• Title/Summary/Keyword: rice pigment

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Pigment Content in Meju Fermented by a Monascus Species with Different Materials (Monascus속 곰팡이를 이용한 메주의 재료에 따른 색소함량)

  • 김순동;김일두;박홍덕;박미자
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.30 no.6
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    • pp.1047-1052
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    • 2001
  • The pigment content in meju fermented by a Monascus species with different materials was studied. The relations between growth of M. pilosus and pigment production were positive and the correlation coefficient associated with this relationship was determined to be : r = 0.9879. Pigments produced by M. purpureus and M. pilosus were composed of 9 and 8 bands, respectively. One kind of them was yellowish, whereas the others were reddish. Total pigment levels in rice meju fermented by M. purpureus and M. pilosus were 335.25 and 1428.90$\mu\textrm{g}$/g, respectively. Pigment levels in the mejus fermented at 3$0^{\circ}C$ showed higher than those at 20 and 4$0^{\circ}C$. The order of pigment content in meju was polished rice > germinated brown rice > wheat > brown rice > waxy brown rice > germinated waxy brown rice. Pigment production by M. pilosus was higher than that of M. purpureus. Pigment content in rice meju prepared by adding 10% seed culture was highest, and pigment content of granulated rice was higher than that of powdered rice. Pigment production was not desirable in soybean meju fermented by seed culture, whereas the pigment levels in meju by adding 10% powdered rice and 10% powdered rice seed meju increased by 23.0 ~75.0 $\mu\textrm{g}$/g.

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Production of Pigment by Liquid Culture and Monacolin K in Red Mold Rice by Solid State Fermentation of Monascus ruber Strains (Monascus ruber의 액체배양을 통한 색소 생산 및 고체발효를 통한 홍국쌀의 monacolin K 생산 특성)

  • Park, Youn-Je
    • KSBB Journal
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    • v.28 no.6
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    • pp.400-407
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    • 2013
  • The growth characteristics and production of color pigments by Monascus strains were investigated during liquid culture, and production of monacolin K in red mold rice was carried out by solid state fermentation. Four different Monascus ruber strains were cultured in potato dextrose yeast extract broth (PDYB) media at $25^{\circ}C$ for 15 days. The high producing strain for red pigment was not corresponded to the strain for yellow pigment. Production of red pigment was high in the strain causing the fast pH change in culture broth. Production of monacolin K in red mold rice by solid state fermentation was influenced by a combination of wet cell weight and spore density in inoculum by liquid culture. Most strains showed the high production of monacolin K in red mold rice, when submerged fermentation was carried out for 5 days as inoculum for solid state fermentation. These results suggest that submerged fermentation period of inoculum have an effect on the production of monacolin K in red mold rice by solid state fermentation, and monacolin K in red mold rice could be increased by controlling the condition of submerged fermentation for inoculum.

Application of Rice Polishing By-products to Processed Rice Food (I) - Antioxidative Effect of Black Rice Bran Pigment Fraction on Rice Embryo Lipid Oxidation - (쌀 가공식품 제조용 소재로서의 도정 부산물 활용 방안 (I) - 흑미 미강 색소 분획의 쌀 배아 산패 억제 효과 -)

  • Cho, Min-Kyung;Kim, Sung-Hong;Kang, Mi-Young
    • Journal of the East Asian Society of Dietary Life
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    • v.18 no.3
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    • pp.361-367
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    • 2008
  • This study examined the physicochemical properties of rice embryo in order to investigate the antioxidative effect of black rice bran pigment fraction on rice embryo lipid oxidation. Color stability of rice bran pigment fraction and acid value of added rice embryo were determined at various conditions of pH, temperature, and storage time. Rice embryo contained more crude protein (22.1%) compared to the rice bran (9.4%). However, rice embryo had a higher lipid content than rice bran, causing lipid oxidation during storage. Pigment fraction were relatively stable in acidic pH of 3.0 stored at $4^{\circ}C$ for 9 days. Rice embryo showed increased acid value with increased storage time and temperature. Furthermore, rice embryo with pigment fraction resulted in lower acid value compared to the control group. Therefore, addition of black rice bran pigment fractions to rice embryo improved storage capacity.

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Anthocyanin and proanthocyanidin contents, antioxidant activity, and in situ degradability of black and red rice grains

  • Hosoda, Kenji;Sasahara, Hideki;Matsushita, Kei;Tamura, Yasuaki;Miyaji, Makoto;Matsuyama, Hiroki
    • Asian-Australasian Journal of Animal Sciences
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    • v.31 no.8
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    • pp.1213-1220
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    • 2018
  • Objective: An experiment was conducted to assess the antioxidant contents and activities of colored rice grains and to evaluate their nutritive characteristics in terms of chemical composition and in situ ruminal degradation. Methods: Ten cultivars of colored rice grains (Oryza sativa L.) collected from several areas of Japan were studied, and control rice without pigment, maize, barley, and wheat grains were used as control grains. Their chemical compositions, pigment, polyphenol contents, total antioxidant capacity (TAC), and degradation characteristics were determined. Results: The starch contents of the colored rice grains were in the range of 73.5% to 79.6%, similar to that of the control rice grain. The black and red rice grains contained anthocyanin (maximum: $5,045.6{\mu}g/g$) and proanthocyanidin (maximum: $3,060.6{\mu}g/g$) at high concentrations as their principal pigments, respectively. There were significantly (p<0.05) positive relationships among the pigment contents, polyphenol content, and TAC values in the colored and control rice grains, indicating that the increase in pigment contents also contributed to the increased polyphenol content and TAC values in the colored rice grains. The dry matter and starch degradation characteristics, as represented by c (fractional degradation rate of slowly degradable fraction) and by the effective degradability, of the colored rice grains and the control rice grain were ranked as follows among commonly used grains: wheat>barley${\geq}rice$>maize. The colored rice grains also included the most-digestible starch, since their potential degradable fraction and actual degradability at 48 h incubation were almost 100%. Conclusion: Colored rice grains have high potential to be used as antioxidant sources in addition to starch sources in ruminants.

Synthesis of Sphene - pink Pigment by Rice Husk Ash (왕겨재를 사용한 Sphene - pink 안료의 합성)

  • Joo, In-Don;Lee, Hyun-Soo;Lee, Byung-Ha
    • Journal of the Korean Ceramic Society
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    • v.47 no.3
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    • pp.237-243
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    • 2010
  • This research examines using Rice Husk Ash, $Cr_2O_3$ in producing the pink-red color. It studies the formation of cassiterite and malayaite crystallites, the primary factors in producing the pink-red color, in relation to the application of $Cr_2O_3$ to examine its coloring mechanism. In addition, the research intends to identify the optimum synthesizing temperature and maintaining time for crystallization of malayaite, a stable pink-red colorization factor in high temperature glaze during $Cr_2O_3$-$SnO_2$-CaO-$SiO_2$ family pigment synthesis. The optimum substituting contents is Rice Husk Ash : Quartz = 1 : 2, and the optimum temperature is suggested at $1300^{\circ}C$ for 2 h based on analysis results by XRD, FT-IR, Raman microscope, SEM and UV-vis.

Antioxidant and Antimutagenic Activity of Solvent-Fractionated Layers of Colored Rice Bran (유색미 품종별 유기용매 추출물의 항산화성 및 항변이원성 검정)

  • Kang, Mi-Young;Shin, Soo-Young;Nam, Seok-Hyun
    • Korean Journal of Food Science and Technology
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    • v.35 no.5
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    • pp.951-958
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    • 2003
  • Twenty-four cultivars of colored rice seeds were collected inside and outside Korea, and the antioxidant and antimutagenic activity was determined for the solvent-fractionated layers of their bran parts lipid soluble fraction, pigment containing fraction, and pigment component per se. As the serial organic solvent extraction proceeded, the overall tendency of antioxidant activities declined with increased chemical homogeneity of each fraction. This markedly showed the low antioxidativities of the pigment components from LK 1-3-6-12-1-1 and Gillimhukmi. Even all the colored rice cultivars, with considerable antimutagenic activity in 70% ethanolic extract, exhibited mutagenicity when measured with its pigment containing fraction (wx 124-163-45-7-1-1-1 and LKlB-2-1-1 being the strongest). The pigment content in each colored rice seeds decreased in the order of IR 17491-5-4-3-3>LK 1-3-6-12-1-1>LK 1D-2-12-1>RGS No.336, Elwee. In addition, a substantial difference in both chemical composition of the constituents and its amount could be found between the colored rice and cooking rice cultivars. This revealed that, compared to cooking rice, major components of organic solvent fractions from colored rice probably have long hydrocarbon chain moieties.

Studies on Production and Characteristics of Edible Red Color Pigment Produced by Mold(Monascus sp.) (홍곡곰팡이를 이용한 식용적색 색소의 제조 및 이의 성상에 관한 연구)

  • Kim, Chang-Sik;Rhee, Sook-Hee;Kim, Il
    • Korean Journal of Food Science and Technology
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    • v.9 no.4
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    • pp.277-283
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    • 1977
  • 1) Higher yield of red color was observed by the isolated strain (Monascus D-7) than the type cultures in steamed rice medium. 2) In a case of Monascus purbigerus IAM 8004, best yield of color was obtained at Lin's submerged culture medium containing 1% wheat bran, 2% starch and 3% corn meal instead of rice powder as carbon source. However, in a case of isolated strain (M. D-7), good result was shown at 1% rice bran and 2% starch as a source of carbon in Lin's medium. 3) Good yields were obtained from both strains in Nishikawa's medium which was added with 3% defatted soybean flour. 4) There were no significant differences in pigment extractability among solvents. Extracted pigment was stable in wide range of pH and heat, whereas relatively unstable in sunlight. 5) Toxicological study of extracted pigment determined $LD_{50}$ at 0.2539g/20g, when injected in mouse. When injected in to mouse in 25% ethanol solution: considering the toxicity of ethanol, the toxicity of pigment itself is believed to be none.

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Characteristics of Monascus Natural Pigments Produced by Monascus sp. MK2-2 (Monascus sp. MK2-2가 생산하는 홍국천연색소의 특성)

  • Jeon, Chun-Pyo;Kim, Chang-Suk;Lee, Jung-Bok;Shin, Ji-Won;Choi, Sung-Yeon;Choi, Chung-Sig;Lee, Oh-Seuk;Kwon, Gi-Seok
    • Journal of Life Science
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    • v.17 no.1 s.81
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    • pp.137-142
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    • 2007
  • For the production of natural pigments with microbe, the strains which produced monascus pigment were isolated, and then culture condition and extraction condition were investigated. These results are summarized as follows; The strain which ran produce monascus natural pigment was isolated from natural microbial sources and we made mutant of this strain with UV($235_{nm}$, 30 second) irradiation. The mutant was identified as Monascus sp. MK2-2. The optimal culture conditions were investigated optimal medium containing 0.3% rice powder, 0.2% yeast extract, 0.3% $NH_4H_2PO_4$ and $30^{\circ}C$ in a rotary shaker (120 rpm) for 5 days (initial pH 5.0), while the pigment production was determined at 24 hr intervals. The effective carbon sources were wheat flour > rice powder > fructose, and effective nitrogen sources were sodium nitrate > $KNO_3$ for production of the monascus natural pigment. The pigment capacity is good from 17 to 22 in C/N ratio. The production amount of monascus natural pigment was 0.38 g per 1 kg of rice. Also, extract of red yeast rice had anti-thrombosis activity like a degree of aspirin.

Diversity and Function of Pigments in Colored Rice (유색미 색소의 종류와 기능)

  • Choi, Hae-Chune;Oh, Sea-Kwan
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.41 no.spc1
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    • pp.1-9
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    • 1996
  • The edible natural pigments extracted from plant organs become steadly popular to consumer because of those physiological functions desirable for food preservation and human health in recent years. There are a number of colored rice genotypes from light brown to blackish purple via reddish brown and purple. Some researchers reported their results on extraction recipes and identification of chemical structure of the pigments from the colored rice. The pigments extracted from colored rices can be largely divided into two types of anthocyanin and tannin pigments. Anthocyanin pigments are mainly contained in purple or blackish purple rice while tannin pigments are mainly contained in brown or reddish brown rice. Some brownish purple rices showed two peaks of tannin and anthocyanin pigments simultaneously. Purple rices showed better extraction of pigments in $0.1\%$ HCl-contained $80\%$ methanol or $0.5\%$ malic-acid-contained $80\%$ ethanol, while red rices revealed better extraction of pigments in $0.01\%$ citric-acid-contained $80\%$ ethanol. The anthocyanin pigments are generally unstable to heat, light and acidity of solution. The pigments extracted from colored rice can be preserved stably under the dark and cool(<$5^{\circ}C$) condition and at pH $2.0\~4.0$. The anthocyanin pigments of purple rice are mainly composed by cyanidin-3-glucoside (chrysanthemin). The other pigment fractions in purple rice were identified to peonidin-3-gluco-side, malvidin-3-galactoside(uliginosin) and cyanidin-3-ramnoglucoside(keracyanin). The pericarp coloration of purple rices is controlled by three complimentary genes C (anthocyanin), A(activator) and $Pl^{w}$(purple leaf) genes, while the red rices are expressed by complimentary interaction between Rc(basic substance of pigment) and Rd(distribution of pigment) genes or C and $Pl^{w}$ genes. Recently, the antioxidation and antimutagenic activity in main component of anthocyanin pigments extracted from colored rice were identified. The natural pigments from colored rice can be useful for beverages, cakes, ice scream, cosmetic and so on.

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발효조를 이용한 Monascus anka의 적색소와 황색소의 생산

  • Kang, Seong-Gook;Rhim, Jong-Whan;Jung, Soon-Teck;Kim, Sun-Jae
    • Microbiology and Biotechnology Letters
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    • v.24 no.6
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    • pp.756-762
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    • 1996
  • In order to develop the method for mass production of natural food colorant from Monascus anka, optimum cultivation conditions for producing red and yellow pigments by cultiva- ting the mold in a jar fermenter and their color characteristics were investigated. The mold produced red and yellow pigments both intracellularly and extracellularly. These pigments showed unique light absorption characteristics with maximum absorption of 494, 380, 506, and 388 nm for extracellular red pigment (ERP), extracellular yellow pigment (EYP), intracellular red pigment (IRP), and intracellular yellow pigment (IYP), respectively. Optimum conditions for producing red pigments were found to be temperature 30$\circ$C, initial pH 6.0, rice powder 3-5%, peptone 0.05%, magnesium sulfate 0.25%, aeration rate 0.1 vvm. Optimum temperature for producing yellow pigments was around 35$\circ$C which is higher than that of producing red pigments. The initial pH and rice powder concentration for producing yellow pigments were the same as those of producing red pigments. The higher concentration of nitrogen source and inorganic salt, aeration rate, the more the yellow pigments were produced. The optimum agitation speed was 100 - 300 rpm for pigment production.

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