Acknowledgement
본 결과물은 환경부의 재원으로 한국환경산업기술원의 수생태계 건강성 확보 기술개발사업의 지원을 받아 연구되었습니다. (과제번호 2020003030001)
References
- Alvarez, S. D., Kruk, C., Escalera, G. M., Montes, M. A., Segura, A. M., and Piccini, C. (2020). Morphology captures toxicity in Microcystis aeruginosa complex: Evidence from a wide environmental gradient, Harmful Algae, 97, 101854.
- Choi, Y. A., Han, N. S., Lim, E. K., Kim, Y. M., Jeon, C. J., and Lee, B. H. (2013). Characteristics of cyanobacterial occurrence and concentration distribution of cyanotoxins in Hoeya reservoir, Journal of Korean Society of Environmental Engineers, 35(12), 943-952. [Korean Literature] https://doi.org/10.4491/KSEE.2013.35.12.943
- Cottingham, K. L., Ewing, H. A., Greer, M. L., Carey, C. C., and Weathers, K. C. (2015). Cyanobacteria as biological drivers of lake nitrogen and phosphorus cycling, Ecosphere, 6(1), 1-19.
- Environmental Protection Agency (EPA). (2009). National lakes assessment: A collaborative survey of the nation's lakes, EPA 841-R-09-001, Office of Water and Office of Research and Development, Washington, D.C., 61-83. https://www. epa.gov/sites/default/files/2013-11/documents/nla_newlowres_fullrpt.pdf
- Eriksson, J. E., Meriluoto, J. A., Kujari, H. P., and Skulberg, O. M. (1988). A comparison of toxins isolated from the cyanobacteria Oscillatoria agardhii and Microcystis aeruginosa, Comparative Biochemistry and Physiology Part C: Toxicology & Pharmacology, 189(2), 207-210.
- Heiskary, S., Lindon, M., and Anderson, J. (2014). Summary of microcystin concentrations in Minnesota lakes, Lake and Reservoir Management, 30(3), 268-272. https://doi.org/10.1080/10402381.2014.917347
- Ho, J. C., Michalak, A. M., and Pahlevan, N. (2019). Widespread global increase in intense lake phytoplankton blooms since the 1980s, Nature, 574(7780), 667-670. https://doi.org/10.1038/s41586-019-1648-7
- Hou, X., Feng, L., Dai, Y., Hu, C., Gibson, L., Tang, J., Lee, Z., Wang, Y., Cai, X., and Liu, J. (2022). Global mapping reveals increase in lacustrine algal blooms over the past decade, Nature Geoscience, 15(2), 130-134. https://doi.org/10.1038/s41561-021-00887-x
- Humbert, J. F. (2009). Chapter 27 - Toxins of Cyanobacteria, Handbook of toxicology of chemical warfare agents, Gupta, R. C. (ed), Academic Press, Cambridge, MA, 371-379.
- Imai, H., Chang, K. H., and Nakano, S. I. (2009). Growth responses of harmful algal species Microcystis (Cyanophyceae) under various environmental conditions, Interdisciplinary Studies on Environmental Chemistry-Environmental Research in Asia, Obayashi, Y., Isobe, T., Subramanian, A., Suzuki, S., and Tanabe, S. (eds.), Terrapub, Tokyo, Japan, 269-275.
- Jeong J. Y., Choi, Y. H., Na, K. H., Shin, J. H., Kim, J. S., Yoon, M. R., and Kim, T. H. (2017). Characteristics of phytoplankton and cyanobacteria in the key management reservoirs, The Report of Gyeonggi-do Institute of Health and Environment, 30, 173-180. [Korean Literature]
- Joung, S. H. and Park, H. K. (2010). Seasonal succession characteristic of phytoplankton community in lake Doam, Journal of Korean Society on Water Environment, 26, 673-680. [Korean Literature]
- Joung, S. H., Oh, H. M., Ko, S. R., and Ahn, C. Y. (2011). Correlations between environmental factors and toxic and non-toxic Microcystis dynamics during bloom in Daechung reservoir, Korea, Harmful Algae, 10(2), 188-193. https://doi.org/10.1016/j.hal.2010.09.005
- Kang, P. G., Lee, S. J., Byeon, M. S., Yoon, S. A., Kim, H. Y., Lee, H. K., and Hwang, S. J. (2014). Current status and perspectives in the akinete s tudy o f the blue-g reen a lg al genus Anabaena, Korean Journal of Ecology and Environment, 47(1), 1-12. [Korean Literature] https://doi.org/10.11614/KSL.2014.47.1.001
- Kim, J. G., Lee, S. H., Bang, H. H., and Hwang, H. O. (2009). Characteristics of algae occurrence in lake Paldang, Journal of Korean Society of Environmental Engineers, 31(4), 325-331. [Korean Literature]
- Lee, I., Kim, J., Ahn, J. M., and Yang, D. S. (2018). Simultaneous determination of seven cyanobacterial toxins in river water by liquid chromatography-tandem mass spectrometry, Journal of the Korean Society for Environmental Analysis, 21(2), 78-86. [Korean Literature]
- Lee, K. R., Jheong, W. H., Kim, J. H., and Kim, H. S. (2010). Effects of the temperature and light intensity on the growth and microcystin production of three species of Microcystis (M. aeruginosa, M. ichthyoblabe, M. viridis), Korean Journal of Limnology, 43(3), 400-408. [Korean Literature]
- Lee, K. R., Shin, Y. N., Lee, J. A., Lee, J. K., and Kim, H. S. (2012). Distribution of toxic and non-toxic Microcystis in Korean water supply, Korean Journal of Ecology and Environment, 49(4), 393-399. [Korean Literature]
- Li, M., Zhu, W., Dai, X., Xiao, M., Appliah-Sefah, G., and Nkrumah, P. N. (2014). Size-dependent growth of Microcystis colonies in a shallow, hypertrophic lake: Use of the RNA-to-total organic carbon ratio, Aquatic Ecology, 48, 207-217. https://doi.org/10.1007/s10452-014-9476-1
- Lindon, M. and Heiskary, S. (2009). Blue-green algal toxin (microcystin) levels in Minnesota lakes, Lake and Reservoir Management, 25(3), 240-252. https://doi.org/10.1080/07438140903032424
- Mathias, A. C., Jankowiak, J. G., Kramer, B. J., Goleski, J. A., Huang, I. S.., Zimba P. V., Bittencourt-Oliveira M. C., and Gobler, C. J. (2018). Succession and toxicity of Microcystis and Anabaena blooms are controlled by nutrient-dependent allelopathic interactions, Harmful Algae, 74, 67-77. https://doi.org/10.1016/j.hal.2018.03.002
- Ministry of Environment. (2023). Enforcement decree of the framework act of environmental policy, Attached form No.1, Presidential Decree No.33591, Enforcement Date 04. Jul, 2023.
- National Institute of Environmental Research. (2020). Operational manual for algae alert system, Goverment publication registaration No. 11-1480523-004075-01, ISBN 978-89-6558-509-1, 30, 55-59. [Korean literature]
- Park, J. A., Yang, B. R., Jang, M., Kim, J. H., Kim, S. B., Park, H. D., Park, H. M., Lee, S. H., and Choi, J. W. (2019). Oxidation and molecular properties of microcystin-LR, microcystin-RR and anatoxin-a using UV-light-emitting diodes at 255 nm in combination with H2O2, Chemical Engineering Journal, 366, 423-432.
- Ryu, H. S., An, S. M., Lim, C. K., Shin, R. Y., Park, J. G., and Lee, J. H. (2017). Analysis of potential toxigenicity and phylogeny using target genes in Aphanizomenon flos-aquae (Cyanophyceae) strains isolated from the Nakdong river, Korean Journal of Ecology and Environment, 50(1), 137-147. [Korean Literature] https://doi.org/10.11614/KSL.2017.50.1.137
- Ryu, H. S., Park, H. K., Lee, H. J., Shin, R. Y., and Cheon, S. U. (2016). Occurrence and succession pattern of cyanobacteria in the upper region of the Nakdong river: Factors influencing Aphanizomenon bloom, Journal of Korean Society on Water Environment, 32(1), 52-59. [Korean Literature] https://doi.org/10.15681/KSWE.2016.32.1.52
- Schindler, D. W., Carpenter, S. R., Chapra, S. C., Hecky, R. E., and Orihel, D. M. (2016). Reducing phosphorus to Curb lake eutrophication is a success, Environmental Science & Technology, 50(17), 8923-8929. https://doi.org/10.1021/acs.est.6b02204
- Singh, N. K., Parmar, A., Sonani, R. R., and Madamwar, D. (2012). Isolation, identification and characterization of novel thermotolerant Oscillatoria sp. N9DM: Change in pigmentation profile in response to temperature, Process Biochemistry, 47(12), 2472-2479.
- Svircev, Z., Lalic, D., Savic, G. B., Tokodi N., Backovic, D. D., Chen, L., Meriluoto, J., and Codd, G. A. (2019). Global geographical and historical overview of cyanotoxin distribution and cyanobacterial poisonings, Archives of Toxicology, 93(9), 2429-2481. https://doi.org/10.1007/s00204-019-02524-4
- Tak, S. Y., Kim, M. K., Lee, J. E., Lee, Y. M., and Zoh, K. D. (2018). Degradation mechanism of anatoxin-a in UV-C/H2O2 reaction, Chemical Engineering Journal, 334, 1016-1022. https://doi.org/10.1016/j.cej.2017.10.081
- Taranu, Z. E., Gregory-Eaves, I., Leavitt, P. R., Bunting, L., Buchaca, T., Catalan, J., Domaizon, I., Guilizzoni, P., Lami, A., McGowan, S., Moorhouse, H., Morabito, G., Pick, F. R., Stevenson, M. A., Thompson, P. L., and Vinebrooke, R. D. (2015). Acceleration of cyanobacterial dominance in north temperate-subarctic lakes during the Anthropocene, Ecology Letters, 18(4), 375-384. https://doi.org/10.1111/ele.12420
- The United States Geological Survey (USGS). (2016). Cyanobacterial (blue-green algal) blooms: Tastes, odors, and toxins. https://www.usgs.gov/centers/kansas-water-sciencecenter/science/cyanobacterial-blue-green-algal-blooms-tastes-odors-and (accessed 22 Jan. 2024)
- Valeria, A. M., Ricardo, E. J., and Stephan, P., and Alberto W. D. (2006). Degradation of Microcystin-RR by Sphingomonas sp. CBA4 isolated from San Roque reservoir (Cordoba-Argentina), Biodegradation, 17(5), 447-455. https://doi.org/10.1007/s10532-005-9015-9
- Wang, X., Sun, M., Xie, M., Liu, M., Luo, L., Li, P., and Kong, F. (2013). Differences in microcystin production and genotype composition among Microcystis colonies of different sizes in lake Taihu, Water Research, 47(15), 5659-5669. https://doi.org/10.1016/j.watres.2013.06.040
- Watanabe, M. F., Tsuji, K., Watanabe, Y., Harada, K. I., and Suzuki, M. (1992). Release of heptapeptide toxin (microcystin) during the decomposition process of Microcystis aeruginosa, Natural Toxins, 28(2), 48-53.
- Woo, C. Y., Yoon, S. R., Kim, S. G., and Lee, W. T. (2020). Occurrence of harmful blue-green algae at algae alert system and water quality forecast system sites in Daegu and Gyeongsangbuk-do between 2012 and 2019, Journal of Korean Society of Environmental Engineers, 42(12), 664-673. [Korean Literature] https://doi.org/10.4491/KSEE.2020.42.12.664
- World Health Organisation (WHO). (2003). Cyanobacterial toxins: Microcystin-LR in drinking-water, https://www.who.int/docs/default-source/wash-documents/wash-chemicals/cyanobacterial-toxins-background-document.pdf?sfvrsn=46de6339_4.