9):e2022GC010496. https://doi.org/10.1029/2022GC010496 Becker, K., Thomson, R.E., Davis, E.E., Villinger, H., and Wheat, C.G., 2021. Geothermal heating and episodic cold-seawater intrusions into an isolated ridge-flank basin near the Mid-Atlantic Ridge. Communications Earth & Environment, 2(1):226. https://doi.org/10.1038/s43247-021-00297-2 Bradley, J.A., Amend, J.P., and LaRowe, D.E., 2019. Survival of the fewest: microbial dormancy and maintenance in marine sediments through deep time. Geobiology, 17(1):43–59. https://doi.org/10.1111/gbi.12313 Chang, D., Lee, S.H., Park, Y.H., and Kim, K., 2014. Calcareous micro-fossil biostratigraphy and high environment of the North Pond of the central Atlantic Ocean. Journal of the Geological Society of Korea, 50(3):198–207. Colwell, F.S., and D’Hondt, S., 2013. Nature and extent of the deep biosphere. Reviews in Mineralogy and Geochemistry, 75(1):547–574. https://doi.org/10.2138/rmg.2013.75.17 Defforey, D., 2016. Phosphorus cycling in the deep sedimentary subseafloor environment [PhD dissertation]. University of California, Santa Cruz, https://www.proquest.com/docview/1858722839 Defforey, D., Tully, B.J., Sylvan, J.B., Cade-Menun, B.J., Kiel Reese, B., Zinke, L., and Paytan, A., 2022. Potential phosphorus uptake mechanisms in the deep sedimentary biosphere. Frontiers in Marine Science, 9:907527. https://doi.org/10.3389/fmars.2022.907527 D'Hondt, S., Inagaki, F., Orcutt, B.N., and Hinrichs, K.-U., 2019. IODP advances in the understanding of subseafloor life. Oceanography, 32(1):198–207. https://doi.org/10.5670/oceanog.2019.146 Edwards, K.J., Fisher, A.T., and Wheat, C.G., 2012. The deep subsurface biosphere in igneous ocean crust: frontier habitats for microbiological exploration. Frontiers in Microbiology, 3:8. https://doi.org/10.3389/fmicb.2012.00008 Fisher, A.T., Alt, J., and Bach, W., 2014. Hydrogeologic properties, processes, and alteration in the igneous ocean crust. In Stein, R., Blackman, D., Inagaki, F., and Larsen, H.-C. (Eds.), Developments in Marine Geology (Volume 7): Earth and Life Processes Discovered from Subseafloor Environments: A Decade of Science Achieved by the Integrated Ocean Drilling Program (IODP). R. Stein (Series Ed.). Amsterdam (Elsevier), 507–551. https://doi.org/10.1016/B978-0-444-62617-2.00018-9 Garber, A.I., Cohen, A.B., Nealson, K.H., Ramírez, G.A., Barco, R.A., Enzingmüller-Bleyl, T.C., Gehringer, M.M., and Merino, N., 2021. Metagenomic insights into the microbial iron cycle of dubseafloor habitats. Frontiers in Microbiology, 12. https://doi.org/10.3389/fmicb.2021.667944 Haddad, A.G., Turner, M.K., Joseph, C., Orcutt, B.N., Samuelson, L., and the Shipboard Parties of IODP Expedition 336 and MSM20/5, 2012. The Classroom Connection program: bringing deep sea research to the special needs classroom. Current: Journal of Marine Education, 28(2):51–56. Harigane, Y., Abe, N., Michibayashi, K., Kimura, J.-I., and Chang, Q., 2016. Melt-rock interactions and fabric development of peridotites from North Pond in the Kane area, Mid-Atlantic Ridge: implications of microstructural and petrological analyses of peridotite samples from IODP Hole U1382A. Geochemistry, Geophysics, Geosystems, 17(6):2298–2322. https://doi.org/10.1002/2016GC006429 Inagaki, F., and Orphan, V., 2014. Exploration of subseafloor life and the biosphere through IODP (2003–2013). In Stein, R., Blackman, D.K., Inagaki, F., and Larsen, H.-C. (Eds.), A Decade of Science Achieved by the Integrated Ocean Drilling Program (IODP). Developments in Marine Geology. R. Stein (Series Ed.), 7: 39–63. https://doi.org/10.1016/B978-0-444-62617-2.00002-5 Jang, D., 2014. The chemo- and bio-stratigraphy of North Pond, Mid-Atlantic Ridge, IODP Expedition 336 [MS thesis]. University of Science and Technology, Korea. https://www.dbpia.co.kr/journal/detail?nodeId=T13547907 Jang, Y.S., Yi, S., Park, Y.-S., and Kim, G.Y., 2014. Calcareous nannofossil biostratigraphy of North Pond area, Mid-Atlantic Ridge and its paleoenvironmental implication. Journal of the Geological Society of Korea, 50(3):309–325. https://doi.org/10.14770/jgsk.2014.50.3.309 Jones, R.M., D’Angelo, T., and Orcutt, B.N., 2020. Using cathodic poised potential experiments to investigate extracellular electron transport in the crustal deep biosphere of North Pond, Mid-Atlantic Ridge. Frontiers in Environmental Science, 8:11. https://doi.org/10.3389/fenvs.2020.00011 Jørgensen, S.L., and Zhao, R., 2016. Microbial inventory of deeply buried oceanic crust from a young ridge flank. Frontiers in Microbiology, 7:820. https://doi.org/10.3389/fmicb.2016.00820 LaRowe, D.E., Arndt, S., Bradley, J.A., Estes, E.R., Hoarfrost, A., Lang, S.Q., Lloyd, K.G., Mahmoudi, N., Orsi, W.D., Shah Walter, S.R., Steen, A.D., and Zhao, R., 2020. The fate of organic carbon in marine sediments - new insights from recent data and analysis. Earth-Science Reviews, 204:103146. https://doi.org/10.1016/j.earscirev.2020.103146 LaRowe, D.E., Koch, B.P., Robador, A., Witt, M., Ksionzek, K., and Amend, J.P., 2017. Identification of organic compounds in ocean basement fluids. Organic Geochemistry, 113:124–127. https://doi.org/10.1016/j.orggeochem.2017.07.017 Mascarelli, A.L., 2009. Geomicrobiology: low life. Nature, 459:770–773. https://doi.org/10.1038/459770a Meyer, J.L., Jaekel, U., Tully, B.J., Glazer, B.T., Wheat, C.G., Lin, H., Hsieh, C.-C., Cowen, J.P., Hulme, S.M., Girguis, P.R., and Huber, J.A., 2016. A distinct and active bacterial community in cold oxygenated fluids circulating beneath the western flank of the Mid-Atlantic Ridge. Scientific Reports, 6(22541). https://doi.org/10.1038/srep22541 Orcutt, B.N., 2015. Life in the deepest depths. Nature Geoscience, 8(4):258–259. https://doi.org/10.1038/ngeo2378 Orcutt, B.N., D'Angelo, T., Wheat, C.G., and Trembath-Reichert, E., 2021. Microbe-mineral biogeography from multi-year incubations in oceanic crust at North Pond, Mid-Atlantic Ridge. Environmental Microbiology, 23(7):3923−3936. https://doi.org/10.1111/1462-2920.15366 Orcutt, B.N., and Edwards, K.J., 2014. Life in the ocean crust: lessons from subseafloor laboratories. In Stein, R., Blackman, D.K., Inagaki, F., and Larsen, H.-C. (Eds.), Developments in Marine Geology (Volume 7): Earth and Life Processes Discovered from Subseafloor Environments: A Decade of Science Achieved by the Integrated Ocean Drilling Program (IODP). R. Stein (Series Ed.). Amsterdam (Elsevier), 175–196. https://doi.org/10.1016/B978-0-444-62617-2.00007-4 Orcutt, B.N., Sylvan, J.B., Rogers, D.R., Delaney, J., Lee, R.W., and Girguis, P.R., 2015. Carbon fixation by basalt-hosted microbial communities. Frontiers in Microbiology, 6:904. https://doi.org/10.3389/fmicb.2015.00904 Orcutt, B.N., Wheat, C.G., Rouxel, O., Hulme, S., Edwards, K.J., and Bach, W., 2013. Oxygen consumption rates in subseafloor basaltic crust derived from a reaction transport model. Nature Communications, 4:2539. https://doi.org/10.1038/ncomms3539 Pohlner, M., Dlugosch, L., Wemheuer, B., Mills, H., Engelen, B., and Reese, B.K., 2019. The majority of active Rhodobacteraceae in marine sediments belong to uncultured genera: a molecular approach to link their distribution to environmental conditions. Frontiers in Microbiology, 10:659. https://doi.org/10.3389/fmicb.2019.00659 Price, A.N., 2022. Exploration of low-temperature hydrothermal processes in North Pond, Mid-Atlantic [PhD dissertation]. University of California, Santa Cruz, https://www.proquest.com/docview/2771991750 Price, A.N., Fisher, A.T., Lindsey, C.R., Stauffer, P.H., and Gable, C.W., 2023. The influence of permeability anisotropy in the upper ocean crust on advective heat transport by a ridge-flank hydrothermal system. Earth and Planetary Science Letters, 619:118300. https://doi.org/10.1016/j.epsl.2023.118300 Price, A.N., Fisher, A.T., Stauffer, P.H., and Gable, C.W., 2022. Numerical simulation of cool hydrothermal processes in the upper volcanic crust beneath a marine sediment pond: North Pond, North Atlantic Ocean. Journal of Geophysical Research: Solid Earth, 127(1):e2021JB023158. https://doi.org/10.1029/2021JB023158 Reese, B.K., Zinke, L.A., Sobol, M.S., LaRowe, D.E., Orcutt, B.N., Zhang, X., Jaekel, U., Wang, F., Dittmar, T., Defforey, D., Tully, B., Paytan, A., Sylvan, J.B., Amend, J.P., Edwards, K.J., and Girguis, P., 2018. Nitrogen cycling of active bacteria within oligotrophic sediment of the Mid-Atlantic Ridge flank. Geomicrobiology Journal, 35(6):468–483. https://doi.org/10.1080/01490451.2017.1392649 Robador, A., LaRowe, D.E., Jungbluth, S.P., Lin, H.-T., Rappe, M.S., Nealson, K.H., and Amend, J.P., 2016. Nanocalorimetric characterization of microbial activity in deep subsurface oceanic crustal fluids. Frontiers in Microbiology, 7:454. https://doi.org/10.3389/fmicb.2016.00454 Russell, J.A., III, 2015. Active populations and preserved signals: molecular- and cultivation-based geobiological analyses from microbialites to the marine deep biosphere [PhD dissertation]. University of Delaware, Newark. https://www.proquest.com/docview/1767224921 Russell, J.A., León-Zayas, R., Wrighton, K., and Biddle, J.F., 2016. Deep subsurface life from North Pond: enrichment, isolation, characterization and genomes of heterotrophic bacteria. Frontiers in Microbiology, 7:678. https://doi.org/10.3389/fmicb.2016.00678 Sakata, K., 2014. Effects of metal ions, pressure, temperature, and basalt on the polymerization reactions of amino acids in hydrothermal systems and organic geochemical investigation for subseafloor biosphere [PhD dissertation]. Osaka University, Suita, Japan. https://doi.org/10.18910/34031 Salas, E.C., Bhartia, R., Anderson, L., Hug, W.F., Reid, R.D., Iturrino, G., and Edwards, K.J., 2015. In situ detection of microbial life in the deep biosphere in igneous ocean crust. Frontiers in Microbiology, 6:1260. https://doi.org/10.3389/fmicb.2015.01260 Sengupta, S., 2017. Triple oxygen isotopes of cherts : implications for the δ18O and temperatures of early oceans [PhD dissertation]. University of Göttingen, Germany. https://doi.org/10.53846/goediss-6352 Sengupta, S., and Pack, A., 2018. Triple oxygen isotope mass balance for the Earth's oceans with application to Archean cherts. Chemical Geology, 495:18–26. https://doi.org/10.1016/j.chemgeo.2018.07.012 Seyler, L.M., Trembath-Reichert, E., Tully, B.J., and Huber, J.A., 2021. Time-series transcriptomics from cold, oxic subseafloor crustal fluids reveals a motile, mixotrophic microbial community. The ISME Journal, 15(4):1192–1206. https://doi.org/10.1038/s41396-020-00843-4 Trembath-Reichert, E., Shah Walter, S.R., Ortiz, M.A.F., Carter, P.D., Girguis, P.R., and Huber, J.A., 2021. Multiple carbon incorporation strategies support microbial survival in cold subseafloor crustal fluids. Science Advances, 7(18):eabg0153. https://doi.org/10.1126/sciadv.abg0153 Tully, B.J., Wheat, C.G., Glazer, B.T., and Huber, J.A., 2018. A dynamic microbial community with high functional redundancy inhabits the cold, oxic subseafloor aquifer. The ISME Journal, 12(1):1–16. https://doi.org/10.1038/ismej.2017.187 Türke, A., Ménez, B., and Bach, W., 2018. Comparing biosignatures in aged basalt glass from North Pond, Mid-Atlantic Ridge and the Louisville seamount trail, off New Zealand. PLOS ONE, 13(2):e0190053. https://doi.org/10.1371/journal.pone.0190053 Türke, A., Nakamura, K., and Bach, W., 2015. Palagonitization of basalt glass in the flanks of mid-ocean ridges: implications for the bioenergetics of oceanic intracrustal ecosystems. Astrobiology, 15(10):793–803. https://doi.org/10.1089/ast.2014.1255 Villinger, H.W., Müller, P., Bach, W., Becker, K., Orcutt, B.N., Kaul, N., and Wheat, C.G., 2019. Evidence for low-temperature diffuse venting at North Pond, western flank of the Mid-Atlantic Ridge. Geochemistry, Geophysics, Geosystems, 20(6):2572–2584. https://doi.org/10.1029/2018GC008113 Walter, S.R.S., Jaekel, U., Osterholz, H., Fisher, A.T., Huber, J.A., Pearson, A., Dittmar, T., and Girguis, P.R., 2018. Microbial decomposition of marine dissolved organic matter in cool oceanic crust. Nature Geoscience, 11(5):334–339. https://doi.org/10.1038/s41561-018-0109-5 Wang, F., Lu, S., Orcutt, B.N., Xie, W., Chen, Y., Xiao, X., and Edwards, K.J., 2013. Discovering the roles of subsurface microorganisms: progress and future of deep biosphere investigation. Chinese Science Bulletin, 58(4):456–467. https://doi.org/10.1007/s11434-012-5358-x Wang, Y., Zhang, X., Wang, J., Xiao, X., and Wang, F., 2020. Genomic analysis of Marinobacter sp. NP-4 and NP-6 isolated from the deep-sea oceanic crust on the western flank of the Mid-Atlantic Ridge. Marine Genomics, 50:100693. https://doi.org/10.1016/j.margen.2019.06.001 Wankel, S.D., Buchwald, C., Ziebis, W., Wenk, C.B., and Lehmann, M.F., 2015. Nitrogen cycling in the deep sedimentary biosphere: nitrate isotopes in pore waters underlying the oligotrophic North Atlantic. Biogeosciences, 12(24):7483–7502. https://doi.org/10.5194/bg-12-7483-2015 Westrich, J.R., 2015. Consilience of iron in the ecology of Vibrio bacteria [PhD dissertation]. The University of Georgia, Athens, GA. Westrich, J.R., Griffin, D.W., Westphal, D.L., and Lipp, E.K., 2018. Vibrio population dynamics in mid-Atlantic surface waters during Saharan dust events. Frontiers in Marine Science, 5:12. https://doi.org/10.3389/fmars.2018.00012 Wheat, C.G., Becker, K., Villinger, H., Orcutt, B.N., Fournier, T., Hartwell, A., and Paul, C., 2020. Subseafloor cross-hole tracer experiment reveals hydrologic properties, heterogeneities, and reactions in slow-spreading oceanic crust. Geochemistry, Geophysics, Geosystems, 21(1):e2019GC008804. https://doi.org/10.1029/2019GC008804 Zhang, X., 2016. The diversity, function and metabolic potential of microorganisms in the North Pond ocean crust on the west flank of the Mid-Atlantic Ridge [PhD dissertation]. Shanghai Jiaotong University, Shanghai, China. https://cdmd.cnki.com.cn/Article/CDMD-10248-1019681829.htm Zhang, X., Fang, J., Bach, W., Edwards, K.J., Orcutt, B.N., and Wang, F., 2016. Nitrogen stimulates the growth of subsurface basalt-associated microorganisms at the western flank of the Mid-Atlantic Ridge. Frontiers in Microbiology, 7:633. https://doi.org/10.3389/fmicb.2016.00633 Zhang, X., Feng, X., and Wang, F., 2016. Diversity and metabolic potentials of subsurface crustal microorganisms from the western flank of the Mid-Atlantic Ridge. Frontiers in Microbiology, 7:363. https://doi.org/10.3389/fmicb.2016.00363 Zhao, R., 2018. Microbial nitrogen cycling in the marine deep biosphere [PhD dissertation]. University of Bergen, Norway. http://hdl.handle.net/1956/20458 Zhao, R., Dahle, H., Ramírez, G.A., and Jørgensen, S.L. , 2022. Oceanic crustal fluid single cell genomics complements metagenomic and metatranscriptomic surveys with orders of magnitude less sample volume. Frontiers in Microbiology, 12:738231. https://doi.org/10.3389/fmicb.2021.738231 Zhao, R., Dahle, H., Ramírez, G.A., and Jørgensen, S.L., 2020. Indigenous ammonia-oxidizing archaea in oxic subseafloor oceanic crust. mSystems, 5(2):e00758-00719. https://doi.org/10.1128/mSystems.00758-19 Zhao, R., Farag, I.F., Jørgensen, S.L., and Biddle, J.F., 2022. Occurrence, diversity, and genomes of Candidatus Patescibacteria along the early diagenesis of marine sediments. Applied and Environmental Microbiology, 88(24):e01409-01422. https://doi.org/10.1128/aem.01409-22 Zhao, R., Hannisdal, B., Mogollon, J.M., and Jørgensen, S.L., 2019. Nitrifier abundance and diversity peak at deep redox transition zones. Scientific Reports, 9(1):8633. https://doi.org/10.1038/s41598-019-44585-6 ConferencesAmerican Geophysical Union (AGU) Fall Meeting 2011Becker, K., Davis, E.E., Fisher, A.T., Wheat, C.G., Jannasch, H.W., and Pettigrew, T., 2011. Historical overview of ODP/IODP CORK hydrological observatories [presented at the 2011 American Geophysical Union Fall Meeting, San Francisco, CA, 5–9 December 2011]. (Abstract OS11A-1454) http://abstractsearch.agu.org/ Edwards, K.J., Bach, W., and Klaus, A., 2011. The deep biosphere below North Pond: A mid-Atlantic microbial observatory [presented at the 2011 American Geophysical Union Fall Meeting, San Francisco, CA, 5–9 December 2011]. (Abstract B44B-05) http://abstractsearch.agu.org/ Haddad, A., Turner, M., Samuelson, L., and the Scientific Team of IODP Expedition 336, 2011. Can ship-to-classroom interactions aid in teaching state-mandated curricula to special needs students? [presented at the 2011 American Geophysical Union Fall Meeting, San Francisco, CA, 5–9 December 2011]. (Abstract ED41B-0528) http://abstractsearch.agu.org/ AGU Fall Meeting 2012Anderson, L.M., Salas, E.C., Edwards, K.J., Bach, W., Becker, K., and IODP Expedition 336 Scientists, 2012. Investigating the deep biosphere using downhole measurements, North Pond, IODP Expedition 336 [presented at the 2012 American Geophysical Union Fall Meeting, San Francisco, CA, 3–7 December 2012]. (Abstract OS24B-04) http://abstractsearch.agu.org/meetings/2012/FM/OS24B-04.html Becker, K., Villinger, H.W., and Davis, E.E., 2012. Initial pressure data from the IODP Expedition 336 CORKS at North Pond [presented at the 2012 American Geophysical Union Fall Meeting, San Francisco, CA, 3–7 December 2012]. (Abstract OS24B-02) http://abstractsearch.agu.org/ Defforey, D., and Paytan, A., 2012. Nature of phosphorus compounds fueling microbial life in deep-sea sediments at North Pond [presented at the 2012 American Geophysical Union Fall Meeting, San Francisco, CA, 3–7 December 2012]. (Abstract B43G-0487) http://abstractsearch.agu.org/ Edwards, K.J., Wheat, C.G., Pettigrew, T., Jannasch, H.W., Becker, K., Davis, E.E., Villinger, H.W., and Bach, W., 2012. CORK-Lite: bringing legacy boreholes back to life [presented at the 2012 American Geophysical Union Fall Meeting, San Francisco, CA, 3–7 December 2012]. (Abstract OS24B-03) http://abstractsearch.agu.org/ Jaekel, U., Dittmar, T., Meyer, J.L., Huber, J.A., Glazer, B.T., and Girguis, P.R., 2012. Transformations of organic matter in the deep biosphere at North Pond [presented at the 2012 American Geophysical Union Fall Meeting, San Francisco, CA, 3–7 December 2012]. (Abstract B43G-0486) http://abstractsearch.agu.org/ Meyer, J.L., Jaekel, U., Girguis, P.R., Glazer, B.T., and Huber, J.A., 2012. Microbial life in cold, hydrologically active oceanic crustal fluids [presented at the 2012 American Geophysical Union Fall Meeting, San Francisco, CA, 3–7 December 2012]. (Abstract B42C-05) http://abstractsearch.agu.org/ Orcutt, B.N., Wheat, C.G., Hulme, S., Edwards, K.J., and Bach, W., 2012. Oxygen consumption in subseafloor basaltic crust [presented at the 2012 American Geophysical Union Fall Meeting, San Francisco, CA, 3–7 December 2012]. (Abstract B43G-0500) http://abstractsearch.agu.org/ Salas, E.C., Bhartia, R., Hug, W.F., Reid, R., and Edwards, K.J., 2012. Characterization of the microbial community in a legacy borehole in the igneous ocean crust [presented at the 2012 American Geophysical Union Fall Meeting, San Francisco, CA, 3–7 December 2012]. (Abstract OS24B-05) http://abstractsearch.agu.org/ Ziebis, W., Patel, A., Krupke, A., and Ferdelman, T.G., 2012. Exploring metabolic activities of deeply buried microbial communities in oxic sediments underlying oligotrophic open ocean gyres [presented at the 2012 American Geophysical Union Fall Meeting, San Francisco, CA, 3–7 December 2012]. (Abstract B42C-02) http://abstractsearch.agu.org/ AGU Fall Meeting 2013Defforey, D., and Paytan, A., 2013. Phosphorus cycling in the deep subseafloor biosphere at North Pond [presented at the American Geophysical Union Fall 2013 Meeting, San Francisco, CA, 9–13 December 2013]. (Abstract B13C-0498) http://abstractsearch.agu.org/ Reese, B.K., Carvalho, G., Toner, B.M., Orcutt, B.N., Mills, H.J., and Edwards, K.J., 2013. Microbial community structure as a reflection of the distribution and speciation of iron within North Pond sediments [presented at the American Geophysical Union Fall 2013 Meeting, San Francisco, CA, 9–13 December 2013]. (Abstract B22B-03) http://abstractsearch.agu.org/ AGU Fall Meeting 2014Becker, K., Villinger, H.W., and Davis, E.E., 2014. New pressure results from the Expedition 336 CORKs at North Pond, western flank of the Mid-Atlantic Ridge [presented at the 2014 American Geophysical Union Fall Meeting, San Francisco, CA, 15–19 December 2014]. (Abstract OS53D-1080) http://abstractsearch.agu.org/ Defforey, D., and Paytan, A., 2014. Organic phosphorus in the deep subseafloor environment [presented at the 2014 American Geophysical Union Fall Meeting, San Francisco, CA, 15–19 December 2014]. (Abstract B11H-0137) http://abstractsearch.agu.org/ Russell, J.A., III, and Biddle, J., 2014. A quiet riot: furthering the discussion on aerobic heterotrophy in deep sediments [presented at the 2014 American Geophysical Union Fall Meeting, San Francisco, CA, 15–19 December 2014]. (Abstract B22D-04) http://abstractsearch.agu.org/ AGU Fall Meeting 2015Defforey, D., and Kavanaugh, M., 2015. Enzymatic assays of sediments from North Pond (IODP Expedition 336) to elucidate microbial phosphorus cycling strategies [presented at the 2015 American Geophysical Union Fall Meeting, San Francisco, California, 14–18 December 2015]. (Abstract B11I-0564) http://abstractsearch.agu.org/ Mewes, K., and Orcutt, B., 2015. Exploring microbial life in oxic sediments underlying oligotrophic ocean gyres [presented at the 2015 American Geophysical Union Fall Meeting, San Francisco, California, 14–18 December 2015]. (Abstract PP41C-03) http://abstractsearch.agu.org/ AGU Fall Meeting 2016Ziebis, W., 2016. Nitrogen cycling in the deep subsurface underlying oligotrophic open ocean regions: metagenomic analyses of North Pond sediment microbial communities [presented at the 2016 American Geophysical Union Fall Meeting, San Francisco, California, 11–15 December 2016]. (Abstract B22D-05) http://abstractsearch.agu.org/ American Meteorological Society (AMS) Annual Meeting 2013Griffin, D., Smith, D.J., and Schuerger, A.C., 2013. Desert dust dispersion, microbiology, and impacts [American Meteorological Society 2013 Annual Meeting: Taking Predictions to the Next Level—Expanding Beyond Today’s Weather, Water, and Climate Forecasting and Projections, Austin, Texas, 6–10 January 2013]. European Geosciences Union (EGU) General Assembly 2015Orcutt, B., 2015. Exploring the oceanic crust deep biosphere through subsurface borehole observatories. Geophysical Research Abstracts, 17:EGU2015-7822. http://meetingorganizer.copernicus.org/ EGU General Assembly 2017De Vleeschouwer, D., Dunlea, A.G., Auer, G., Anderson, C.H., Brumsack, H., de Loach, A., Gurnis, M.C., Huh, Y., Ishiwa, T., Jang, K., Kominz, M.A., März, C., Schnetger, B., Murray, R.W., Pälike, H., and Expedition 356 Shipboard Scientists, 2017. Quantifying K, U, and Th contents of marine sediments using shipboard natural gamma radiation spectra measured on DV JOIDES Resolution. Geophysical Research Abstracts, 19:EGU2017-3947. http://meetingorganizer.copernicus.org/ Knierzinger, W., Lee, E.Y., Wagreich, M., and the IODP Expedition 356 Shipboard Scientists Team, 2017. Mineralogical influences on porosity-depth trends of shelf deposits (Miocene–Pliocene) along the northwest shelf of Australia (IODP Expedition 356). Geophysical Research Abstracts, 19:EGU2017-3034. http://meetingorganizer.copernicus.org/ Lee, E.Y., Kominz, M., Reuning, L., Takayanagi, H., Knierzinger, W., Wagreich, M., and IODP Expedition 356 Shipboard Scientists, 2017. Porosity-depth trends of carbonate deposits along the northwest shelf of Australia (IODP Expedition 356). Geophysical Research Abstracts, 19:EGU2017-3023. http://meetingorganizer.copernicus.org/ IODP/ICDP Kolloquium 2017De Vleeschouwer, D., Dunlea, A.G., Auer, G., Anderson, C.H., Brumsack, H., de Loach, A., Gurnis, M.C., Huh, Y., Ishiwa, T., Jang, K., Kominz, M.A., März, C., Schnetger, B., Murray, R.W., Pälike, H., and Expedition 356 Shipboard Scientists, 2017. Quantifying K, U, and Th contents of marine sediments using shipboard natural gamma radiation spectra measured on DV JOIDES Resolution [presented at the 2017 IODP/ICDP Kolloquium, Braunschweig, Germany, 14–16 March 2017]. Groeneveld, J., Henderiks, J., Renema, W., McHugh, C.M., De Vleeschouwer, D., Christensen, B.A., and Expedition 356 Scientists, 2017. Shifts in Miocene Southern Hemisphere westerlies and varying southward heat transport by the Leeuwin Current [presented at the 2017 IODP/ICDP Kolloquium, Braunschweig, Germany, 14–16March 2017]. Petrick, B., Auer, G., De Vleeschouwer, D., Christensen, B., Stolfi, C., Reuning, L., Martinez-Garcia, A., Haug, G.H., Gallagher, S.J., Fulthorpe, C.S., Bogus, K., and IODP Expedition 356 Scientists, 2017. Indian Ocean circulation changes over the middle Pleistocene Transition [presented at the 2017 IODP/ICDP Kolloquium, Braunschweig, Germany, 14–16 March 2017]. Japan Geoscience Union (JpGU)/AGU Joint Meeting 2017Christensen, B.A., DeVleeschouwer, D., Groeneveld, J., Petrick, B., Reuning, L., Auer, G., and Expedition 356 Shipboard Scientific Party, 2017. Six million years of Leeuwin Current history using changes in water column stratification and productivity [presented at the 2017 Japan Geoscience Union/American Geophysical Union Joint Meeting, Chiba, Japan, 20–25 May 2017]. Southeastern Branch of the American Society for Microbiology Conference 2012 (SEB ASM 2012)Griffin, D., Smith, D.J., and Schuerger, A.C., 2012. Long range dispersion of microorganisms in Earth’s atmosphere by desert dust storms [Southeastern Branch of the American Society for Microbiology 2012 Conference (SEB ASM 2012): Ecology of Infectious Disease, Atlanta, Georgia, 25–27 October 2012]. University of Texas Institute for Geophysics Seminar 2012 Edwards, K., 2012. The deep biosphere in igneous ocean crust [presented at the University of Texas Institute for Geophysics (UTIG) Seminar, Austin, TX, 17 February 2012]. http://www.ig.utexas.edu/ *The Expedition-related bibliography is continually updated online. Please send updates to PubCrd@iodp.tamu.edu. |