• Title/Summary/Keyword: sprouts vegetable

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Physicochemical Composition of Broccoli Sprouts (브로콜리 싹의 이화학적 성분)

  • Lee, Jae-Joon;Lee, Yu-Mi;Kim, Ah-Ra;Lee, Myung-Yul
    • Journal of Life Science
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    • v.19 no.2
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    • pp.192-197
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    • 2009
  • This study was conducted to investigate the major chemical components of dried broccoli (Brassica oleracea var. italica Plenck) sprouts. The proximate compositions of broccoli sprouts as dry matter basis were 2.04% of moisture content, 22.04% of crude protein, 12.80% of crude fat, 6.25% of crude ash, and 56.87% of carbohydrate, respectively. The major free sugars were identified as ribose, glucose and fructose. Analysing total amino acids, 15 kinds of components isolated from broccoli sprouts. The essential amino acid contained in broccoli sprouts accounted for 45.62% of total amino acid, while the non-essential amino acid accounted for 54.38%. Fatty acids were 3.19% of saturated fatty acids, 14.42% of monounsaturated fatty acids and 82.39% of polyunsaturated fatty acids. Cis-11,14-eicosatrienoic acid, linoleic acid and oleic acid were the major fatty acids among 14 fatty acids detected in dried broccoli sprouts. Lactic acid was the major organic acids. The contents of vitamin A and vitamin E were 0.06 mg% and 0.82 mg%, respectively. The mineral contents of dried broccoli sprouts were greater in order of Cu

A Study on the Influence of Sulphur-compound to Vitamin C in the different Vegetable during Cooking (유황화합물질이 조리시 야채류중의 Vitamin C 함량에 미치는 영향에 대하여)

  • 임양순
    • Journal of the Korean Home Economics Association
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    • v.12 no.1
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    • pp.472-479
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    • 1974
  • In order to study the influence of sulphur-compound on the vitamin C contents of different vegetables-i.e. Korean green pepper, leaf, Bilum, leaf, Soybean sprouts, Mung bean sprouts, Cucumber-the garlic powder and minced garlic were used while the vegetables were cooked. The results garlic juice during scaling the vegetables the vitamin C contents of them were higher as much as 9.2~12.7% 2. When the scaled vegetables were seasoned the vitamin C contents were higher as much as 8.9~`17.5% by adding garlic powder and 7.3~14.9% by adding minced garlic. 3. Vitamin C loss of the cooked vegetables with room condition for 30 min, was higher as much as 15.2~34.5% compared to just cooking. 4. Vitamin C contents of vegetables after 30 min from cooking, compared to just cooking were higher of vegetables after 30 min from cooking, compared to just cooking were higher as much as shown below. 1) ~13.3% by adding garlic powder. 2) 4.0~9.3% by adding minced garlic.

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The Effect of Vegetable Extracts on the Activity of Alcohol Dehydrogenase from Saccharomyces cerevisiae

  • Jung, Soon-Teck;Kang, Bae-Kwang
    • Preventive Nutrition and Food Science
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    • v.6 no.4
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    • pp.224-229
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    • 2001
  • We investigated the effects of bean sprouts (Glycine max), dropwort (Oenanthe javanica), and radish (Raphanus sativus var. hortensis for. acanthiformis) extracts on alcohol dehydrogenase (ADH). The extracts from three kinds of vegetables were prepared by extracting with boiling water, distilling water, and ethyl alcohol. Among extracts, boiling water extract showed the highest activating effect on ADH, respectively and distilled water extract had a greater effect on ADH activation than that of alcohol extract. The ADH facilitating effect of bean sprout extract by distilled water was significantly higher than dropwort or radish, hut the effect of the bean sprout extract by ethyl alcohol was lower than others. The facilitating effect on ADH of mixture extracts of bean sprout and dropwort were mixed at 1 : 1 mixture of boiled-water extract showed the highest effectiveness. And bean sprout extract separated below 3000 molecular weight (MW) range of extract fraction had greater ADH activity than large MW parts.

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Investigation of soybean sprout rot and the elimination of improper seeds for quality control on soybean seedlots

  • Lee, Jung Han;Kwak, Youn-Sig
    • Journal of agriculture & life science
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    • v.50 no.1
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    • pp.57-64
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    • 2016
  • Soybean sprouts have been a considered a nutrient-rich vegetable for hundreds of years. To evaluate the seedlot quality of soybean sprouts grown, and to evaluate a method for reducing the presence of improper seeds in soybean seedlots, microbes associated with soybean sprout rot were isolated from samples collected. Morphological characteristics and gas chromatography profiles of the cultured fungal and bacterial strains were identified. Eight types of improper seeds were identified: purple stain(Ps), black rot(Br), seed coat black spot(Cb), wrinkled seed(Ws), brown hilum(Bh), seed coat fracture(Cf), unripe seed(Us), and brown seed coat(Bc). The improper seeds were also dipped into 15%, 20%, and 25% NaCl solutions, as well as a saturated solution of NaCl, for 1min. As the NaCl concentration increased, the number of floating improper seeds increased as well. The highest floating rates were observed for the Cf seeds.

Food Behavior Using the Nutrition Quotient and Vegetable Preferences of Elementary School Students in the Metropolitan Area (수도권 일부 학령기의 영양지수를 이용한 식행동 및 채소 선호도 조사)

  • Kim, Young-A;Kim, Hyung-Sook
    • Journal of the Korean Dietetic Association
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    • v.27 no.2
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    • pp.67-76
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    • 2021
  • The purpose of this survey was to investigate the food behavior and vegetable preferences of elementary school students in the metropolitan areas of, South Korea. Five hundred and eighty students (277 male and 303 female) studying in grades 5~6 participated in the survey. We assessed food behavior by evauating the Nutrition Quotient (NQ). Through a questionnaire, which consisted of 20 food behavior checklist items. These items were grouped under five factors: balance, diversity, moderation, practice and environment. All data were analyzed using SPSS 25.0. The average NQ score weighted using the five factors was 61.32 points. Among the five factors, moderation showed the lowest score, whereas environment showed the highest score. The average score of the vegetable preference was 3.36 points out of a total of 5 points. The vegetable preference was found to be highest for bean sprouts and followed by tomatoes, lettuce, spinach, Chinese cabbage, sesame leaf, pumpkin, carrot, radish, chives, lotus roots, onions, broccoli, sweet peppers, and eggplant. The results of vegetable preferences by NQ grade were 4.13±0.63 points for the high grade, 3.68±0.75 points for the medium-high grade, 3.41±0.82 points for the medium-low grade, and 2.94±0.78 points for the low grade. There was a significant positive correlation between NQ and vegetable preferences (r=0.477, P<0.001). If vegetables with high preference are frequently provided in school meals, it might contribute to improving overall food behavior.

Effects of Film Packaging and Gas Composition on the Distribution and Quality of Ginseng Sprouts (새싹인삼의 필름포장과 가스조성이 품질특성에 미치는 영향)

  • Chang, Eun Ha;Lee, Ji Hyun;Choi, Ji Weon;Shin, Il Sheob;Hong, Yoon Pyo
    • Korean Journal of Medicinal Crop Science
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    • v.28 no.2
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    • pp.152-166
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    • 2020
  • Background: Ginsenosides, which have various physiological activities, are known to be abundant in the leaves and roots of ginseng. Ginseng sprouts can be used as a fresh vegetable and roots, stems, and leaves of ginseng can be consumed. This study aimed to investigate the effect of carbon dioxide treatment and the modified atmosphere (MA) packaging method in suppressing quality deterioration during the distribution of ginseng sprouts. Methods and Results: Ginseng sprouts were packed using Styrofoam, barrier film + non gas treatment, barrier film + gas treatment, 15 ㎛ polyamide (PA) double film + non gas treatment, 15 ㎛ PA double film + gas treatment, 25 ㎛ PA film + non gas treatment, or 25 ㎛ PA film + gas treatment. Quality parameters including gas composition, relative humidity, chlorophyll SPAD (Soil Plant Analysis Development) value, firmness, and rate of quality loss in ginseng sprouts were monitored at the following temperatures: 20℃, and 10℃. Ginseng sprouts packaged with 25 ㎛ PA film showed loss in quality because of wilting owing to low relative humidity within the film. Chlorophyll and firmness did not differ between film and gas treatments. The time point at which the combined loss from softening and decay owing to fungal, and bacterial infection and wilt reached 20% was considered the limit of distribution. At 20℃, the packaging not included in the 20% distribution loss rate limit or up to 7 days was 15 ㎛ PA double film + gas treatment. At 10℃, the packaging not included in the 20% distribution loss rate limit for up to 18 days were barrier film + gas treatment and 15 ㎛ PA double film + gas treatment. Conclusions: The film packaging suitable for the distribution of ginseng sprouts was found to be the barrier film and PA film with low gas permeability and maintaining hygroscopicity at 95% relative humidity. To prevent the loss in quality of ginseng sprouts, gas treatment (8% of O2 and 18% of CO2) in the film was found to be more suitable than no gas treatment for inhibition of decay.

Physiological Characteristics and Manufacturing of the Processing Products of Sprout Vegetables (새싹채소의 생리활성 특성 및 그 가공품의 제조)

  • Kim, Duk-Sook;Lee, Keun-Bo
    • Korean journal of food and cookery science
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    • v.26 no.3
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    • pp.238-245
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    • 2010
  • Sprout vegetable and general vegetable were obtained from radish, red cabbage, vegetable green, buckwheat and broccoli seeds. The vitamin contents had a large deviation, and the vitamin B1 contents decreased and/or was not detected according to the sprouting. This tendency occurred because of the use for growth of sprouts. The mineral contents in sprout vegetables was the highest and was 2~10 times greater than general vegetables. In the growing pathway, potassium was a large consumption nutrient and consumption of sodium was low. $\alpha$-Amylase and total enzyme activities were higher in sprout vegetable than general vegetable, which was also the case of the corresponding freeze dried powders. Sprouting was shown to increase the enzyme activities. Thus, sprout vegetables had several advantages including a rich level of nutrients and safety from agricultural pesticides.

Growth and Ginsenoside Content in Different Parts of Ginseng Sprouts Depending on Harvest Time (수확시기에 따른 새싹삼의 부위별 생육 및 Ginsenoside 함량 변화)

  • Jang, In Bae;Yu, Jin;Suh, Su Jeoung;Jang, In Bok;Kwon, Ki Beam
    • Korean Journal of Medicinal Crop Science
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    • v.26 no.3
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    • pp.205-213
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    • 2018
  • Background: Since the revised Ginseng Industrial Act was passed, ginseng sprouts have become a new medicinal vegetable for which there is high consumer demand. However, the existing amount of research and data on ginseng production has not kept pace with this changed reality. Methods and Results: In this study we analyzed the changes in the amounts of ginsenosides in different parts of growing ginseng sprouts during the period from when organic seedlings were planted in nursery soil until 8 weeks of cultivation had elapsed, which was when the leaves hardened. In the leaves, ginsenoside content increased 1.62 times with the panaxadiol (PD) system and 1.31 - 1.56 times with the panaxatriol (PT) system from 7 to 56 days after transplantation. During the same period, the total ginsenoside content of the stems decreased by 0.66 - 0.91 times, and those of the roots increased until the $21^{st}$ day, and then underwent steep declines. The effect of fermented press cake extract (FPCE) and tap water (TP) on the total amount of ginsenoside per plant were similar, and could be represented with the equations $y=1.4330+0.2262x-0.0008x^2$ and $y=0.9555+0.2997x-0.0031x^2$ in which y = ginsenoside content x = amount of and on the total amounts of FPCE or TP, respectively after 26.4 days, however, the difference between ginsenoside content with FPCE and TP widened. Conclusions: These results suggested that the amounts of ginsenosides in different parts of ginseng varied with the cultivation period and nutrient supply. These findings also provide fundamental data on the distribution of ginsenosides among plant parts for 2-year-old ginseng plants in the early-growth stage.

Analysis of Microbial Contamination of Sprouts and Fresh-cut Salads in a Market (유통중인 즉석섭취 새싹채소와 샐러드의 세균오염 분석)

  • Kang, Tae-Mi;Cho, Sung-Kyung;Park, Ji-Yong;Song, Kyung-Bin;Chung, Myung-Soo;Park, Jong-Hyun
    • Korean Journal of Food Science and Technology
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    • v.43 no.4
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    • pp.490-494
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    • 2011
  • Although bacterial outbreaks from ready-to-eat foods have increased, little information is available on microbial quality of sprouts in markets. Fifty sprouts and 30 salads were collected from wholesale markets. Total aerobic count (TAC), coliform, Escherichia coli, and some pathogens were detected. TAC for sprouts was 7.95 log CFU/g and 6.70 for salads, indicating that sprouts were more contaminated by 1 log CFU/g than that of salads. The numbers of coliform were 6.69 log CFU/g for sprouts and 5.42 for salads. E. coli was detected in 16 of 50 sprout samples at 2.38 log CFU/g and eight of 30 salads at 2.21 log CFU/g. Bacillus cereus was detected in 29 of 50 sprout samples and 16 of 30 salads, and the counts were mostly <3 log CFU/g. Salmonella, Staphylococcus aureus, Listeria monocytogenes, Campylobacter jejuni, and Clostridium perfringens were not detected. Therefore, although pathogens may not be a high risk for these foods, the high TAC and E. coli contamination require improved production and distribution methods, particularly for sprouts.

Comparison of Storability of Some Sprout Vegetables in MA Storage (MA저장중 몇가지 싹기름 채소의 저장성 비교)

  • Kang, Ho-Min;Kim, Il-Seop
    • Journal of Bio-Environment Control
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    • v.16 no.4
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    • pp.415-419
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    • 2007
  • This study was conducted to compare the storability of some sprout vegetables; alfalfa, broccoli, radish, red-cabbage, and red-radish, packed with 50 low density polyethylene (LDPE) film in MA storage. Most of all 5 different sprout vegetable crops maintained the fresh weight higher than 99% until 10 days storage at 2 and $8^{\circ}C$. The carbon dioxide concentration in packages was higher at 8 than at $2^{\circ}C$. It was higher in radish and red-radish sprouts than other crops. As the oxygen concentration showed opposite trends to carbon dioxide, that of radish and red-radish sprouts decreased more than 3% after 3 days in 8 storage. Ethylene concentration in the packages of alfalfa was 0.1 ppm, significantly higher than other four crops with less than 1.0 ppm. Temperature treatment, however, did not influence the ethylene concentration in packages. The radish and red-radish sprouts, with lowest oxygen concentration in package, showed lowest off-flavor compared to the others. The visual quality of these sprouts in packages showed higher at $2^{\circ}C\;than\;at\;8^{\circ}C$ and was maintained the highest in radish sprouts, followed by red-radish, broccoli, red-cabbage, and alfalfa sprouts in that order. In conclusion, as the sprout vegetables have different shelf-life, of which radish was $4{\sim}5$ days longer than that of alfalfa the distributed condition of sprout vegetables should be differently controlled according to kinds of crops.