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      카드뮴 독성 평가를 위한 은행이끼의 엽록소형광 분석 및 환경지표 선발 = ORIGINAL ARTICLE : Chl a Fluorescence Characterization and Biomarker Selection from Ricciocarpos natans under Cadmium Stress

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      https://www.riss.kr/link?id=A100013909

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      다국어 초록 (Multilingual Abstract)

      The effects of cadmium ions (Cd2+) on the Chl a fluorescence of Ricciocarpos natans were investigated in order to determine whether Chl fluorescence can be used as a biomarker to estimate the physiological responses of plants to cadmium stress. In all...

      The effects of cadmium ions (Cd2+) on the Chl a fluorescence of Ricciocarpos natans were investigated in order to determine whether Chl fluorescence can be used as a biomarker to estimate the physiological responses of plants to cadmium stress. In all plants treated with Cd2+, the image of Fv/Fm, which represents the maximum photochemical efficiency of PSⅡ, changed as the Cd2+ concentration increased, when treated for 48 h or more. Changes of ΦPSⅡ and QP images were recognized even at 10 μM Cd2+. The Chl a O-J-I-P fluorescence transient was also affected even at 10 μM Cd2+. The fluorescence yield decreased considerably in steps J, I and P in plants treated with Cd2+, although a typical polyphasic rise was observed in non-treated plants. The Chl fluorescence parameters, Fm, Fv/Fo, Sm, SFIabs, PIabs and ETo/CS, decreased as the Cd2+ concentration increased, while the Mo and Kn parameters increased. Peroxidase activity decreased significantly and catalase activity increased as the Cd2+ concentration increased. Because of its sensitivity to Cd2+ Ricciocarpos natans is useful in experiments investigating the responses of plants to cadmium exposure. Several parameters (Fm, Fv/Fo, Sm, SFIabs, PIabs, ETo/CS, Mo and Kn) can be applied to determine quantitatively the physiological states of plants under cadmium stress.

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      참고문헌 (Reference)

      1 오순자, "카드뮴 스트레스에 대한 수생식물 5종의 엽록소형광 반응" 한국환경과학회 18 (18): 1361-1368, 2009

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

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

      4 Rao, M. V., "Ultraviolet-B and ozone-induced biochemical changes in antioxidant enzymes of Arabidopsis thaliana" 110 : 125-136, 1996

      5 Asada, K., "The water-water cycle in chloroplast : Scavenging of active oxygen an dissipation of excess photons" 50 : 601-639, 1999

      6 Krupa, Z., "The stage of leaf maturity implicates the response of the photosynthetic apparatus to cadmium toxicity" 138 : 149-156, 1998

      7 Foyer, C. H., "The role of ascorbate in plant, interactions with photosynthesis and regulatory significance, In Active oxygen/oxidative stress and plant metabolism" American Society of Plant Physiologists 131-144, 1991

      8 Stobart, A. K., "The effect of Cd2+ on the biosynthesis of chlorophyll in leaves of barley" 63 : 293-298, 1985

      9 Strasser, R. J., "The Fo and the O-J-I-P fluorescence rise in higher plants and algae, In Regulation of Chloroplast Biogenesis" Plenum Press 423-426, 1992

      10 Govindjee, "Sixty-three years since Kautsky : Chlorophyll a fluorescence, Aust. J" 22 : 131-160, 1995

      1 오순자, "카드뮴 스트레스에 대한 수생식물 5종의 엽록소형광 반응" 한국환경과학회 18 (18): 1361-1368, 2009

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

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

      4 Rao, M. V., "Ultraviolet-B and ozone-induced biochemical changes in antioxidant enzymes of Arabidopsis thaliana" 110 : 125-136, 1996

      5 Asada, K., "The water-water cycle in chloroplast : Scavenging of active oxygen an dissipation of excess photons" 50 : 601-639, 1999

      6 Krupa, Z., "The stage of leaf maturity implicates the response of the photosynthetic apparatus to cadmium toxicity" 138 : 149-156, 1998

      7 Foyer, C. H., "The role of ascorbate in plant, interactions with photosynthesis and regulatory significance, In Active oxygen/oxidative stress and plant metabolism" American Society of Plant Physiologists 131-144, 1991

      8 Stobart, A. K., "The effect of Cd2+ on the biosynthesis of chlorophyll in leaves of barley" 63 : 293-298, 1985

      9 Strasser, R. J., "The Fo and the O-J-I-P fluorescence rise in higher plants and algae, In Regulation of Chloroplast Biogenesis" Plenum Press 423-426, 1992

      10 Govindjee, "Sixty-three years since Kautsky : Chlorophyll a fluorescence, Aust. J" 22 : 131-160, 1995

      11 Chollet, R., "Screening inhibitors (antimetabolites) of the biosynthesis or function of amino acids or vitamins with Lemna assay, In Target assay of modern herbicides and related phytotoxicity compounds" UK 143-149, 1993

      12 Kahle, H., "Response of roots of trees to heavy metals" 33 (33): 99-119, 1993

      13 Srivastava, A., "Regulation of antenna structure and electron transport in PSⅡ of Pisum sativum under elevated temperature probed by the fast polyphasic chlorophyll a fluorescence transient : OKJIP" 1320 : 95-106, 1997

      14 Nriagu, J. O., "Quantitative assessment of worldwide contamination of air, water and soils by trace metals" 333 : 134-139, 1988

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

      16 Chugh, L. K., "Photosynthetic activities of Pisum sativum seedlings grown in presence of cadmium" 37 : 297-303, 1999

      17 Inze, D., "Oxidative stress in plants" 6 : 153-158, 1995

      18 Sigfridsson, K. G. V., "Molecular interference of Cd2+ with photosystem Ⅱ" 1659 : 19-31, 2004

      19 Strasser, B. J., "Measuring fast fluorescence transients to address environmental questions: The JIP test, In Photosynthesis: From Light to Biosphere" Kluwer Academic 977-980, 1995

      20 Baryla, A., "Leaf chlorosis in oilseed repe plants(Brassica napus)grown on cadmium polluted soil : causes and consequences for photosynthesis and growth" 212 : 696-709, 2001

      21 Padmaja, K., "Inhibition of chlorophyll synthesis in Phaseolus vulgaris L. seedling by cadmium acetate" 24 : 399-404, 1990

      22 Kelly, J. M., "Heavy metal accumulation and growth of seedlings of five forest species as influenced by soil cadmium level" 8 : 361-364, 1979

      23 Abu-Muriefah, S. S., "Growth parameters and elemental status of cucumber(Cucumis sativus)seedlings in response to cadmium accumulation" 10 : 261-266, 2008

      24 Zheng, G., "Effects of cadmium on growth and antioxidant responses in Glycyrrhiza uralensis seedlings" 56 (56): 508-515, 2010

      25 Ekmekci, Y., "Effects of cadmium on antioxidant enzyme and photosynthetic activities in leaves of two maize cultivars" 165 : 600-611, 2008

      26 Gzyl, J., "Differential response of antioxidant enzymes to cadmium stress in tolerant and sensitive cell line of cucumber(Cucumis sativus L. )" 56 (56): 723-727, 2009

      27 Laemmli, U. K., "Cleavage of structural proteins during the assembly of the head of bacteriophage T4" 277 : 680-685, 1970

      28 Nedbal, L., "Chlorophyll fluorescence imaging of leaves and fruits, In Chlorophyll a fluorescence: a signature of photosynthesis" Springer 389-407, 2004

      29 Stirbet, A., "Chlorophyll a fluorescence induction in higher plants : Modelling and numerical simulation" 193 : 131-151, 1998

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

      31 Prasad, M. N. V., "Cadmium toxicity and tolerance in vascular plants" 35 (35): 525-545, 1995

      32 Mahmood, S., "Biochemical responses of Pisum sativum L. under cadmium and mercury regimes" 29 (29): 379-382, 2007

      33 Alscher, R. G., "Antioxidants in higher plants" CRC Press 1-174, 1993

      34 Woodbury, W., "An improved procedure using ferricyanide for detecting catalase isoenzyme" 44 : 301-305, 1971

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      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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