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      엽록소형광분석을 이용한 담수산 클로렐라(Chlorella vulgaris)에 미치는 중금속의 영향 평가 = ORIGINAL ARTICLE : Assessment of Heavy Metal Effects on the Freshwater Microalga, Chlorella vulgaris, by Chlorophyll Fluorescence Analysis

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      https://www.riss.kr/link?id=A101695936

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      다국어 초록 (Multilingual Abstract)

      The response of the freshwater microalga, Chlorella vulgaris, to heavy metal stress was examined based on chlorophyll fluorescence analysis to assess the toxic effects of heavy metals in freshwater ecosystems. When toxic effects were analyzed using re...

      The response of the freshwater microalga, Chlorella vulgaris, to heavy metal stress was examined based on chlorophyll fluorescence analysis to assess the toxic effects of heavy metals in freshwater ecosystems. When toxic effects were analyzed using regular chlorophyll fluorescence analysis, photosystem II activity(Fv/Fm) decreased significantly when exposed to Cu2+ and Hg2+ for 12 h, and decreased in the order of Hg2+ > Cu2+ > Cd2+ > Ni2+ when exposed for 24h. The effective photochemical quantum yield(Φ′PSII), chlorophyll fluorescence decrease ratio(RFd), minimal fluorescence yield(Fo), and non-photochemical quenching(NPQ), but not photochemical quenching(qP), responded sensitively to Hg2+, Cu2+, and Cd2+. These results suggest that Fv/Fm, as well as Φ′PSII, RFd, Fo, and NPQ could be used to assess the effects of heavy metal ions in freshwater ecosystems. However, because many types of heavy metal ions and toxic compounds co-occur under natural conditions, it is difficult to assess heavy metal toxicity in freshwater ecosystems. When Chlorella was exposed to heavy metal ions for 12 or 24h, Fv/Fm and maximal fluorescence yield(Fm) changed in response to Hg2+ and Cu2+ based on image analysis. However, assessing quantitatively the toxic effects of several heavy metal ions is challenging.

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      참고문헌 (Reference)

      1 황운기, "중금속(Cd, Cu, Zn)이 해산규조류(Skeletonema costatum)의 개체군 성장률에 미치는 독성영향" 한국환경생물학회 32 (32): 243-249, 2014

      2 안윤주, "수생태계 독성평가에 적용 가능한 국내 시험종 선정" 한국하천호수학회 40 (40): 1-13, 2007

      3 오순자, "담수산 클로렐라(Chlorella vulgaris)의 수은 스트레스에 대한 엽록소형광 반응" 한국환경과학회 22 (22): 705-715, 2013

      4 Horton, P., "the photochemistry of carotenoids" Kluwer 271-291, 1999

      5 Maksymiec, W., "Variation in oxidative stress and photochemical activity in Arabidopsis thaliana leaves subjected to cadmium and excess copper in the presence or absence of jasmonate and ascorbate" 66 : 421-427, 2007

      6 Blinova, I., "Use of freshwater algae and duckweeds for phytotoxicity testing" 19 : 425-428, 2004

      7 Mallick, N., "Use of chlorophyll fluorescence in metal-stress research: a case study with the green microalga Scenedesmus" 55 : 64-69, 2003

      8 Aruoja, V., "Toxicity of nanoparticles of CuO, ZnO and TiO2 to microalgae Pseudokirchneriella subcapitata" 407 : 1461-1468, 2009

      9 Genty, B., "The relationship between the quantum yield of photo -synthetic electron transport and quenching of chlorophyll fluorescence" 99 : 87-92, 1989

      10 Balaknina, T., "The effect of cadmium on CO2exchange, variable fluorescence of chlorophyll and the level of antioxidant enzymes in pea leaves" 52 : 15-20, 2005

      1 황운기, "중금속(Cd, Cu, Zn)이 해산규조류(Skeletonema costatum)의 개체군 성장률에 미치는 독성영향" 한국환경생물학회 32 (32): 243-249, 2014

      2 안윤주, "수생태계 독성평가에 적용 가능한 국내 시험종 선정" 한국하천호수학회 40 (40): 1-13, 2007

      3 오순자, "담수산 클로렐라(Chlorella vulgaris)의 수은 스트레스에 대한 엽록소형광 반응" 한국환경과학회 22 (22): 705-715, 2013

      4 Horton, P., "the photochemistry of carotenoids" Kluwer 271-291, 1999

      5 Maksymiec, W., "Variation in oxidative stress and photochemical activity in Arabidopsis thaliana leaves subjected to cadmium and excess copper in the presence or absence of jasmonate and ascorbate" 66 : 421-427, 2007

      6 Blinova, I., "Use of freshwater algae and duckweeds for phytotoxicity testing" 19 : 425-428, 2004

      7 Mallick, N., "Use of chlorophyll fluorescence in metal-stress research: a case study with the green microalga Scenedesmus" 55 : 64-69, 2003

      8 Aruoja, V., "Toxicity of nanoparticles of CuO, ZnO and TiO2 to microalgae Pseudokirchneriella subcapitata" 407 : 1461-1468, 2009

      9 Genty, B., "The relationship between the quantum yield of photo -synthetic electron transport and quenching of chlorophyll fluorescence" 99 : 87-92, 1989

      10 Balaknina, T., "The effect of cadmium on CO2exchange, variable fluorescence of chlorophyll and the level of antioxidant enzymes in pea leaves" 52 : 15-20, 2005

      11 Shrotri, C., "Studies on photosynthetic electron transport, photophosphorylation and CO2 fixation in Zn2+ deficient leaf cells of Zea mays" 3 : 945-954, 1981

      12 Bilger, W., "Role of the xanthophyll cycle in photoprotection elucidated by measurements of light-induced absorbance changes, fluorescence and photosynthesis in leaves of Hedera canariensis" 25 : 173-185, 1990

      13 Ricart, M., "Primary and complex stressors in polluted Mediterranean rivers: pesticide effects on biological communities" 383 : 52-61, 2010

      14 Nedbal, L., "Posthavest imaging of chlorophyll fluorescence from lemons can be used to predict fruit quality" 38 : 571-579, 2000

      15 Strasser, B. J., "Photosynthesis: From Light to Biosphere" Kluwer Academic 977-980, 1995

      16 Bolhàr-Nordenkampf, H. R., "Photosynthesis and Production in a Changing Envi -ronment" Chapman and Hall 193-206, 1993

      17 Serôdio, J., "Nondes -tructive tracing of migratory rhythms of intertidal benthic microalgae using in vivo chlorophyll a fluorescence" 33 : 542-553, 1997

      18 Gilmore, A. M., "Mechanistic aspects of xanthophyll cycle dependent photoprotection in higher plant chloroplasts and leaves" 99 : 197-209, 1997

      19 Clijsters, H., "Inhibition of photosynthesis by heavy metals" 7 : 31-40, 1985

      20 Travieso, L., "Heavy metal removal by microalgae" 62 : 144-151, 1999

      21 Küpper, H., "Environmental relevance of heavy metal substituted chlorophylls using the example of water plants" 47 : 259-266, 1996

      22 Aidid, S. B., "Effects of lead, cadmium and zinc on the electric membrane potential at the xylem/symplast interface and cell elongation of Impatiens balsamina" 32 : 439-448, 1992

      23 Huang, L., "Effects of additional Mg2+ on the growth, lipid production, and fatty acid composition of Monoraphidium sp. FXY-10 under different culture conditions" 64 : 1247-1256, 2014

      24 Ulloa, G., "Effect of Mg, Si, and Sr on growth and antioxidant activity of the marine microalga Tetraselmis suecica" 24 : 1229-1236, 2012

      25 Plekhanov, S. E., "Early toxic effects of zinc, cobalt and cadmium on photosynthetic activity of the green alga Chlorella pyrenoidosa Chick S-39" 30 : 506-511, 2003

      26 Thompson, A. S., "Culture collection of algae and protozoa catalogue of strains" CCAP 164-, 1988

      27 Schreiber, U., "Continuous recording of photochemical and nonphotochemical chlorophyll fluorescence quenching with a new type of modulation fluorometer" 10 : 51-62, 1986

      28 Lichtenthaler, H. K., "Chlorophyll fluorescence imaging of photosynthetic activity with the flash-lamp fluore -scence imaging system" 43 : 355-369, 2005

      29 Wan, G., "Calcium invigorates the cadmium-stressed Brassica napus L. plant by strengthening their photosynthetic system" 18 : 1478-1486, 2011

      30 Jarvis, S. C., "Cadmium uptake from solution by plants and its transport from roots to shoots" 44 : 179-191, 1976

      31 Chaoui, A., "Cadmium and zinc induction of lipid peroxidation and effects on antioxidant enzyme activities in bean (Phaseolus vulgaris L.)" 127 : 139-147, 1997

      32 Rysgaard, S., "Biomass, production and horizontal patchiness of sea ice algae in a high-Arctic fjord (Young Sound, NE Greenland)" 223 : 15-26, 2001

      33 US Environmental Protection Agency, "Algal toxicity tiers I and II. Series 850 Ecological effects test guidelines, Washington DC"

      34 Organisation for Economic Cooperation and Development, "Algal growth inhibition test. OECD guidelines for testing of chemicals 201, Paris, France"

      35 Lu, C. M., "Acute toxicity of excess mercury on the photosynthetic performance of cyanobacterium, S. platensis - assess -ment by chlorophyll fluorescence analysis" 41 : 191-196, 2000

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2027 평가예정 재인증평가 신청대상 (재인증)
      2021-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2018-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2015-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2013-02-19 학술지명변경 외국어명 : JOURNAL OF THE ENVIRONMENTAL SCIENCES -> JOURNAL OF ENVIRONMENTAL SCIENCE INTERNATIONAL KCI등재
      2011-05-16 학술지명변경 외국어명 : 미등록 -> JOURNAL OF THE ENVIRONMENTAL SCIENCES KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2007-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2005-03-22 학술지명변경 외국어명 : 미등록 -> journal of the environmental sciences KCI등재
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.37 0.37 0.38
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.36 0.35 0.525 0.1
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