• Title/Summary/Keyword: Total sugars

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The Components of the Sap from Birches, Bamboos and Darae (자작나무류, 대나무류 및 다래나무 수액의 성분조성)

  • 성낙주;정미자;이수정;신정혜;조종수
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.24 no.5
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    • pp.727-733
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    • 1995
  • This stduy was attempted to establish the basic data for evaluating chemical components in the sap from birches(Betula platyphylla Sukatschev, Betula costata Trautv, Betula davurica Pallas), bamboos(Phyllostachys pubescens, Phyllostachys bambusoides, Phyllostachys nigra), Darae(Actinidia arguta). Calcium and potassium in five kinds of mineral detected in the sap were dominant mineral, magnesium, sodium and iron in order and calcium, potassium and magnesium are abundant in the sap from bamboo more than the other sample and the contents were 242.0~422.1mg/L, 793.8~ 2504.1mg/L and 72.6~165.9mg/L, respectively. Free sugars of the sap determined were glucose, fructose and sucrose, but maltose was not detected. The contents of glucose and fructose of the sap from Betula platyphylla Sukatschev(#2) were the highest and 42.1g/L and 36.9g/L, respectively. The detectabel nucleotides and their related compounds were CMP, UMP, GMP, IMP, AMP and hypoxanthine. The total contents of composition amino acids detected from eighteen kinds of the sap were in the range of 2.4~30.4mg%. The major amino acids were taurine, glycine, lysine, alanine and threonine in the sap from birch(#1, #2), glutamic acid and lysine in the sap from Betula costata Trauty(#3) and Betula davurica Pallas(#4), lysine, valine, alanine, serine, tyrosine and glutamic acid in the sap from bamboos, and glutamic acid, leucine, alanine in the sap from Darae.

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Chemical Components of Propolis and Its Ethanolic Extracts (프로폴리스 및 알콜 추출물의 화학성분)

  • 정창호;배영일;이호재;심기환
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.32 no.4
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    • pp.501-505
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    • 2003
  • In order to use as a new functional food material, chemical components of propolis and its extracts were surveyed. The contents of crude fat, nitrogen free extract, crude protein, ash and crude fiber in propolis were 86.41%, 7.32%, 2.71%, 1.05% and 0.20%, respectively. The mineral contents were in the order of Na (120.40 mg%), Ca (115.40 mg%), K (105.87 mg%) and Ca were higher in water extract than alcohol extract. Free sugars were composed of sucrose 152 mg%, glucose 114 mg% and fructose 6 mg%. The major amino acids of propolis were lysine 395.29 mg%, cystine 267.66 mg% and glutamic acid 248.14 mg%, respectively. Eight fatty acids in propolis were identified and the major fatty acids were oleic acid (51.89%), myristic acid (20.86%) and palmitic acid (20.28%). Myricetin, quercetin, apigenin and kaempferol were shown as major flavonols and total flavonol contents were higher in 50% ethanol extract than any other extracts. Major Polyphenol compounds in four kinds of extracts were gallic acid, chlorogenic acid, catechin, epigallocatechin gallate, epicatechin and epicatechin gallate.

Establishment of Quality Control Standardization for Pomegranate Vinegar (석류식초의 품질 관리 규격 확립)

  • Yae, Myeong-Jai;Lee, Gyeong-Hweon;Nam, Ki-Hyeok;Jang, Se-Young;Woo, Seung-Mi;Jeong, Yong-Jin
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.36 no.11
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    • pp.1425-1430
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    • 2007
  • This study investigated alcohol and acetic acid fermentation conditions for the quality control of pomegranate vinegar In the alcohol fermentation process, alcohol content was the highest at a pomegranate juice concentration of $16^{\circ}Brix$, but suitable to fruit vinegar standards at a concentration of $12^{\circ}Brix$. In the concentrated pomegranate juice alcohol fermentation free sugars, fructose and glucose were detected at the beginning of fermentation; at day 4 of fermentation only glucose was detected and decreased as time passed. Organic acids were also detected, including oxalic, lactic, acetic, and citric acid, and they did not change greatly during the alcohol fermentation process. In the acetic acid fermentation process, total acidity increased from 1.56% to 5.54%, where acetic acid increased; however, oxalic, lactic, and citric acids changed only slightly. In conclusion, pomegranate vinegar can undergo alcohol and acetic acid fermentation processes using concentrated pomegranate juice of $12^{\circ}Brix$.

Effects of Sugars Addition in Alcohol Fermentation of Oriental Melon (첨가 당의 종류가 참외의 알코올발효에 미치는 영향)

  • Jo, Yong-Jun;Jang, Se-Young;Kim, Ok-Mi;Park, Chan-Woo;Jeong, Yong-Jin
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.39 no.9
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    • pp.1359-1365
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    • 2010
  • This study investigated effects of types of added sugar on alcohol fermentation of oriental melon. According to the results, pH was not significantly different according to types of added sugar and fermentation process. Total acidity increased with fermentation process in all groups by recording around 1.4% at the ninth day of fermentation. For sugar content, its initial level was $22^{\circ}Brix$, and alcohol fermented oriental melon fluids added by sucrose, fructose and glucose recorded similar levels or $6.6{\sim}6.8^{\circ}Brix$ while the fluids added by honey and fructo-oligosaccharide showed a slightly higher level or $8.1^{\circ}Brix$ at the ninth day of fermentation. Although free sugar content was different in the early phase of fermentation according to types of added sugar such as sucrose, fructose and glucose, it reduced with fermentation process to nearly non-detection at the ninth day of fermentation. As organic acids, lactic acid and acetic acid were observed in all phases of fermentation and their contents became higher gradually with fermentation process. Alcohol content showed the highest level in alcohol fermented oriental melon fluid added by sucrose by recording 12.80% and was relatively low in the fluids added by fructose and oligosaccharide. For alcohol, acetaldehyde, n-propanol and iso- amylalcohol contents were not significantly different according to types of added sugar and methanol content was the lowest in the fluid added by fructose by recording 84.99 ppm.

Quality assessment of Aster scaber cultured at different conditions for processed food production (재배환경에 따른 가공식품 소재로서 참취의 품질 비교)

  • Oh, Il-Nam;Kim, Jung-Eun;Kwak, Ji-Yoon;Jo, Hye-Jin;Yoo, Min-Jee;Jung, Da-Han;Kim, Yeon-Mi;Park, Kyu-Been;Nguyen, Phu-Cuong;Park, Jong-Tae
    • Korean Journal of Food Science and Technology
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    • v.50 no.4
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    • pp.371-376
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    • 2018
  • Consumption of wild edible greens (WEG) has risen in Korea recently, and processing of WEG at greenhouses is increasing. In this study, we investigated chamchwi (Aster scaber Thunb), a major WEG, to assess the effect of growth conditions on nutritional quality and blanching process. Field-grown chamchwi had 1.5-2-fold more total phenolic compounds and anti-oxidative capacity than the house-grown one. Among functional compounds, quercetin was significantly higher (about 5-fold) in the field samples (approximately $430{\mu}g/g$ fresh weight) than in the house samples. Soluble sugars in field-grown chamchwi were 2-fold higher than in the house samples. For both the samples, blanching process decreased chamchwi quality significantly, but the degree of loss for each component was different. Consequently, field-grown chamchwi exhibited superior nutritional quality than greenhouse-grown one, and blanching process resulted in a similar decrease of nutritional quality in both the samples.

Comparison of Physicochemical Characteristics of Traditional and Commercial Kochujang during Fermentation (재래식과 공장산 고추장의 이화학적 특성 비교)

  • Kim, Young-Soo;Kwon, Dong-Jin;Oh, Hoon-Il;Kang, Tong-Sam
    • Korean Journal of Food Science and Technology
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    • v.26 no.1
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    • pp.12-17
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    • 1994
  • Physicochemical characteristics of traditional kochujang fermented for 6 months and commercial kochujang were compared. Tested kochujang included 18 kinds of Sunchang kochujang prepared with glutinous rice, 10 kinds of Boeun kochujang prepared with barley and 17 kinds of Sachun kochujang prepared with wheat, and 10 kinds of commercial kochujang. Major free sugar was found to be glucose both in traditional and commercial kochujang. Fructose, maltose, and sucrose were also detected in small amounts. The contents of free sugars in traditional kochujang was approximately one fourth of those presented in commercial kochujang. Commercial kochujang showed the highest level of total free amino acids followed in decreasing order by Sachun, Sunchang, and Boeun kochujang. The most abundant free amino acid was serine in Sunchang kochujang and aspartic acid both in Boeun and Sachun kochujang. On the other hand, glutamic acid was the most abundant amino acid in commercial kochujang. Volatile organic acids in various kochujang were determined and acetic, propionic, butyric, and 3-methyl butanoic acids were found in traditional kochujang. However, 3-methyl butanoic arid was not found in commercial kochujang. The most abundant volatile acid was acetic acid in both tradtional and commercial kochujang. Analysis of non-volatile organic acids showed that large amounts of lactic, oxalic, and succinic acids were found in traditional and commercial kochujang. In addition to these, small amounts of itaconic, malic, malonic, and pyroglutamic acids were found in commercial kochujang.

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Effects of Nutritional Conditions on Tobacco (Nicotianatcbfeum L) Cell Suspension Culture (담배세포 (Nicotiana tabacum) 의 액체배양에 관한 연구)

  • 윤경은;김용철;민태기;손세호;강서규
    • Journal of the Korean Society of Tobacco Science
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    • v.1 no.1
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    • pp.1-8
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    • 1979
  • For the preliminary experiments of mass Production of tobacco cells in tank culture, the effects of nutritional conditions on the growth of suspended cells were investigated ; 1. The tobacco cell growth was affected by concentrations of sucrose or inorganic phosphate, type of nitrogen source, and plant hormone, especially 2, 4-D. 2. The optimum level of sucrose concentration was 3% and the level of inorganic phosphate was 0.3mg /ml, which was about twice as high as the level of Linsmaier - Skoog medium. 3. The best growth was observed when the ratio of nitrate nitrogen to ammonium nitrogen was 2 : 1, where the total nitrogen content was equal to that of nitrogen source. 4. To find out the mechanism of promotive effects of 214-D and inorganic phosphate on the tobacco cell growth, the respiration and metabolism of $^{14}\textrm{C}$-91ucose were investigated. Addition of 2, 4 -D in culture medium increased if 2, 4-D (0.2ppm )was added to medium or the level of inorganic Phosphate was raised 2.5 times as high as standard. In cultures with high inorganic phosphate and 2, 4-D, the absorbed 14C-glucose was converted to amino acids and organic acids rather than remained as sugars.

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Chitosanolytic Characteristics of Cellulases from Trichoderma viride and Trichoderma reesei (Trichoderma viride 및 Trichoderma reesei 유래 Cellulase의 키토산 분해 특성)

  • Hong, Sang-Pill;Kim, Dong-Soo
    • Korean Journal of Food Science and Technology
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    • v.30 no.2
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    • pp.245-252
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    • 1998
  • The chitosanolytic capabilities of cellulases, glucosidases, proteases and commercial enzymes were evaluated, and effective chitosanolytic cellulases from T. viride, T. reesei and Celluclast, a commercial enzyme from T. reesei were characterized. The reaction of cellulase from T. viride, T. reesei and Celluclast was optimal at pH 5. 0 and $45{\sim}55^{\circ}C$. Max. chitosanolytic activities of cellulases from both T. viride and T. reesei were observed at the enzyme/chitosan ratio=0.1 and chitosan concentration=3.0%. For the possible application of commercial Celluclast to chitosan oligosaccharides production, 3%(w/v) chitosan was reacted with 1%(v/v) Celluclast at pH 5.0 and $55^{\circ}C$. The apparent viscosity decreased by 98% within 30 minutes reaction and Max. contents of 50% EtOH solubles were 70% at 15 hrs reaction. Total reducing sugars were also increased with reaction time and maintained approx. 13.5% after 2hrs reaction. In 15 hrs treated chitosan hydrolyzates, various kinds of chitosan oligosaccharides were produced and contents of chitosan hexamer, known for its antitumor activities, were about 8.0%, about 4 times higher values compared with acid hydrolysis method. The results suggested that chitosan oligosaccharides could be produced with low-cost cellulases from T. reesei.

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Effects of Condensed Molasses Soluble on Chemical and Biological Properties of Soil, and Nitrogen Mineralization (당밀농축용액이 토양의 화학 및 생물학적 성질과 질소의 무기화에 미치는 영향)

  • Kang, Gwan-Ho;Kang, Byung-Hwa;Park, Ki-Do;Chung, Keun-Yook;Sohn, Bo-Kyoon;Ha, Ho-Sung;Heo, Jong-Soo;Cho, Ju-Sik
    • Korean Journal of Soil Science and Fertilizer
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    • v.37 no.2
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    • pp.124-130
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    • 2004
  • This study was carried out to evaluate the effects of condensed molasses soluble (CMS) treatment on the mineralization of N, chemical properties and soil microbial population under the incubation condition with unsaturated water content during the 7 weeks at $25^{\circ}C$ in the different levels of CMS application. The results indicated that the total nitrogen content of soil was increased with increasing application rate of CMS and this trend was maintained up to 7 weeks. With CMS treatment content of $NH_4-N$ was gradually decreased. However, the content of $NO_3-N$ in the soil was gradually increased with incubation time due to the nitrification under the unsturated water condition. The CMS treatment increased the microbial populations such as bacteria, actinomycetes and fungi, which may be due to the availability of more nutrients such as amino acids, sugars and other minor elements from CMS. The pH of soil was found to be reduced by the addition of CMS, Whereas, electrical conduvtivity of soil was correspondingly increased with increasing application rate of CMS.

Breeding of a New Mid-season Apple Cultivar 'Yeohong' (중생종 사과 '여홍(麗紅)' 품종 육성)

  • Kwon, Soon-Il;Kim, Mok-Jong;Paek, Pong Nyeol;Shin, Yong-Uk;Kim, Jung-Hee;Choi, Cheol;Kang, In-Kyu
    • Horticultural Science & Technology
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    • v.30 no.6
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    • pp.776-779
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    • 2012
  • A new cultivar 'Yeohong' was originated from an artificial cross between 'Jonathan' and 'Fuji' carried out at National Institute of Horticultural & Herbal Science in 1993. The cultivar was preliminarily selected among the elite siblings for its high fruit quality in 2002. After regional adaptability test at five districts for subsequent four years as 'Wonkyo Ga-31', it was finally selected in 2007. 'Yeohong' is characterized by the following. Optimum harvest time is late September. Shape of mature fruit at 278 g on mean weight is oblate a light red skin on a greenish yellow ground and yellowish white flesh. The fruit contains favorable total soluble solids at $14.3^{\circ}Brix$ and titratable acidity at 0.4%, which results in a gustatory harmony between sugars and acids. Safe storage period for the fruit is 3 weeks at room temperature. It is not resistant to Bitter rot. 'Yeohong' also reveals a physiological cross compatibility with leading cultivars such as 'Hongro' and 'Tsugaru', but a physiological cross incompatibility with 'Fuji'. It has weak growth habit.