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      KCI등재 SCIE SCOPUS

      A bHLH Protein Partially Controls Proanthocyanidin and Phytomelanin Pigmentation in the Seed Coats of Morning Glory Ipomoea tricolor

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      https://www.riss.kr/link?id=A104992731

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      다국어 초록 (Multilingual Abstract)

      In the morning glory Ipomoea tricolor, the ivory-seed (IVS) protein, which bears a basic helix-loop-helix (bHLH) domain homologous to Arabidopsis transparent testa 8 (TT8) and petunia anthocyanin 1 (AN1) that activate various epidermal traits, was rep...

      In the morning glory Ipomoea tricolor, the ivory-seed (IVS) protein, which bears a basic helix-loop-helix (bHLH) domain homologous to Arabidopsis transparent testa 8 (TT8) and petunia anthocyanin 1 (AN1) that activate various epidermal traits, was reported to regulate anthocyanin pigmentation in flowers and the dark-brown pigmentation in seeds. In this study, additional roles of the Ipomoea tricolor IVS (ItIVS) gene were elucidated and seed pigments of I. tricolor were also analyzed. Microscopic observations showed that trichomes on seed surface were reduced in seeds of the ivs mutant Blue Star (BS), closely resembling ivs mutant seeds of I. purpurea. Different from petunia AN1, the ItIVS gene appears not to be related to expression of the I. tricolor Na+/H+ exchanger (ItNHX1) gene that increases petal pH during flower opening, because the expression profile of ItNHX1 in BS was virtually indistinguishable from that of the wild type Heavenly Blue (HB). The dark-brown pigments of HB were mainly composed of proanthocyanidins and phytomelanins. As phytomelanin content in BS seeds was about 22% of wild type level, and vanillin and ρ-dimethylaminocinnamaldehyde (DMACA) treatments for its immature seeds also showed weak positive reactions, it seems that the ItIVS gene partially activates the accumulation of both pigments. Some biosynthetic steps in anthocyanin and proanthocyanidin biosynthesis are thought to be common in Arabidopsis. However, the chalcone synthase D (CHS-D) and the dihydroflavonol 4-reductase B (DFR-B) genes in Ipomoea, which are essential for anthocyanin biosynthesis, were not transcribed in seed coats of HB, and a dfr-b mutant Pearly Gates (PG) still produces proanthocyanidins suggesting that ItIVS may activate different sets of structural genes for anthocyanin biosynthesis in flowers and proanthocyanidin production in seeds. Our results suggest that proanthocyanidin biosynthesis in morning glory is not accomplished by a unique system like it is in Arabidopsis, and more complicated processes are involved.

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      참고문헌 (Reference)

      1 Feinbaum, R.L., "Transcriptional regulation of the Arabidopsis thaliana chalcone synthase gene" 8 : 1985-1992, 1988

      2 Kondo, T., "Structure determination of Heavenly blue anthocyanin, a complex monomeric anthocyanin from the morning glory Ipomoea tricolor, by means of the negative NOE method" 28 : 2273-2276, 1987

      3 Choi, J. D., "Spontaneous mutations caused by a Helitron transposon, Hel-It1, in morning glory, Ipomoea tricolor" 49 : 924-934, 2007

      4 Harki, E., "Purification, characterisation and analysis of melanin extracted from Tuber melanosporum Vitt" 58 : 69-73, 1997

      5 Nicolaus, R., "Progress in the chemistry of natural black pigments" 32 : 83-97, 1965

      6 Dixon, R. A., "Proanthocyanidins - A final frontier in flavonoid research?" 165 : 9-28, 2005

      7 Koornneef, M., "Mutations affecting the testa color in Arabidopsis" 27 : 1-4, 1990

      8 Ramsay, N.A., "MYB-bHLH-WD40 protein complex and the evolution of cellular diversity" 10 : 63-70, 2005

      9 Morita, Y., "Isolation of cDNAs for R2R3-MYB, bHLH and WDR transcriptional regulators and identification of c and ca mutations conferring white flowers in the Japanese morning glory" 47 : 457-470, 2006

      10 Hoshino, A., "Identification of r mutations conferring white flowers in the Japanese morning glory (Ipomoea nil)" 122 : 215-222, 2009

      1 Feinbaum, R.L., "Transcriptional regulation of the Arabidopsis thaliana chalcone synthase gene" 8 : 1985-1992, 1988

      2 Kondo, T., "Structure determination of Heavenly blue anthocyanin, a complex monomeric anthocyanin from the morning glory Ipomoea tricolor, by means of the negative NOE method" 28 : 2273-2276, 1987

      3 Choi, J. D., "Spontaneous mutations caused by a Helitron transposon, Hel-It1, in morning glory, Ipomoea tricolor" 49 : 924-934, 2007

      4 Harki, E., "Purification, characterisation and analysis of melanin extracted from Tuber melanosporum Vitt" 58 : 69-73, 1997

      5 Nicolaus, R., "Progress in the chemistry of natural black pigments" 32 : 83-97, 1965

      6 Dixon, R. A., "Proanthocyanidins - A final frontier in flavonoid research?" 165 : 9-28, 2005

      7 Koornneef, M., "Mutations affecting the testa color in Arabidopsis" 27 : 1-4, 1990

      8 Ramsay, N.A., "MYB-bHLH-WD40 protein complex and the evolution of cellular diversity" 10 : 63-70, 2005

      9 Morita, Y., "Isolation of cDNAs for R2R3-MYB, bHLH and WDR transcriptional regulators and identification of c and ca mutations conferring white flowers in the Japanese morning glory" 47 : 457-470, 2006

      10 Hoshino, A., "Identification of r mutations conferring white flowers in the Japanese morning glory (Ipomoea nil)" 122 : 215-222, 2009

      11 Inagaki, Y., "Genomic organization of the genes encoding dihydroflavonol 4-reductase for flower pigmentation in the Japanese and common morning glories" 226 : 181-188, 1999

      12 박경일, "Genetics and epigenetics in flower pigmentation associated with transposable elements in morning glories" JAPAN SCIENTIFIC SOC PRESS 38 : 141-159, 2004

      13 Haughn, G., "Genetic analysis of seed coat development in Arabidopsis" 10 : 472-477, 2005

      14 Hoshino, A., "Gene duplication and mobile genetic elements in the morning glories" 265 : 1-10, 2001

      15 Koes, R., "Flavonoids: A colorful model for the regulation and evolution of biochemical pathways" 10 : 236-242, 2005

      16 Chopra, S., "Flavonoid pigments as tools in molecular genetics, In The science of flavonoids" Springer 147-173, 2006

      17 Shirley, B. W., "Effects of ionizing radiation on a plant genome: Analysis of two Arabidopsis transparent testa mutations" 4 : 333-347, 1992

      18 Downie, A. B., "Communication between the maternal testa and the embryo and/or endosperm affect testa attributes in tomato" 133 : 145-160, 2003

      19 Fukada-Tanaka, S., "Colour-enhancing protein in blue petals" 407 : 581-, 2000

      20 Johzuka-Hisatomi, Y., "Characterization of the chalcone synthase genes expressed in flowers of the common and Japanese morning glories" 74 : 141-147, 1999

      21 박경일, "An intragenic tandem duplication in a transcriptional regulatory gene for anthocyanin biosynthesis confers pale-colored flowers and seeds with fine spots in Ipomoea tricolor" BLACKWELL PUBLISHING LTD 38 (38): 840-849, 200406

      22 Spelt, C., "ANTHOCYANIN1 of petunia controls pigment synthesis, vacuolar pH, and seed coat development by genetically distinct mechanisms" 14 : 2121-2135, 2002

      23 박경일, "A bHLH regulatory gene in the common morning glory, Ipomoea purpurea, controls anthocyanin biosynthesis in flowers, proanthocyanidin and phytomelanin pigmentation in seeds, and seed trichome formation" BLACKWELL PUBLISHING 49 (49): 641-654, 200702

      24 Park, K.I., "A WD40-repeat protein controls proanthocyanidin and phytomelanin pigmentation in the seed coats of the Japanese morning glory" 169 : 523-528, 2012

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      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
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      2006-04-07 학술지명변경 한글명 : -> Horticulture, Environment, and Biotechnology KCI등재
      2006-02-28 학술지명변경 한글명 : 한국원예학회지 ->
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      2001-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
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