• Title/Summary/Keyword: 자색고구마

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Vitamin C Quantification of Korean Sweet Potatoes by Cultivar and Cooking Method (국내산 고구마의 품종 및 조리방법별 비타민 C 함량)

  • Hwang, In Guk;Byun, Jae Yoon;Kim, Kyung Mi;Chung, Mi Nam;Yoo, Seon Mi
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.43 no.6
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    • pp.955-961
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    • 2014
  • This study was carried out to investigate the amounts of vitamin C in 22 sweet potato cultivars cultivated in Korea as well as evaluate the effects of cooking methods on vitamin C contents. Methods for determining vitamin C was validated by determining linearity, specificity, limit of detection (LOD), limit of quantification (LOQ), precision, and accuracy using HPLC. Results showed high linearity in the calibration curve with a coefficient of correlation ($R^2$) of 0.9999. The LOD and LOQ values for ascorbic acid (AA) were 0.03 and $0.10{\mu}g/mL$, respectively. The relative standard deviations (RSDs) for intra- and inter-day precision of AA were less than 5%. The recovery rates of AA and dehydroascorbic acid (DHA) were in the range from 98.21~98.64 and 98.28~100.68%, respectively. Depending on cultivar, contents of AA, DHA, and total ascorbic acid (TA) in sweet potatoes varied in the range from 37.76 (Sinyulmi)~89.25 (Juhwangmin), 23.37 (Sinjami)~63.94 (Sinyulmi), and 68.52 (Sinjami)~115.95 (Juhwangmin) mg/100 g, respectively, and their average levels were $56.98{\pm}12.53$, $36.46{\pm}9.03$, and $93.44{\pm}12.00mg/100g$, respectively. The average TA levels were also dependent on flesh color, whish was significantly higher in general sweet potato and orange sweet potato than in purple sweet potato. Steaming, baking, and frying processes significantly reduced AA (10.61~58.41%), DHA (2.57~52.81%), and TA (14.54~49.92%) contents in sweet potatoes. The highest reduction of AA, DHA, and TA contents was observed after baking, followed by steaming and frying. We expect that the basic information provided by this study will be useful to plant breeders and food scientists.

Antioxidative Activities and Gelatinization Characteristics of Sponge Cake added with Purple Sweet Potato (자색고구마를 첨가한 스펀지케이크의 항산화성 및 호화 특성)

  • Kim, Jong-Hee;Lee, Kun Jong
    • Journal of the East Asian Society of Dietary Life
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    • v.23 no.6
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    • pp.750-759
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    • 2013
  • In the study, purple sweet potato sponge cake was prepared with different ratios of purple sweet potato powder in order to examine the antioxidative activities and gelatinization characteristics. For DPPH radical scavenging effect, content of $IC_{50}$ came out with (+) control group of BHA. Sponge cake with purple sweet potato powder of 0% showed a range of 49.7 mg/mL, The treatment groups with purple sweet potato powder of 5~30% showed a range of 25.0 mg/mL~6.0 mg/mL. That was, the higher the added quantity of purple sweet potato powder was, antioxidative activities increased. With the higher quantity of purple sweet potato, the content of phenols and flavonoids also increased. As a result of examining the gelatinization activity with DSC, the group with purple sweet potato powder showed a faster progress in temperature for starting gelatinization compared to the control group. Gelatinization activity increased in proportion to the content of purple sweet potato powder. Based on the above study results, it was proved that there is a possibility to produce baking processed foods using purple sweet potato with stable gelatinization and excellent antioxidative activities.

Effect of the Dextrose Equivalent of Maltodextrin on the Quality Characteristics of Jeju Purple Sweet Potato (Ipomoea batatas L.) during Molecular Press Dehydration (제주산 자색고구마의 분자압축탈수 중 말토덱스트린 Dextrose Equivalent의 영향에 대한 연구)

  • Cho, Man Jae;Kim, Hyun Jung
    • Korean Journal of Food Science and Technology
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    • v.47 no.6
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    • pp.744-750
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    • 2015
  • Purple sweet potatoes were dehydrated with maltodextrin with different dextrose equivalent (DE) values of 4-7, 13-17, 16.5-19.5, and 17-20. Maltodextrin was used as a molecular press dehydrating agent. The molecular dehydration rate of the purple sweet potatoes increased over time. As the DE of maltodextrin increased, the moisture content after 12 h of dehydration decreased from 65.7% to 40.8, 36.1, 34.9, and 28.6% for DE values of 4-7, 13-17, 16.5-17.5, and 17-20, respectively. Additionally, total phenolic content, anthocyanin, and 2,2-diphenyl-1-picrylhydrazyl (DPPH) radical scavenging activities decreased as the DE value of maltodextrin increased. While maltodextrins with DE values of 16.5-19.5 and 17-20 effectively dehydrated the purple sweet potatoes, total phenolic, anthocyanin, and DPPH radical scavenging activities were lowered during dehydration. The DPPH radical scavenging activities correlated to both the total phenolic content ($r^2=0.96$) and anthocyanin contents ($r^2=0.95$) of the purple sweet potatoes. These results indicate that the purple sweet potatoes were effectively dehydrated with maltodextrin whose DE values ranged 16.5-20, although there were losses in the total phenolic and anthocyanin contents.

Optimization of Brown Rice Cookies using Purple Sweet Potato (자색고구마 가루 첨가 발아현미 쿠키의 제조조건 최적화)

  • Kim, Bo-Ram;Joo, Na-Mi
    • Journal of the Korean Dietetic Association
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    • v.16 no.4
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    • pp.341-352
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    • 2010
  • The aim of this study was to use purple sweet potato powder to develop a recipe for a nutritional cookie with an optimal composition of ingredients and texture, in order to acquire strong preference responses by all age groups in sensory tests. Wheat flour was partially substituted with purple sweet potato powder to reduce the wheat flour content of the cookies. Measurements were made and analyzed according to the Response Surface Methodology technique, which showed 16 experimental points including 3 replicates for the purple sweet potato powder, sugar, and butter. The compositional and functional properties of the sample were measured, and the values obtained were applied to a mathematical model. A canonical form and perturbation plot showed the influence of each ingredient on the final product mixture. The results of sensory evaluations showed very significant values for flavor (P<0.0071), texture (P<0.0306), taste (P<0.0190), and overall quality (P<0.0142). Instrumental analysis showed significant values for hardness (P<0.0027), yellowness (P<0.0061) and spread ratio (P<0.0001). The optimal compositional ratios were determined to be 21.75 g for the purple sweet potato powder, 37.05 g for the sugar, and 60.59 g for the butter.

Preparation of Yogurt from Milk Added with Purple Sweet Potato (자색고구마 첨가 요구르트의 제조 및 특성)

  • 전승호;이상욱;신용서;이갑성;류일환
    • The Korean Journal of Food And Nutrition
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    • v.13 no.1
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    • pp.71-77
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    • 2000
  • New type yogurt base were prepared from milk added with skim milk powder or purple sweet potato, and fermented by lactic acid bacteria (Streptococcus thermophilus and Bifidobacterium infantis, 1:1, v/v). The yogurt proudcts were evaluated for acid production(pH, titratiable acidity), number of viable cell, viscosity, sensory properties, and color value. The composition of some organic acids was also analyzed by GC. The acid production slightly decrerased by addition with purple sweet potato. There was no significant difference in viable cell counts between control (yogurt added with only skim milk powder) and yogurt added with purple sweet potato, and viable cell counts of all samples were above 9.08 log cfu/ml. Viscosity of yogurt added with purple sweet potato(36,800∼46,000 centipoise) was higher than that of yogurt added with only skim milk powder(32,200 centipoise). The overall sensory score of yogurt added with purple sweet potato(38.6%, dry base) was the best of tested yogurt. The major organic acid of yogurt added with purple sweet potato was lactic acid. its content was 0.997∼1.203%. malic acid, succinic acid, oxalic acid, and fumaric acid were analyzed out a little. Lightness and yellowness decreased by addition with purple sweet potato but redness increased. Total color difference($\Delta$E) with yogurt addition with purple sweet potato and only skim milk powder were very high(above 11.46).

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Quality Characteristics and Antioxidant Activities of Cookies added with Purple Sweet Potato Powder (자색고구마 분말 첨가량을 달리한 쿠키의 항산화 활성 및 품질 특성)

  • Liu, Ya-Nan;Jeong, Da-Hye;Jung, Ji-Hye;Kim, Hyun-Sook
    • Korean journal of food and cookery science
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    • v.29 no.3
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    • pp.275-281
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    • 2013
  • This study was performed to evaluate the quality characteristics and antioxidative activities of cookies prepared with different amounts of purple sweet potato powder. Moisture and crude ash contents were lowest in the control group followed in order by the 10%, 20%, and 30% purple sweet potato powder addition groups. The lightness and yellowness values measured by Hunter color system decreased based on the amount of purple sweet potato powder concentration added to cookies. The total phenolic compound and anthocyanin contents were the highest in 30% purple sweet potato powder added cookies. The DPPH radical scavenging activity of 30% purple sweet potato powder added cookies showed the highest values among groups. In the sensory evaluation, the scores for taste, texture and overall preference were significantly highest in cookies with 10% and 20% purple sweet potato powder. Considering the scores of antioxidant activity and sensory evaluation, the concentration of between 10% and 20% addition of purple sweet potato powder would be ideal for development of functional cookies.

Quality Characteristics of Yanggeng by the Addition of Purple Sweet Potato (자색고구마를 첨가하여 제조한 양갱의 품질 특성)

  • Lee, Seung-Min;Choi, Yen-Jung
    • Journal of the East Asian Society of Dietary Life
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    • v.19 no.5
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    • pp.769-775
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    • 2009
  • This study was performed to investigate the quality characteristics of yanggeng added with Purple Sweet Potato. The yanggeng was prepared with purple sweet potato, Agar, Sugar and Salt. The yanggeng is made with various levels(0, 2, 4, 6, 8%) of purple sweet potato added. Hunter's color value, texture profile analysis, and sensory characteristics of purple sweet potato yanggeng were examined. The addition of purple sweet potato has tendency to decrease the water content of yanggeng. As the content of purple sweet potato increased, the lightness(L) and yellowness(b) decreased and redness(a) increased. In texture profile analysis, hardness decreased with increasing purple sweet potato content. Cohesiveness and springiness didn't showed significant differences according to amount of purple sweet potato. The results of the sensory evaluation showed that the sweetness, softness and overall acceptability were the highest scores at yanggeng containing 4% level of purple sweet potato. In conclusion, the result shows that the yanggeng with 4% of purple sweet potato is the best.

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Plant Regeneration Derived from Leaf Disk Cultures in Purple Sweetpotato (자색고구마의 잎 조직배양을 통한 식물체 재생)

  • Park, Hyae-Jeong;Ahn, Young-Sup;Jeong, Byeong-Choon;Park, Hyeon-Yong
    • Journal of Plant Biotechnology
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    • v.30 no.3
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    • pp.245-249
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    • 2003
  • This study was carried out to establish a regeneration system from leaf explant of purple sweetpotato(Ipomoea batatas L.) The optimal concentrations of plant growth regulators for callus induction and shoot formation were determined. The optimal combination for callus formation was 1$\mu$M 2,4-D 5$\mu$M BM, and highest yield of embryogenic calli were observed on Murashige and Skoog basal medium containing 0.5$\mu$M 2,4-D under light condition after 4weeks of culture. Embryogenec callus was subcultured on medium supplemented with 5$\mu$M ABA for 4 days. Subsequently, regeneration of adventitious shoots occurred when these embryogenic calli were transferred onto medium with 3∼6$\mu$M gibberellic acid. Regenerated shoots were developed into normal plantlets.

Quality Characteristics of Bread with Various Concentrations of Purple Sweet Potato (자색고구마 첨가 식빵의 품질특성)

  • Lee, Soon-Mok;Park, Geum-Soon
    • Korean journal of food and cookery science
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    • v.27 no.4
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    • pp.1-16
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    • 2011
  • The purpose of this study was to investigate the physicochemical and sensory properties of various breads prepared with purple-fleshed sweet potatoes and their powders. As the amount of purple-fleshed sweet potato and its powder increased, pH of the dough and bread, volume, dough yield, baking loss rate, and fermentation power of the dough decreased, whereas acidity of the bread increased. The lightness and yellowness of the breads decreased significantly, but redness increased with increasing content of purple-fleshed sweet potato and its powder. The textural properties, such as hardness, chewiness, springiness, and brittleness were significantly higher in groups with added purple-fleshed sweet potato and its powder compared to those in the control. The anthocyanin content and DPPH radical scavenging of dough and bread were higher in groups with purple-fleshed sweet potato and its powder than those in the control group. The groups with 5% and 10% purple-fleshed sweet potatoes and their powders had significantly higher scores for overall acceptability as compared to the control group.

Quality Characteristics of Rice Noodles Supplemented with Turmeric, Purple Sweet Potato, or Seaweed (Hizikia fusiforme) (강황, 자색고구마, 톳을 첨가한 쌀국수의 품질 특성)

  • Hwang, Seong-Yun;Kang, Kun-Og
    • Journal of the East Asian Society of Dietary Life
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    • v.23 no.2
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    • pp.211-217
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    • 2013
  • We investigated the quality characteristics of rice noodles supplemented with turmeric, purple sweet potato, or seaweed (Hizikia fusiforme). RVA (Rapid Visco Analyser), color, water activity, texture, and cooking properties were tested. Initial gelatinization temperature of noodles containing turmeric were the highest. Peak viscosity, holding strength, break down, final viscosity, and set back of noodles containing purple sweet potato were highest, indicating that the gelatinization state was more unstable and retrogradation would occur faster. The L value of the seaweed noodle was the lowest, while the a and b value of the turmeric noodles were $7.3{\pm}0.3$ and $40.2{\pm}1.3$ respectively, higher values than turmeric and seaweed noodles. Water activity of the seaweed noodle was 0.665, higher than turmeric and purple sweet potato noodles. Cooking properties (including weight, volume, and water absorption) and turbidity of seaweed noodles showed the highest growth rate. In terms of texture, the hardness was highest in purple sweet potato noodles, and the cohesiveness and gumminess was highest in seaweed noodles. The quality characteristics of rice noodles supplemented with turmeric, purple sweet potato, or seaweed showed that seaweed noodles were stable in gelatinization and cooking properties.