• 제목/요약/키워드: high-oleic cultivar

검색결과 13건 처리시간 0.016초

발아 전후 현미유에서의 기능성 지질성분 변화 (Changes in Nutraceutical Lipid Constituents of Pre- and Post-Geminated Brown Rice Oil)

  • 곽지은;윤성원;김대중;윤미라;이정희;오세관;김인환;이준수;이점식;장재기
    • 한국식품영양학회지
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    • 제26권3호
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    • pp.591-600
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    • 2013
  • This study investigated the changes in the nutraceutical lipid components of brown rice oil after germination. Four different high-yielding cultivars (Dasan1, Segyejinmi, Hanareum1 and Hanareum2) of Korean brown rice were selected and brown rice oil was extracted from each cultivar before and after germination. Free fatty acid, squalene, policosanols, and isomers of phytosterol were analyzed using GC, and isomers of tocols (tocopherol and tocotrienol) and ${\gamma}$-oryzanol were quantified using HPLC from both brown rice oil (BRO) and germinated brown rice oil (GBRO). The contents of phytosterol isomers, campesterol, stigmasterol, and ${\beta}$-sitosterol were increased by 8.3%, 31.6%, 3.3% in GBRO, respectively. Furthermore, the squalene content showed the highest increase of up to 2.4 fold in GBRO compared to BRO. In addition, linoleic and linolenic acid composition increased whereas oleic and palmitic acid decreased in the GRBO. However, the contents of tocols (tocopherol and tocotrienol) in GBRO were lower than those in BRO, and there was no significant difference in policosanol and ${\gamma}$-oryzanol between GBRO and BRO. These results suggest that GBRO has the potential as a healthy and functional source due to its lipid profile on improved lipid metabolism.

쌀의 품질평가 현황과 금후 연구방향 (Trend and Further Research of Rice Quality Evaluation)

  • 손종록;김재현;이정일;윤영환;김제규;황흥구;문헌팔
    • 한국작물학회지
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    • 제47권
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    • pp.33-54
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    • 2002
  • Rice quality is much dependent on the pre-and post harvest management. There are many parameters which influence rice or cooked rice qualitys such as cultivars, climate, soil, harvest time, drying, milling, storage, safety, nutritive value, taste, marketing, eating, cooking conditions, and each nations' food culture. Thus, vice evaluation might not be carried out by only some parameters. Physicochemical evaluation of rice deals with amy-lose content, gelatinizing property, and its relation with taste. The amylose content of good vice in Korea is defined at 17 to 20%. Other parameters considered are as follows; ratio of protein body-1 per total protein amount in relation to taste, and oleic/linoleic acid ratio in relation to storage safety. The rice higher Mg/K ratio is considered as high quality. The optimum value is over 1.5 to 1.6. It was reported that the contents of oligosaccharide, glutamic acid or its derivatives and its proportionalities have high corelation with the taste of rice. Major aromatic compounds in rice have been known as hexanal, acetone, pentanal, butanal, octanal, and heptanal. Recently, it was found that muco-polysaccharides are solubilized during cooking. Cooked rice surface is coated by the muco-polysaccharide. The muco-polysaccharide aye contributing to the consistency and collecting free amino acids and vitamins. Thus, these parameters might be regarded as important items for quality and taste evaluation of rice. Ingredients of rice related with the taste are not confined to the total rice grain. In the internal kernel, starch is main component but nitrogen and mineral compounds are localized at the external kernel. The ingredients related with taste are contained in 91 to 86% part of the outside kernel. For safety that is considered an important evaluation item of rice quality, each residual tolerance limit for agricultural chemicals must be adopted in our country. During drying, rice quality can decline by the reasons of high drying temperature, overdrying, and rapid drying. These result in cracked grain or decolored kernel. Intrinsic enzymes react partially during the rice storage. Because of these enzymes, starch, lipid, or protein can be slowly degraded, resulting in the decline of appearance quality, occurrence of aging aroma, and increased hardness of cooked rice. Milling conditions concerned with quality are paddy quality, milling method, and milling machines. To produce high quality rice, head rice must contain over three fourths of the normal rice kernels, and broken, damaged, colored, and immature kernels must be eliminated. In addition to milling equipment, color sorter and length grader must be installed for the production of such rice. Head rice was examined using the 45 brand rices circulating in Korea, Japan, America, Australia, and China. It was found that the head rice rate of brand rice in our country was approximately 57.4% and 80-86% in foreign countries. In order to develop a rice quality evaluation system, evaluation of technics must be further developed : more detailed measure of qualities, search for taste-related components, creation and grade classification of quality evaluation factors at each management stage of treatment after harvest, evaluation of rice as food material as well as for rice cooking, and method development for simple evaluation and establishment of equation for palatability. On policy concerns, the following must be conducted : development of price discrimination in conformity to rice cultivar and grade under the basis of quality evaluation method, fixation of head rice branding, and introduction of low temperature circulation.

국내 콩 유전자원의 지방함량 및 지방산 조성변이 (Variation of Oil Contents and Fatty acid Compositions in Korean Soybean Germplasms)

  • 정명근
    • 한국작물학회지
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    • 제51권spc1호
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    • pp.139-145
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    • 2006
  • 고품질 콩 품종육성 및 유전자원 연구의 기초자료로 활용하기 위해 국내 콩 주요품종 46계통 및 보존 유전자원 517 계통의 지방함량과 지방산 조성의 변이양상을 분석한 결과를 요약하면 다음과 같다. 1. 한국산 콩 주요 품종의 지방함량 범위는 $15.8%{\sim}20.3%$ 였으며, 평균 18.2%를 나타내었고, 지방함량이 가장 낮은 품종은 1986년에 육성된 보광콩이, 가장 높은 품종은 2000년도에 육성된 새별콩으로 조사되었다. 2. 한국산 콩 주요 품종 46계통의 지방산 조성분석 결과 포화지방산인 C16:0 및 C18:0의 경우 각각 $8.96{\sim}13.23%$$2.55{\sim}4.20%$ 범위로 존재하였고, 불포화지방산인 C18:1, C18:2 및 C18:3의 범위는 각각 $16.33{\sim}36.41%,\;42.32{\sim}58.84%$$6.98{\sim}10.72%$를 나타내었다. 3. 국내 보존 유전자원 517계통의 지방산 조성을 분석한 결과 C16:0은 8.50%(IT 154681)${\sim}14.78%$(IT 154558), C18:0은 1.86%(IT 022331)${\sim}4.78%$(KLG 10738), C18:1은 13.29%(IT 178710)${\sim}43.30%$(IT 154657), C18:2는 38.21%(IT 156004)${\sim}61.51%$(IT 178710) 및 C18:3이 5.03(IT 188085)%${\sim}11.48%$(IT 153412)의 범위를 나타내었다. 4. 콩 함유 지방산 중 포화지방산에 속하는 C16:0 및 C18:0은 불포화지방산인 C18:1과 고도의 부의 상관을 나타내었으며, 불포화지방산인 C18:1은 다른 종류의 불포화지방산인 C18:2 및 C18:3과 고도의 부의 상관을 나타내었고, C18:2와 C18:3 사이에는 고도의 정의상관이 인정되는 것을 확인할 수 있었다.