• 제목/요약/키워드: soybean seed coat

검색결과 118건 처리시간 0.028초

Variation of β-carotene Concentration in Soybean Seed and Sprout

  • Kang, Eun-Young;Kim, Eun-Hye;Chung, Ill-Min;Ahn, Joung-Kuk
    • 한국작물학회지
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    • 제57권4호
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    • pp.324-330
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    • 2012
  • In this study, ${\beta}$-carotene concentrations was determined in soybean cultivar according to seed size, usage, seed coat color and cotyledon color as well as the process of seed germination. The total average concentration of ${\beta}$-carotene was $6.6{\mu}g/g$ in soybean seed, $33.3{\mu}g/g$ in soybean sprout. According to seed size, the total ${\beta}$-carotene concentration of soybean was $6.9{\mu}g/g$ in large soybean seed, $6.7{\mu}g/g$ in medium soybean seed, and $6.31{\mu}g/g$ in small soybean seed. In soybean sprout, the total ${\beta}$-carotene concentration was $21.4{\mu}g/g$ in large soybean sprout, $30.5{\mu}g/g$ in medium soybean sprout, and $43.5{\mu}g/g$ in small soybean sprout. According to the utilization of seed, the total ${\beta}$-carotene concentration of soybean seed was $7.2{\mu}g/g$ in cooked with rice soybean seed, $6.1{\mu}g/g$ in paste and curd soybean seed, and $6.3{\mu}g/g$ in sprout soybean seed. In soybean sprout, the total ${\beta}$-carotene concentration was $25.9{\mu}g/g$ in cooked with rice soybean sprout, $32.4{\mu}g/g$ in paste and curd soybean sprout, and $41.9{\mu}g/g$ in sprout soybean sprout. When comparison with seed coat color, the total ${\beta}$-carotene concentration of soybean with brown seed coat ($8.8{\mu}g/g$) was slightly higher than those of soybean with yellow ($6.1{\mu}g/g$). In soybean sprout, the total ${\beta}$-carotene concentration was $21.8{\mu}g/g$ in black seed coat sprout, $38.7{\mu}g/g$ in brown seed coat sprout, $34.1{\mu}g/g$ in green seed coat sprout, $39.5{\mu}g/g$ in yellow seed coat sprout, and $30.5{\mu}g/g$ in mottle seed coat sprout. The results of this study suggested the functional characteristics of soybean through quantitative analysis of ${\beta}$-carotene.

Quality Evaluation for Vegetable Use in Local Soybean Cultivars with Various Seed Coat Color

  • Lee, J. D.;Hwang, Y. H.
    • 한국작물학회지
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    • 제43권2호
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    • pp.83-88
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    • 1998
  • From the evaluation of physical properties such as springiness, gumminess, adhesiveness, chewiness and hardness by the texture analyzer, vegetable soybean lines with green seed-coat were best as compared with those with black, brown, mixed, and yellow seed-coats. A panel test evaluated on the basis of taste, sweetness, chewiness, and total scores also indicated that soybean lines with green seed-coat were the best. The total scores of panel test was decreased in the order of green > yellow> black> brown seed-coat colored soybean. The mean value of sucrose content obtained by HPLC analysis was highest in black seed-coat colored soybean, and followed by green, yellow, and brown soybeans. The highest sucrose content (8.22%) was observed in 180362, a soybean line with green seed-coat. The full-season type soybeans showed much higher sucrose content than summer types which are mainly cultivated on farmer's fields for vegetable purposes. The final 13 lines selected from 300 colored soybeans showed nearly the same panel scores as Miwongreen. However, these lines had a great deal of variation in sucrose content, and much higher readings in texture analysis than Miwongreen, especially in chewiness and hardness which were the most important properties in vegetable soybeans.

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콩 종피의 이화학적 특성과 광택과의 관계 (Physicochemical Characteristics of Soybean Seed Coat and Their Relationship to Seed Lustre)

  • 김선림;지희연;손종록;박남규;류수노
    • 한국작물학회지
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    • 제50권spc1호
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    • pp.123-131
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    • 2005
  • 콩 종피의 이화학적 특성과 종실광택과의 상호관계를 구명하고자 본 연구를 실시하여 얻어진 결과를 요약하면 다음과 같다. 1. 콩 종피 표면의 전자현미경으로 관찰 결과 L값이 높은 콩의 종피는 표면이 매끄럽고 pore의 크기가 작았으나 L값이 낮은 콩의 종피는 표면이 거칠고 pore가 비교적 큰 것으로 나타났다. 2. 종피두께가 $70{\mu}m$에 달할 때 까지는 종자의 광택이 증가되지만 그 이상에 달하면 오히려 종실광택이 감소되었고, 종피두께가 두꺼울수록 수분흡수율이 낮으며, 특히 수분흡수 초기에 경향이 뚜렷하였다. 3. 종실광택이 높을수록 수분흡수율은 증가되는데, 수분흡수 초기에는 종실광택의 영향이 작지만 시간이 경과됨에 따라 종실광택이 밝은 품종일수록 수분흡수율이 높았다. 4. 종피의 단백질은 종실광택과 부상관이 있었으나 단백질의 구성성분인 아미노산은 종실광택과 상관이 없었다. 5. 종피의 조지방은 종실광택과 부상관적 요인으로 작용하나 종피에 함유된 불포화지방산은 종피의 광택과 정상관이 있는 것으로 나타나 종피의 광택은 지방산중 불포화지방산의 조성비율이 높을수록 종실이 밝았다. 6.종피의 조섬유 함량은 종실광택과 이차선형관계가 인정되어 종실광택과 밀접한 관계를 맺고 있는 성분으로 판단되었다. 7. 종피의 중성단당류로는 fucose, rhamnose, glucose, mannose, galactose, arabinose, xylose가 함유되어 있었으며, 이들 중 arabinosefl xylose는 종실광택과 정상관이 있었으나 조성비가 가장 높은 galactose는 유의성이 없었다.

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

  • Lee, Jung Han;Kwak, Youn-Sig
    • 농업생명과학연구
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    • 제50권1호
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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.

A comparison of the characteristic properties between soybean (Glycine max [L.] Merrill) seeds with different seed coat colors

  • Oh, Sung-Dug;Yeo, Yunsoo;Lee, So-Young;Suh, Sang Jae;Moon, Jung Kyung;Park, Soo-Kwon;Park, Soo-Yun
    • 농업과학연구
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    • 제46권4호
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    • pp.971-980
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    • 2019
  • We profiled the health-promoting bioactive components in nine types of soybean seeds with different seed coat colors (yellow, green, brown, and black) and investigated the effects of different extraction solvents (methanol, ethanol, and water) on their antioxidant activities. The carotenoid and anthocyanin compositions varied greatly by seed color, and the phenolic acids, total phenol, and total flavonoid contents differed by genotype. The carotenoid content was relatively higher in soybean seeds with green and black seed coats than in those with a yellow seed coat while lutein was the most plentiful. The anthocyanin content was considerably higher in the soybean seed with the black seed coat. The results of the DPPH assay showed strong antioxidative activities in the methanol- and water-extracts compared to the ethanol-extract, irrespective of the seed coat colors. Moreover, the soybean seeds with the black seed coat exhibited the highest antioxidant activity among the samples, regardless of the extraction solvent used. Eighteen bioactive compounds were subjected to data-mining processes including principal component analysis and hierarchical clustering analysis. Multivariate analyses showed that brown and black seeds were distinct from the yellow and green seeds in terms of the levels of carotenoids and anthocyanins, respectively. These results help our understanding of the compositional differences in the bioactive components among soybean seeds of various colors, providing valuable information for future breeding programs that seek to enhance the levels of compounds with health benefits.

대두껍질 함량에 따른 탈지대두분말 식물조직단백의 품질 특성 (Quality properties of texturized vegetable protein made from defatted soybean flour with different soybean seed coat contents)

  • 박찬순;서미숙;정선영;이슬;박보람;박신영;김용석
    • 한국식품저장유통학회지
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    • 제30권5호
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    • pp.896-904
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    • 2023
  • 본 연구에서는 탈지대두분말 식물조직단백(TVP) 제조 시 사용하는 탈지대두분말 원료의 전처리 공정에서 대두의 껍질 제거 정도가 식물조직단백(TVP)의 조직화 특성에 어떤 영향을 미치는지 살펴보았다. 식물조직단백 원료의 배합은 탈지대두분말 50%, 글루텐 30%, 옥수수전분 20%를 기본 배합으로 하였다. 대두껍질은 탈지대두분말 중량 대비 0, 3, 6 및 9% 비율로 첨가하였다. 압출성형은 냉각 다이(die)가 장착된 압출성형기를 이용하여 배럴온도 190℃, 스크루회전속도 250 rpm, 수분은 정량펌프 9 rpm 속도로 주입하였다. 압출성형 탈지대두분말 식물조직단백의 조직감은 껍질 함량이 증가함에 따라 외관으로는 섬유화 구조층이 감소하고, 물성은 경도는 증가하였으나 탄력성과 응집성은 큰 차이가 없었다. pH는 껍질 함량이 증가함에 따라 낮아졌다. 수분함량은 껍질 함량이 증가함에 따라 감소하였으며 수분흡수력, 고형분용출량 및 탁도는 껍질 함량이 증가함에 따라 값이 증가하는 경향을 보였다. 이와 같은 결과는 껍질함량의 증가로 단백질의 비중이 감소하고 껍질의 섬유소가 조직화를 저해하기 때문으로 판단된다. 이상의 결과에서 압출성형에 위한 탈지대두분말 식물조직단백 제조 시 원료 대두의 껍질 함량은 대두 종실의 중량 대비 50% 이상이 되지 않도록 하는 것이 적합하다고 사료된다.

A New Soybean Cultivar "Gaechuck#1" : Black Soybean Cultivar with Lipoxygenase2,3-free, Kunitz Trypsin Inhibitor-free and Green Cotyledon

  • Chung, Jong Il
    • 한국육종학회지
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    • 제41권4호
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    • pp.603-606
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    • 2009
  • Lipoxygenase and Kunitz trypsin inhibitor protein of mature soybean [Glycine max (L.) Merr.] seed are main anti-nutritional factors in soybean seed. A new soybean cultivar, "Gaechuck#1" with the traits of black seed coat, green cotyledon, lipoxygenase2,3 and Kunitz trypsin inhibitor protein free was developed. It was selected from the population derived the cross of "Gyeongsang#1" and C242. Plants of "Gaechuck#1" have a determinate growth habit with purple flowers, brown pubescence, black seed coat, black hilum, oval leaflet shape and brown pods at maturity. Seed protein and oil content on dry weight basis have averaged 39.1% and 16.2%, respectively. It has shown resistant reaction to soybean necrosis, soybean mosaic virus, Cercospora leaf spot and blight, black root rot, pod and stem blight, and soybean pod borer. "Gaechuck#1" matured on 5-10 October with a plant height of 50 cm. The 100-seed weight of "Gaechuck#1" was 23.2g. Yield of "Gaechuck#1" was averaged 2.2 ton/ha from 2005 to 2007.

A New Soybean Cultivar "Gaechuck#2": Yellow Soybean Cultivar with Lipoxygenase2,3-free and Kunitz Trypsin Inhibitor-free

  • Chung, Jong Il
    • 한국육종학회지
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    • 제41권4호
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    • pp.612-615
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    • 2009
  • Lipoxygenase and Kunitz trypsin inhibitor protein are the main antinutritional factor in mature soybean seed. A new soybean cultivar, "Gaechuck#2" with yellow seed coat, lipoxygenase2,3-free and Kunitz trypsin inhibitor protein-free was developed. It was selected from the population derived from the cross between "Jinpumkong2ho" and C242. Plants of "Gaechuck#2" have determinate growth habit with purple flowers, tawny pubescence, yellow seed coat, yellow hilum, oval leaflet shape and brown pods at maturity. Seed protein and oil content on a dry weight basis were 40.7% and 18.7%, respectively. It has shown a resistant reaction to soybean necrosis, soybean mosaic virus, Cercospora leaf spot and blight, black root rot, pod and stem blight, and soybean pod borer. Gaechuck#2 matured in 4 October with plant height of 54cm and a 100-seed weight of 24.4g. Average Yield of Gaechuck#2 was 230 - 250 kg/10a in 2005 - 2007.

Isoflavone Composition within Each Structural Part of Soybean Seeds and Sprouts

  • Phommalth, Siviengkhek;Jeong, Yeon-Shin;Kim, Yong-Hoon;Hwang, Young-Hyun
    • Journal of Crop Science and Biotechnology
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    • 제11권1호
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    • pp.57-62
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    • 2008
  • Isoflavone content in various parts of six soybean cultivars and soybean sprout during germination was analyzed by high performance liquid chromatography. The parts analyzed were seed coat, cotyledon, and axis for seeds and whole sprout, root, hypocotyl, and cotyledon for sprout. Two cultivars, Aga3 which is known to have the smallest seed size and the highest isoflavone content among the Korean soybean cultivars and Pungsannamulkong which is the most widely being used as soy-sprout, were selected for sampling from 1 to 10 days after germination. At the same weight, the order of isoflavone content increased from seed coat to cotyledon to axis. The highest total isoflavone(isoflavone$\times$dry weight) content was observed in the cotyledon and the lowest in the seed coat. The cotyledon of the Aga3 variety had the highest total isoflavone content and the lowest was measured in the Pungsannamulkong variety. The highest total isoflavone content, $10,788{\mu}g/g$, was observed in whole sprouts(cotyledon+hypocotyl+root) on day 7 for Aga3. After day 7, there was a decreasing trend in isoflavone content as the germination period increased. Total isoflavone content in the cotyledon of Aga3 significantly increased after seed germination, whereas the isoflavone content in the cotyledon of Pungsannamulkong decreased. However, total isoflavone content in the root of both varieties increased while isoflavone content in the hypocotyls decreased after seed germination.

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Effect of Seed Coat Color and Seed Weight on Protein, Oil and Fatty Acid Contents in Seeds of Soybean (Glycine max (L.) Merr.) Germplasms

  • Yu-Mi Choi;Hyemyeong Yoon;Myoung-Jae Shin;Yoonjung Lee;On Sook Hur;XiaoHan Wang;Kebede Taye Desta
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2021년도 춘계학술대회
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    • pp.15-15
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    • 2021
  • Seed coat color and seed weight are among the key agronomical traits that determine the nutritional quality of soybean seeds. This study aimed to evaluate the contents of total protein, total oil and five prominent fatty acids in seeds of 49 soybean varieties recently cultivated in Korea, and assess the influences of seed coat color and seed weight on each. Total protein and total oil contents were in the ranges of 36.28-44.19% and 13.45-19.20%, respectively. Likewise, individual fatty acid contents were in the ranges of 9.90-12.55, 2.45-4.00, 14.97-38.74, 43.22-60.26, and 5.37-12.33% for palmitic, stearic, oleic, linoleic, and linolenic acids, respectively. Our results found significant variations of protein, oil and fatty acid contents between the soybean varieties. Moreover, both seed coat color and seed weight significantly affected total oil and fatty acid contents. Total protein content, however, was not significantly affected by any factor. Among colored soybeans, pale-yellow soybeans were characterized by a high level of oleic acid (30.70%) and low levels of stearic (2.72%), linoleic (49.30%) and linolenic (6.44%) acids, each being significantly different from the rest of colored soybeans (p < 0.05). On the other hand, small soybeans were characterized by high levels of all individual fatty acids except oleic acid. The level of oleic acid was significantly high in large seeds. Cluster analysis grouped the soybeans into two classes with notable content differences. Principal component analysis also revealed fatty acids as the prime factors for the variability observed among the soybean varieties. As expected, total oil and total protein contents showed a negative association with each other (r = -0.714, p < 0.0001). Besides, oleic acid and linoleic acid showed a tradeoff relationship (r = -0.936, p < 0.0001) which was reflected with respect to both seed coat color and seed weight. In general, the results of this study shade light on the significance of seed coat color and seed weight to distinguish soybeans in terms of protein, oil and fatty acid contents. Moreover, the soybean varieties with distinct characteristics and nutritional contents identified in this study could be important genetic resources for consumption and cultivar development.

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