• Hydrogeochemical Characteristics and Microbial Community Structures of Freshwater in Ulleung Island
  • Dong-Hun Kim1, Byong Wook Cho1, Byeong Dae Lee1*, Jung-Yun Lee1,2, Yong Hwa Oh3

  • 1Groundwater Environment Research Center, Climate Change Response Division, Korea Institute of Geoscience and Mineral Resources, Daejeon, 34132, Republic of Korea
    2Department of Biosystems Science, Chungbuk National University, Cheongju 28644, Republic of Korea
    3Department of Convergence Study on the Ocean Science and Technology, Korea Maritime & Ocean University, Busan 49112, Republic of Korea

  • 울릉도 담수의 수리지화학적 특성 및 미생물 군집 구조
  • 김동훈1, 조병욱1, 이병대1*, 이정윤1,2, 오용화3

  • 1한국지질자원연구원 기후변화대응연구본부 지하수환경연구센터
    2충북대학교 자연과학대학 생명시스템학과
    3국립한국해양대학교 해양과학기술전문대학원 해양과학기술융합학과

  • This article is an open access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

References
  • 1. Abiriga, D., Jenkins, A., Klempe, H., 2022, Microbial Assembly and Co-Occurrence Network in an Aquifer under Press Perturbation, Ann. Microbiol., 72(1), 41.
  •  
  • 2. Alegbeleye, O.O., Sant’Ana, A.S., 2020, Manure-Borne Pathogens as an Important Source of Water Contamination: An Update on the Dynamics of Pathogen Survival/Transport as Well as Practical Risk Mitigation Strategies, Int. J. Hyg. Environ. Health, 227, 113524.
  •  
  • 3. Bae, S.-G., Choo, C.-O., Jang, Y.-D., 2012, Mineralogical Characteristics of Tachylite Occurring in Basic Dike, Basaltic Agglomerate Formation, Ulleung Island and Its Implications of Volcanic Activity, J. Mineral. Soc. Korea, 25(2), 63-76.
  •  
  • 4. Bolyen, E., Rideout, J.R., Dillon, M.R., Bokulich, N.A., Abnet, C.C., Al-Ghalith, G.A., Alexander, H., Alm, E.J., Arumugam, M., Asnicar, F., Bai, Y., Bisanz, J.E., Bittinger, K., Brejnrod, A., Brislawn, C.J., Brown, C.T., Callahan, B.J., Caraballo-Rodríguez, A.M., Chase, J., Cope, E.K., Da Silva, R., Diener, C., Dorrestein, P.C., Douglas, G.M., Durall, D.M., Duvallet, C., Edwardson, C.F., Ernst, M., Estaki, M., Fouquier, J., Gauglitz, J.M., Gibbons, S.M., Gibson, D.L., Gonzalez, A., Gorlick, K., Guo, J., Hillmann, B., Holmes, S., Holste, H., Huttenhower, C., Huttley, G.A., Janssen, S., Jarmusch, A.K., Jiang, L., Kaehler, B.D., Kang, K.B., Keefe, C.R., Keim, P., Kelley, S.T., Knights, D., Koester, I., Kosciolek, T., Kreps, J., Langille, M.G.I., Lee, J., Ley, R., Liu, Y.-X., Loftfield, E., Lozupone, C., Maher, M., Marotz, C., Martin, B.D., McDonald, D., McIver, L.J., Melnik, A.V., Metcalf, J.L., Morgan, S.C., Morton, J.T., Naimey, A.T., Navas-Molina, J.A., Nothias, L.F., Orchanian, S.B., Pearson, T., Peoples, S.L., Petras, D., Preuss, M.L., Pruesse, E., Rasmussen, L.B., Rivers, A., Robeson, M.S., Rosenthal, P., Segata, N., Shaffer, M., Shiffer, A., Sinha, R., Song, S.J., Spear, J.R., Swafford, A.D., Thompson, L.R., Torres, P.J., Trinh, P., Tripathi, A., Turnbaugh, P.J., Ul-Hasan, S., van der Hooft, J.J.J., Vargas, F., Vázquez-Baeza, Y., Vogtmann, E., von Hippel, M., Walters, W., Wan, Y., Wang, M., Warren, J., Weber, K.C., Williamson, C.H.D., Willis, A.D., Xu, Z.Z., Zaneveld, J.R., Zhang, Y., Zhu, Q., Knight, R., Caporaso, J.G., 2019, Reproducible, Interactive, Scalable and Extensible Microbiome Data Science Using Qiime 2, Nat. Biotechnol., 37(8), 852-857.
  •  
  • 5. Callahan, B.J., McMurdie, P.J., Rosen, M.J., Han, A.W., Johnson, A.J.A., Holmes, S.P., 2016, Dada2: High-Resolution Sample Inference from Illumina Amplicon Data, Nat. Methods, 13(7), 581-583.
  •  
  • 6. Chen, W.M., Yang, S.H., Young, C.C., Sheu, S.Y., 2013, Arcicella Rigui sp. nov., Isolated from Water of a Wetland, and Emended Descriptions of the Genus Arcicella, Arcicella Aquatica, Arcicella Rosea and Arcicella Aurantiaca, Int. J. Syst. Evol. Microbiol., 63(Pt 1), 134-140.
  •  
  • 7. Cho, B.-W., Lee, B.-D., 2018, Discharge Characteristics of the Chusan Spring, Ulleung Island, J. Soil Groundwater Environ., 23(6), 37-45.
  •  
  • 8. Choi, S.H., 2021, Geochemistry and Petrogenesis of Quaternary Volcanic Rocks from Ulleung Island, South Korea, Lithos, 380, 105874.
  •  
  • 9. Fabbrocino, S., Bellucci Sessa, E., de Vita, S., Di Vito, M.A., Avino, R., Marotta, E., 2022, A Gis-Based Hydrogeological Approach to the Assessment of the Groundwater Circulation in the Ischia Volcanic Island (Italy), Front. Earth Sci., 10.
  •  
  • 10. Fabisch, M., Beulig, F., Akob, D., Küsel, K., 2013, Surprising Abundance of Gallionella-Related Iron Oxidizers in Creek Sediments at pH 4.4 or at High Heavy Metal Concentrations, Front. Microbiol., 4.
  •  
  • 11. Fernandes, A.L., Cruz, J.V., Figueira, C., Prada, S., 2020, Groundwater Chemistry in Madeira Island (Portugal): Main Processes and Contribution to the Hydrogeological Conceptual Model, Environ. Earth Sci., 79(18), 413.
  •  
  • 12. Fimlaid, K.A., Shen, A., 2015, Diverse Mechanisms Regulate Sporulation Sigma Factor Activity in the Firmicutes, Curr. Opin. Microbiol., 24, 88-95.
  •  
  • 13. Griebler, C., Lueders, T., 2009, Microbial Biodiversity in Groundwater Ecosystems, Freshw. Biol., 54(4), 649-677.
  •  
  • 14. Griebler, C., Malard, F., Lefébure, T., 2014, Current Developments in Groundwater Ecology—from Biodiversity to Ecosystem Function and Services, Curr. Opin. Biotechnol., 27, 159-167.
  •  
  • 15. Hallbeck, L., Pedersen, K., 1991, Autotrophic and Mixotrophic Growth of Gallionella Ferruginea, Microbiol., 137(11), 2657-2661.
  •  
  • 16. Hiraishi, A., Hoshino, Y., Satoh, T., 1991, Rhodoferax Fermentans gen. nov., sp. nov., a Phototrophic Purple Nonsulfur Bacterium Previously Referred to as the “Rhodocyclus Gelatinosus-Like” Group, Arch. Microbiol., 155(4), 330-336.
  •  
  • 17. Hwang, S.K., 2014, Rock Series and Petrochemical Classification of the Volcanic Rocks in Ulleung Island, J. Geol. Soc. Korea, 50(1), 61-70.
  •  
  • 18. Hwang, S.K., Ho, K.J., Yundeuk, J., 2017, Volcanism and Petrogenesis of Dodong Basaltic Rocks in the Ulleung Island, East Sea, J. Petrol. Soc. Korea, 26(4), 361-371.
  •  
  • 19. Im, J.H., Choo, C.O., 2015, A Study on Tree-Ring Dating and Speciation of Charcoal Found in Pumiceous Deposit of the Quaternary Nari Caldera, Ulleung Island, Korea, Econ. Environ. Geol., 48(6), 501-508.
  •  
  • 20. Im, J.H., Shim, S.H., Choo, C.O., Jang, Y.D., Lee, J.S., 2012, Volcanological and Paleoenvironmental Implications of Charcoals of the Nari Formation in Nari Caldera, Ulleung Island, Korea, Geosci. J., 16(2), 105-114.
  •  
  • 21. Jogler, M., Chen, H., Simon, J., Rohde, M., Busse, H.J., Klenk, H.P., Tindall, B.J., Overmann, J., 2013, Description of Sphingorhabdus Planktonica gen. nov., sp. nov. and Reclassification of Three Related Members of the Genus Sphingopyxis in the Genus Sphingorhabdus gen. nov, Int. J. Syst. Evol. Microbiol., 63(Pt 4), 1342-1349.
  •  
  • 22. Jones, D.S., Kohl, C., Grettenberger, C., Larson, L.N., Burgos, W.D., Macalady, J.L., 2015, Geochemical Niches of Iron-Oxidizing Acidophiles in Acidic Coal Mine Drainage, Appl. Environ. Microbiol., 81(4), 1242-1250.
  •  
  • 23. Kang, H., Kim, H., Joung, Y., Jang, T.Y., Joh, K., 2015, Ferruginibacter Paludis sp. nov., Isolated from Wetland Freshwater, and Emended Descriptions of Ferruginibacter Lapsinanis and Ferruginibacter Alkalilentus, Int. J. Syst. Evol. Microbiol., 65(Pt_8), 2635-2639.
  •  
  • 24. Kang, J.Y., Chun, J., Jahng, K.Y., 2017, Uliginosibacterium Flavum sp. nov. Isolated from an Artificial Lake, J. Microbiol., 55(8), 595-599.
  •  
  • 25. Kim, C.-S., Lee, J., Koh, Y.-K., Bae, D.-S., Park, M.-E., 2000, Isotopic and Geochemical Characteristics of Carbonated Water in the Ulleungdo Region. Korean Society of Soil and Groundwater Environment, pp. 158-158.
  •  
  • 26. Kim, C.H., Park, J.W., Lee, M.H., Park, C.H., 2013, Detailed Bathymetry and Submarine Terraces in the Coastal Area of the Dokdo Volcano in the Ulleung Basin, the East Sea (Sea of Japan), J. Coast. Res., 65(sp1), 523-528, 526.
  •  
  • 27. Kim, K.B., Lee, G.D., 2008, A Study on Volcanic Stratigraphy and Fault of Ulleung-Do, Korea, J. Eng. Geol., 18(3), 321-330.
  •  
  • 28. Kirs, M., Kisand, V., Nelson, C.E., Dudoit, T., Moravcik, P.S., 2020, Distinct Bacterial Communities in Tropical Island Aquifers, PLoS One, 15(4).
  •  
  • 29. Korbel, K., Chariton, A., Stephenson, S., Greenfield, P., Hose, G.C., 2017, Wells Provide a Distorted View of Life in the Aquifer: Implications for Sampling, Monitoring and Assessment of Groundwater Ecosystems, Sci. Rep., 7(1), 40702.
  •  
  • 30. Kwon, S.W., Kim, B.Y., Weon, H.Y., Baek, Y.K., Go, S.J., 2007, Arenimonas Donghaensis gen. nov., sp. nov., Isolated from Seashore Sand, Int. J. Syst. Evol. Microbiol., 57(Pt 5), 954-958.
  •  
  • 31. Lee, B., Han, M., Ryoo, C.-r., Cho, B.-w., 2024, Hydrogeological Controls on the Discharge Rate of Choosan Spring in the Nari Basin of Ulleung Island, South Korea, J. Eng. Geol., 34(1), 13-24.
  •  
  • 32. Lee, B.D., Cho, B.W., Choo, C.O., 2018a, The Hydrochemistry of Chusanyongchulso Spring, Cheonbu-Ri, Buk-Myeon, Northern Ulleung Island, J. Eng. Geol., 28(4), 565-582.
  •  
  • 33. Lee, J.-H., Lee, B.-J., Unno, T., 2018b, Bacterial Communities in Ground-and Surface Water Mixing Zone Induced by Seasonal Heavy Extraction of Groundwater, Geomicrobiol. J., 35(9), 768-774.
  •  
  • 34. Ma, Z., Gao, L., Sun, M., Liao, Y., Bai, S., Wu, Z., Li, J., 2022, Microbial Diversity in Groundwater and Its Response to Seawater Intrusion in Beihai City, Southern China, Front. Microbiol., 13.
  •  
  • 35. Méndez-García, C., Peláez, A.I., Mesa, V., Sánchez, J., Golyshina, O.V., Ferrer, M., 2015, Microbial Diversity and Metabolic Networks in Acid Mine Drainage Habitats, Front. Microbiol., 6, 475.
  •  
  • 36. Novak Babič, M., Gostinčar, C., Gunde-Cimerman, N., 2020, Microorganisms Populating the Water-Related Indoor Biome, Appl. Microbiol. Biotechnol., 104(15), 6443-6462.
  •  
  • 37. O’Sullivan, L.A., Rinna, J., Humphreys, G., Weightman, A.J., Fry, J.C., 2006, Culturable Phylogenetic Diversity of the Phylum ‘Bacteroidetes’ from River Epilithon and Coastal Water and Description of Novel Members of the Family Flavobacteriaceae: Epilithonimonas Tenax gen. nov., sp. nov. and Persicivirga Xylanidelens gen. nov., sp. nov, Int. J. Syst. Evol. Microbiol., 56(1), 169-180.
  •  
  • 38. Oh, Y., Kim, D.-H., Lee, S.-H., Sun, M.H., Cho, S.Y., 2020, Determining Characteristics of Groundwater Inflow to the Stream in an Urban Area Using Hydrogeochemical Tracers (222Rn and Major Dissolved Ions) and Microbial Community Analysis, J. Soil Groundwater Environ., 25(2), 16-23.
  •  
  • 39. Okuno, M., Shiihara, M., Torii, M., Nakamura, T., Kim, K.H., Domitsu, H., Moriwaki, H., Oda, M., 2010, AMS Radiocarbon Dating of Holocene Tephra Layers on Ulleung Island, South Korea, Radiocarbon, 52(3), 1465-1470.
  •  
  • 40. Pandey, P.K., Kass, P.H., Soupir, M.L., Biswas, S., Singh, V.P., 2014, Contamination of Water Resources by Pathogenic Bacteria, AMB Express, 4, 51.
  •  
  • 41. Patel, C.B., Shanker, R., Gupta, V.K., Upadhyay, R.S., 2016, Q-PCR Based Culture-Independent Enumeration and Detection of Enterobacter: An Emerging Environmental Human Pathogen in Riverine Systems and Potable Water, Front. Microbiol., 7.
  •  
  • 42. Peyraud, R., Schneider, K., Kiefer, P., Massou, S., Vorholt, J.A., Portais, J.-C., 2011, Genome-Scale Reconstruction and System Level Investigation of the Metabolic Network of Methylobacterium Extorquens AM1, BMC Syst. Biol., 5(1), 189.
  •  
  • 43. Piper, A.M., 1944, A Graphic Procedure in the Geochemical Interpretation of Water-Analyses, Eos, Trans. Am. Geophys. Union, 25(6), 914-928.
  •  
  • 44. Rock, C., Donnenberg, M.S., 2014. Human Pathogenic Enterobacteriaceae, Reference Module in Biomedical Sciences. Elsevier.
  •  
  • 45. Sang, S., Zhang, X., Dai, H., Hu, B.X., Ou, H., Sun, L., 2018, Diversity and Predictive Metabolic Pathways of the Prokaryotic Microbial Community Along a Groundwater Salinity Gradient of the Pearl River Delta, China, Sci. Rep., 8(1), 17317.
  •  
  • 46. Schaffter, N., Parriaux, A., 2002, Pathogenic-Bacterial Water Contamination in Mountainous Catchments, Water Res., 36(1), 131-139.
  •  
  • 47. Shaffer, M., Thurimella, K., Sterrett, J.D., Lozupone, C.A., 2023, SCNIC: Sparse Correlation Network Investigation for Compositional Data, Mol. Ecol. Resour., 23(1), 312-325.
  •  
  • 48. Sharan, A., Lal, A., Datta, B., 2021, A Review of Groundwater Sustainability Crisis in the Pacific Island Countries: Challenges and Solutions, J. Hydrol., 603, 127165.
  •  
  • 49. Song, Y.-S., Park, M.-E., Park, K.-H., 2006, Ages and Evolutions of the Volcanic Rocks from Ulleung-Do and Dok-Do, J. Pet. Soc.Korea, 15(2), 72-80.
  •  
  • 50. Stiff, H.A., Jr., 1951, The Interpretation of Chemical Water Analysis by Means of Patterns, J. Pet. Technol., 3(10), 15-13.
  •  
  • 51. Thomas, F., Hehemann, J.-H., Rebuffet, E., Czjzek, M., Michel, G., 2011, Environmental and Gut Bacteroidetes: The Food Connection, Front. Microbiol., 2, 93-93.
  •  
  • 52. Urish, D.W., 2012. Island Groundwater: A Limited and Vulnerable Resource, World Environ. Water Resour. Congr., 2010, pp. 795-805.
  •  
  • 53. Yan, S., Fuchs, B.M., Lenk, S., Harder, J., Wulf, J., Jiao, N.Z., Amann, R., 2009, Biogeography and Phylogeny of the Nor5/Om60 Clade of Gammaproteobacteria, Syst. Appl. Microbiol., 32(2), 124-139.
  •  
  • 54. Yun, H.S., Kim, Y.S., Yoon, H.S., 2019, Illumina Miseq Analysis and Comparison of Freshwater Microalgal Communities on Ulleungdo and Dokdo Islands, Pol. J. Microbiol., 68(4), 527-539.
  •  
  • 55. Yun, H.S., Lee, J.H., Choo, Y.S., Pak, J.H., Kim, H.S., Kim, Y.S., Yoon, H.S., 2022, Environmental Factors Associated with the Eukaryotic Microbial Diversity of Ulleungdo Volcanic Island in South Korea, Microbiol., 91(6), 801-817.
  •  
  • 56. Zeng, X., Hosono, T., Matsunaga, M., Ohta, H., Niidome, T., Shimada, J., Morimura, S., 2017, Spatial Distribution of Microbial Communities in the Alluvial Aquifer Along the Oyodo River, Miyakonojo Basin, Japan, J. Water Environ. Technol., 15(4), 152-162.
  •  
  • 57. Zhang, B., Wu, X., Tai, X., Sun, L., Wu, M., Zhang, W., Chen, X., Zhang, G., Chen, T., Liu, G., Dyson, P., 2019, Variation in Actinobacterial Community Composition and Potential Function in Different Soil Ecosystems Belonging to the Arid Heihe River Basin of Northwest China, Front. Microbiol., 10.
  •  
  • 58. Zhang, Q., Wu, J., Yang, F., Lei, Y., Zhang, Q., Cheng, X., 2016, Alterations in Soil Microbial Community Composition and Biomass Following Agricultural Land Use Change, Sci. Rep., 6(1), 36587.
  •  
  • 59. Zhou, N., Keffer, J.L., Polson, S.W., Chan, C.S., 2022, Unraveling Fe(II)-Oxidizing Mechanisms in a Facultative Fe(II) Oxidizer, Sideroxydans Lithotrophicus Strain ES-1, via Culturing, Transcriptomics, and Reverse Transcription-Quantitative PCR, Appl. Environ. Microbiol., 88(2), e01595-01521.
  •  

This Article

  • 2024; 29(3): 1-13

    Published on Jun 30, 2024

  • 10.7857/JSGE.2024.29.3.001
  • Received on May 20, 2024
  • Revised on Jun 2, 2024
  • Accepted on Jun 24, 2024

Correspondence to

  • Byeong Dae Lee
  • Groundwater Environment Research Center, Climate Change Response Division, Korea Institute of Geoscience and Mineral Resources, Daejeon, 34132, Republic of Korea

  • E-mail: donghun@kigam.re.kr