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      Lilium품종의 Chalcone Synthase와 Flavanone 3-Hydroxylase 효소학적 분석

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      https://www.riss.kr/link?id=A101358299

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      다국어 초록 (Multilingual Abstract)

      In this work, we analyzed the activity of control enzymes of flower color biosynthesis, chalcone synthase (CHS) and flavanone 3-hydroxylase (FHT) using biochemical and enzymological methods in Lilium longiflorum and 11 Lilium cultivars. The results ob...

      In this work, we analyzed the activity of control enzymes of flower color biosynthesis, chalcone synthase (CHS) and flavanone 3-hydroxylase (FHT) using biochemical and enzymological methods in Lilium longiflorum and 11 Lilium cultivars. The results obtained are as follows ; Naringenin (NAR) was synthesized in all Lilium cultivars tested by the catalytic activity of CHS which used malonyl-CoA and 4-coumaryol-CoA as substrates. Substrate-specific activity of CHS was observed because eridictiol (ERI), which uses caffeoyl-CoA as a substrate, was not detected in tested cultivars. In next step, dihydroflavone product was synthesized by FHT using flavanones as a substrate. FHT synthesized dihydrokaempferol (DHK) by using NAR as substrates. A remarkable activity of FHT was observed in other 11 cultivars.

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      참고문헌 (Reference)

      1 유순남, "백합의 Flavonol과 Anthocyanidin 분석" 한국화훼학회 15 (15): 270-275, 2007

      2 Forkmann G, "precursors and genetic control of anthocyan synthesis in Matthiola incana R" 137 : 159-163, 1977

      3 Tyrach A, "Untersuchungen zur Genetik von Blu tenpigmenten und zu quantitativen Merkmalen bei Gerbera" Dissertation am Lehrstuhl für Zierpflanzenbau der Technische Universität München-Weihenstephan 1995

      4 Lighty RW, "The lilies of Korea. The Lily Yearbook. 31" 31-39, 1969

      5 Mansuy D, "The great diversity of reactions catalyzed by cytochromes P450" 121 : 5-14, 1998

      6 Koes TM, "The chalcone synthase multigene family of Petunia hybrida: Sequence homology, chromosomal localization, and evolutionary aspects" 10 : 159-169, 1987

      7 Courtney-Gutterson N, "The biologist's palette: Genetic engineering of anthocyanin biosynthesis and flower color. In: Ellis EE, Kuroki GW. und Stafford HA. (ed.). Genetic engineering of plant secondary metabolism" Plenum Press 93-124, 1994

      8 Lighty RW, "The Lily of Korea. The Lily Yearbook. 33" 102-105, 1970

      9 Lukacǐ n R, "Site-directed mutagenesis of the active site serine 290 in flavanone 3β-hydroxylase from Petunia hybrida" 267 : 853-860, 2000a

      10 Royal Horticultural Society, "Royal Horticultural Society color chart" Roy. Hortic. Soc. London 1966

      1 유순남, "백합의 Flavonol과 Anthocyanidin 분석" 한국화훼학회 15 (15): 270-275, 2007

      2 Forkmann G, "precursors and genetic control of anthocyan synthesis in Matthiola incana R" 137 : 159-163, 1977

      3 Tyrach A, "Untersuchungen zur Genetik von Blu tenpigmenten und zu quantitativen Merkmalen bei Gerbera" Dissertation am Lehrstuhl für Zierpflanzenbau der Technische Universität München-Weihenstephan 1995

      4 Lighty RW, "The lilies of Korea. The Lily Yearbook. 31" 31-39, 1969

      5 Mansuy D, "The great diversity of reactions catalyzed by cytochromes P450" 121 : 5-14, 1998

      6 Koes TM, "The chalcone synthase multigene family of Petunia hybrida: Sequence homology, chromosomal localization, and evolutionary aspects" 10 : 159-169, 1987

      7 Courtney-Gutterson N, "The biologist's palette: Genetic engineering of anthocyanin biosynthesis and flower color. In: Ellis EE, Kuroki GW. und Stafford HA. (ed.). Genetic engineering of plant secondary metabolism" Plenum Press 93-124, 1994

      8 Lighty RW, "The Lily of Korea. The Lily Yearbook. 33" 102-105, 1970

      9 Lukacǐ n R, "Site-directed mutagenesis of the active site serine 290 in flavanone 3β-hydroxylase from Petunia hybrida" 267 : 853-860, 2000a

      10 Royal Horticultural Society, "Royal Horticultural Society color chart" Roy. Hortic. Soc. London 1966

      11 Lukacǐ n R, "Purification of recombinant flavanone 3β -hydroxylase from Petunia hybrida and assignment of the primary site of proteolytic degradation" 375 : 364-370, 2000b

      12 Britsch l, "Purification and characterization of flavone synthase Ⅰ, a 2-oxoglutarate-dependent desaturase" 276 : 348-354, 1990

      13 Britsch L, "Purification and characterization of (2S)-flavanone 3-hydroxylase from Petunia hybrida" 156 : 569-577, 1986

      14 Britsch L, "Molecular cloning, sequence analysis and in vitro expression of flavanone 3-hydroxylase from Petunia hybrida" 267 : 5380-5387, 1992

      15 Britsch L, "Molecular characterization of flavanone 3-hydroxylases. consensus sequence, comparison with related enzymes and the role of conserved residues" 217 : 745-754, 1993

      16 Forkmann G, "Metabolic engineering and applications of flavonoids" 12 : 155-160, 2001

      17 Turnbull JJ, "Mechanistic studies on there 2-oxoglutarate-dependent oxygenases of flavonoid biosynthesis" 1206-1216, 2004

      18 Epping B, "Isolation and sequence analysis of a chalcone synthase cDNA of Matthiola incana R. Br.(Brassicaceae)" 14 : 1061-1063, 1990

      19 Martens S, "Impact of biochemical prestudies on specific metabolic enginneering straegies of flavonoid biosyntesis in plant tissues" 14 : 227-235, 2003

      20 Lukacǐ n R, "Identification of strictly co nserved histidine and arginine residues as part of the active site in Petunia hybrida flavanone 3β-hydroxylase" 249 : 748-757, 1997

      21 Holton TA, "Genetics and biochemistry of anthocyanin biosynthesis" 7 : 1071-1083, 1995

      22 Choi GT, "Genetic modulation of flower color intensity by newly developed dominant-negative CHS. J. Plant. Biotechnol" 69-72, 2002

      23 Spribille R, "Genetic control of chalcone synthase activity in flowers of Antirrhinum majus" 21 : 2231-2234, 1982a

      24 Kuhn B, "Genetic con trol of chalcone-flavanone- isomerase activity in Callistephus chinensis" 138 : 199-203, 1978

      25 Froemel S, "Genetic and biochemical studies on the conversion of flavanones to dihydroflavonols in flowers of Petunia hybrida" 70 : 561-568, 1985

      26 Dixon RA, "Flavonoids and isoflavonoids: A gold mine for metabolic engineering" 4 : 394-400, 1999

      27 Martens S, "Flavonoidbiosynthese in Gerbera : Enzymologische Charakterisierung der Chalkonsynthase, der Flavanon 3-Hydroxylase und der Flavonsynthase II. Diplomarbeit am Lehrstuhl für Zierpflanzenbau; TUM Freising- Weihenstephan"

      28 Stafford HA, "Flavonoid evolution: an enzymic approach" 96 : 680-685, 1991

      29 Winkel-Shirley B, "Flavonoid biosynthesis: A colorful model for genetics, biochemistry, cell biology, and biotechnology" 126 : 485-493, 2001

      30 Pelt JL, "Flavanone 3-hydroxylase expression in Citrus paradisi and Petunia hybrida seedlings" 64 : 435-444, 2003

      31 Lighty, R.W, "Evolutionary tends in lilies. Royal Hort. Soc. The lily yearbook 31" 40-44, 1968

      32 Heller W, "Enzymatic reduction of dihydroflavonols to flavan-3,4- cisdiols with flower extracts from Matthiola incana and its role in anthocyanin biosynthesis" 165 : 284-287, 1985

      33 Stafford HA, "Compartmentation in natural product biosynthesis by multienzyme complexes. pp.118-138. In: Secondary plant products" Academic Press 1981

      34 Harzdina G, "Compartmentaion in aromatic me tabolism. In: Phenolic metabolism in plants" Plenum Press 1-24, 1992

      35 Tunen Van AJ, "Cloning of the two chalcone flavanone isomerase genes from Petunia hybrida:Coordinate,lightregulated,and differential expression of flavonoid genes.EMBO J.7:1257-1263" 7 : 1257-1263, 1988

      36 Lee HJ, "Cloning of cDNA coding for dihydroflavonol 4-reductase (DFR) and characterization of dfr expression in carnation petals" 45 : 49-54, 2004

      37 Byung Whan Min, "Cloning and Expression Study of Dihydroflavonol 4-Reductase from Summer Aster (Callistephus chinensis)" 한국원예학회 47 (47): 222-229, 2006

      38 Kim HJ, "Chartateristics of grwth and flowering of Lilium oriental Hybrid" 12 : 27-35, 2004

      39 Kim HJ, "Characteristics of growth and flowering in Introduced Lilium adiatic hybrid" 10 : 5-13, 2002

      40 Spribille R, "Chalcone synthesis and hydroxylation of flavonoids in 3'-position with enzyme preparations from flowers Dianthus caryophyllus L. (carnation)" 155 : 176-182, 1982b

      41 Seitz C, "Blütenfarben bei Osteospermum und Möglichkeiten der Züchterischen Beeinflussung. Diplomarbeit an Lehrstuhl für Zierpflanyenbau der TU München Freising/ Weihenstephan"

      42 Forkmann G, "Biosynthese of flavonoids. pp. 714-748. In: Comprehensive natural products chemistry Vol. 1 (U. Sankawa)" Elsevier 1999

      43 Forkmann G, "Anthocyanin biosynthesis in flowers of Matthiola incana. Flavanone 3- and flavonoid 3’-hydroxylases" 35c : 691-695, 1980

      44 Paiva NL, "An introduction to the biosynthesis of chemicals used in plant-microbe communication" 19 : 131-143, 2000

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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.6 0.6 0.49
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.45 0.41 0.952 0.07
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