• Title/Summary/Keyword: kidney bean

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Physicochemical Properties of Defatted and Lipid-reintroduced Kidney Bean, Mung Bean and Corn Starches (탈지 및 지질첨가 강남콩, 녹두와 옥수수 전분의 특성)

  • Lee, Sang-Keum;Shin, Mal-Shick
    • Korean Journal of Food Science and Technology
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    • v.25 no.6
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    • pp.710-715
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    • 1993
  • Physicochemical properties of defatted and lipid-reintroduced kidney bean, mung bean, and corn starches were investigated. Granule shapes of kidney bean and mung bean starches were oval/round, but corn starch was polygonal and each shape was not changed after defatting and lipid reintroducing. The granule sizes of starches ranged $12{\sim}45{\mu}m,\;10{\sim}32{\mu}m\;and\;5{\sim}20{\mu}m$ respectively, but those of lipid reintroduced starches increased slightly. All starches showed Ca type in x-ray diffraction but relative crystallinity was decreased by defatting. The amylose contents of starches increased after defatting but decreased after lipid-reintroduction. The swelling power and solubility of untreated starches at each temperature increased by defatting but decreased by lipid-reintroduction except corn starches. The initial pasting temperatures of kidney bean, mung bean and corn starches by amylograph were $87,\;67\;and\;80^{\circ}C$ respectively, and those of them were lowered by defatting. The peak viscosity, height at $50^{\circ}C$, consistency and setback on amylogram of starches decreased by defatting but increased by lipid-reintroduction.

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Quality Properties of Takju(Rice Wine) Added with Kidney Bean (강낭콩을 첨가한 탁주의 품질 특성)

  • Park, Sang-Soon;Yoon, Jin-A;Kim, Je-Jung
    • Journal of the East Asian Society of Dietary Life
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    • v.20 no.4
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    • pp.575-581
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    • 2010
  • Kidney bean was used in the brewing of Takju. The Takju formed varied the percentage of kidney bean used; that is, 0%(only rice) in $T_{-1}$, 100%(only kidney bean) in $T_{-2}$, 90% in $T_{-3}$, 80% in $T_{-4}$, 70% in $T_{-5}$, 60% in $T_{-6}$, and 50% in $T_{-7}$. We determined the total sugar, pH, reducing sugar, alcohol production, acidity, and DPPH free radical scavenging activity of Takju. The acidic value of $T_{-1}$ was above that of $T_{-6}$, and the pH of $T_{-2}$ was above that of $T_{-1}$. Both satisfy the food code parameters (namely, below 0.5 in acidity, 3.8~4.7 in pH). The alcohol production of $T_{-1}$ was above that of $T_{-2}$. For 2 days of fermentation, the reducing sugar of $T_{-1}$ totaled 2, down from 4.96%. After fermentation, there was not much difference from 4 to 12 days. The antioxidative effect of $T_{-1}$ proved to be much better than those of the other. Thus, we can be seen that these results thus indicate that the role of kidney bean added to Takju show good antioxidative activity. From the result of sensory test, we also concluded that the taste of Takju kidney bean is very similar to that of Takju with rice.

Effects of Temperature on the Oviposition, Feeding and Emergence of the Azuki Bean Weevil (Callosobruchus chinensis L.) in the stored beans (저장두류(貯藏豆類)에 대(對)한 팥바구미의 산란(産卵).섭식(攝食) 및 우화(羽化)에 미치는 온도(溫度)의 영향(影響))

  • Kim, Kyu-Chin;Choi, Hyeon-Soon
    • Korean journal of applied entomology
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    • v.26 no.2 s.71
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    • pp.71-81
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    • 1987
  • This study was conducted to study the effects of temperature on the oviposition, feeding and emergence of the azuki bean weevil(ABW) (Callesobruchus chinensis L.) in the stored beans. And ovipositional preference, hatching and emergence on the preference and non-preference hosts were also investigated. ABW has four generations a year and overwinters as larva stage in the bean grains. Optimum oviposition temperature of the ABW ranges from $25^{\circ}C\;to\;30^{\circ}C$. Oviposition preference in different hosts was in the order of azuki bean, mung bean, soy bean, kidney bean, black-soybean, pea. At $25^{\circ}C$, optimum development temperature emergence of period the ABW averaged 29 days on azuki bean, 31 days on mung bean, 49 days on soy bean, 46 days on black-soybean, 34 days on Pea. Percent hatch in different hosts was in the order of azuki bean, mung bean, soy bean, pea, black-soybean, kidney bean. But percent emergence was in the order of azuki bean, mung bean, pea, black-soybean, kidney bean. Especially, in azuki bean and mung bean, percentage of hatching and emergence was very high. And in soy bean and black-soybean, percentage of hatching was high but emergence was low. The kidney bean was hatching but not emergence at all. The longevity at the different temperatures appeared to be $4{\sim}5$ days at $35^{\circ}C,\;5{\sim}7$ days at $25^{\circ}C{\sim}30^{\circ}C$, $10{\sim}15$ days at $20^{\circ}C\;and\;19{\sim}24$ days at $15^{\circ}C$. Kidney bean of feeding non-preference host oviposited at Seed coat and Endosperm, but no larva developed. And cotyledon and embryo parts were not oviposited at all. The percentage of germination of egg laid bean grain and damaged bean grains was low. Especially, the percentage of germination of damaged bean grains was 0% on azuki bean, 5% on black-soy bean, 7% on Pea.

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Effect of Heating Temperature on Elution Patterns of Soluble Carbohydrate of Legume Starches and the Properties of Starch Gels (가열온도가 두류전분의 가용성 탄수화물의 용출양상과 전분겔 특성에 미치는 영향)

  • Kweon, Mee-Ra;Ahn, Seung-Yo
    • Korean Journal of Food Science and Technology
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    • v.25 no.6
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    • pp.698-702
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    • 1993
  • Effect of heating temperature on elution patterns of soluble carbohydrate of legume starches and the texture of starch gels was investigated. The elution profiles of soluble carbohydrate obtained by Sepharose 2B-CL showed that the larger molecules were leached as the heating temperature increased. The elution profiles of soluble carbohydrate of cow pea and mung bean starches were similar, but those of kidney bean starch were different. The gel structures of cow pea and mung bean were stable with showing high values in hardness and cohesiveness. But red bean and kidney bean gels were weak in hardness and cohesiveness. As the heating temperature rised, hardness and cohesiveness were increased in gels prepared by heating for 15 min. However, the gels made by heating for 1 hour showed that less hard and more cohesive gels from cow pea and mung bean, while harder and more cohesive gels from red bean and kidney bean were obtained as the heating temperature increased from $85^{\circ}C\;to\;95^{\circ}C$.

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Sensory and Instrumental Characteristics of Defatted and Lipid-reintroduced Starch Gels (탈지 및 지질첨가 전분겔의 관능적 기계적 특성)

  • 이상금;신말식
    • Korean journal of food and cookery science
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    • v.10 no.2
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    • pp.87-93
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    • 1994
  • The sensory and instrumental characteristics of defatted and lipid-reintroduced kidney bean, mung bean and corn starch gels stored for 3 hrs and 24 hrs at room temperature were investigated. In sensory evaluation of starch gels, acceptability was highly correlated with hardness, bend property, cohesiveness and springiness. Mung bean starch gels showed sinigficantly highest value and followed by corn and kidney bean starch gels. Generally as for these factors, defatted starch gels were higher than untreated ones. The properties of defatted and lipid-reintroduced corn starch gels were similar to those of mung bean starch gels. In instrumental analysis, hardness was more important factor than any other ones. Hardness showed significantly higher value in the other of mung bean, corn and kidney bean starch gels, but it was highest in defatted starch gels among all treated gels. Hardness and springiness of defatted and lipid-reintroduced corn starch gels were similar to those of mung bean starch gels. Hardness of 24 hr stored starch gels increased more than that of 3 hr stored ones, but other textural factors did not change.

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Morphological diversity in kidney bean(Phaseolus vulgaris L.) germplasm

  • Han, Sea-Hee;Choi, Yu-Mi;Lee, Gi-An;Cho, Yang-Hee;Ma, Kyung-Ho;Lee, Jung-Ro
    • Proceedings of the Korean Society of Crop Science Conference
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    • 2017.06a
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    • pp.83-83
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    • 2017
  • The National Agrobiodiversity Center (NAS, RDA, Republic of Korea) has continually collected new valuable genetic resources. In this study, we regenerated conserved kidney bean (Phaseolus vulgaris L.) germplasm which couldn't be available because of seed quantity and quality, and we also surveyed their morphological characters for the sustainable utilization. A total of 431 kidney bean accessions were regenerated and 18 morphological traits were surveyed according to the characterization guideline of RDA Genebank. Among the surveyed traits, flowering time ranged from May 23 to September 4 and 73.8% of tested accessions were mainly flowering in June. The maturity time ranged from July 1 to October 15 and main flowering time was July (91.4%). For plant type, 270 accs (62.6%) were climbing type followed by medium type of 86 accs (20.0%) and dwarf type of 65 accs (15.1%). The seed coat colors were various; yellow (34.6%), white (22.3%), brown (17.9%), red (10.7%), black (5.8%), violet (11%), pink (1.4%), navy (0.9%). Principal component analysis indicated that five principal components (PCs) with Eigen values >1 accounted for more than 65.8% variability. The first PC was more related to growth habits such as growth type, flowering time, and plant type. The second and third PCs showed higher values of the pigment characters such as seed coat color, flower color, and pod color. In fourth and fifty PCs, there were the higher positive values of the pod shapes. Our results provided insight into the characteristics kidney beans, thus the utilization basis of kidney beans might be elevated for bio-industry.

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Retrogradation of Legume Starches and Their Gel Properties during Storage (두류 전분의 노화 및 저장 중 겔 특성)

  • Kweon, Mee-Ra;Shin, Mal-Shik;Ahn, Seung-Yo
    • Korean Journal of Food Science and Technology
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    • v.25 no.6
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    • pp.742-746
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    • 1993
  • Retrogradation of legume starches and their gel properties were studied. From DSC results, kidney bean starch retrograded faster than other starches whereas cow pea and mung bean starches retrograded slowly. Retrogradation rate of 1% starch solutions during storage showed similar patterns to the DSC results. During storage, the sags of cow pea and mung bean gels(starch conc., 8%) were slowly increased, but that of kidney bean was rapidly increased. The water mobility of cow pea and mung bean gels, which was measured by NMR, remained unchanged for one day, afterwards decreased slowly, whereas that of red bean and kidney bean gels decreased rapidly through the storage time.

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Agricultural Utilization of Paper Mill Sludge Manure Compost -I. Effects on the Growth of Kidney Bean (Phaseolus vulgaris L.) (제지(製紙)스럿지 퇴비(堆肥)의 농업적(農業的) 이용연구 -I. 강남콩에 대(對)한 시용효과)

  • Chang, Ki-Woon;Kim, Sang-Deog;Choi, Woo-Young;Lee, Kyu-Seung
    • Korean Journal of Soil Science and Fertilizer
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    • v.25 no.2
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    • pp.149-154
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    • 1992
  • A study was carried out to know the effects of two kinds of paper mill sludge manure compost(SMC) on the growth and chemical components of kidney bean(Phaseolus vulgaris) : Control(SMC-0) contained chemical fertilizer only, sludge manure compost-1(SMC-1) contained 18% of swine manure and 8% of sawdust of the total weight of the manure in addition to the chemical fertilizer, and sludge manure compost-2(SMC-2) contained swine manure without sawdust a third of the total by weight on a fresh weight basis, 1) Kidney bean treated with SMC-1 and SMC-2 showed the increasing tendency of values meristem height, stem diameter, pod number per plot and total grain yield when compared to control(SMC-0) treatment 2) Though there was not a significant difference between SMC-1 and SMC-2 treatments on the growth, SMC-1 tended to increase the value of meristem height, stem diameter, pod number per plot and total grain yield of kidney bean, 3) The contents of aluminium, iron and zinc in kidney bean were higher than other elements, though there was no significant difference between the treatments, And those of chromium, lead and cadmium were negligible. 4) From the results obtained, it can be said that SMC application has more favorable effects on the growth of the plant than control(SMC-0). The effects of SMC-1 application on the growth of kidney bean was more favorable than those of SMC-2.

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Changes of Germination Rate of Pulses Seed Germplasm after Long-term Conservation

  • Baek, Hyung-jin;Lee, Young-yi;Jung, Yeon-ju;Yoon, Mun-seop
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2018.04a
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    • pp.44-44
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    • 2018
  • The seeds of soybean (Glycine max), adzuki bean (Vigna angularis), mung bean (Vigna radiata), and kidney bean (Phaseolus vulgaris L.) were examined the germination rate after 10 years of long-term storage ($-18^{\circ}C$) conservation. For soybean seeds, 2,313 accessions were examined and germination rate of 1,082 accessions was decreased with below 15% of initial germination rate. For 227 accessions of soybean, germination rate was decreased with above 15% of initial germination rate after 10 years of long-term storage, which is needed to be rejuvenated. Germination rate of 589 accessions was increased and showed no change for 415 accessions after 10 years of long-term storage. For adzuki bean seeds, 2,058 accessions were examined and germination rate of 739 accessions was decreased with below 15% of initial germination rate. For 63 accessions of adzuki bean, germination rate was decreased with above 15% of initial germination rate after 10 years of long-term storage, which is needed to be rejuvenated. Germination rate of 535 accessions was increased and showed no change for 721 accessions after 10 years of long-term storage. For mung bean seeds, 438 accessions were examined and germination rate of 139 accessions was decreased with below 15% of initial germination rate. For 5 accessions of mung bean, germination rate was decreased with above 15% of initial germination rate after 10 years of long-term storage, which is needed to be rejuvenated. Germination rate of 155 accessions was increased and showed no change for 139 accessions after 10 years of long-term storage. For kdney bean seeds, 366 accessions were examined and germination rate of 7 accessions was decreased with below 15% of initial germination rate. For 65 accessions of kidney bean, germination rate was decreased with above 15% of initial germination rate after 10 years of long-term storage, which is needed to be rejuvenated. Germination rate of 201 accessions was increased and showed no change for 93 accessions after 10 years of long-term storage.

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Virulence differentiation of bean common mosaic potyvirus in leguminosae crops

  • Park, H.S.;T.S.Jin;Park, J.W.;Lee, S.H.;J.U.Cheon;Park, J.K.;Y.Takanami
    • Proceedings of the Korean Society of Plant Pathology Conference
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    • 2003.10a
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    • pp.141.1-141
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    • 2003
  • Forty six isolates of bean common mosaic virus (BCMV) collected from azuki bean, mungbean, kidney bean, cowpea, broad bean and peanut were classified into three groups based on biological, serological, cytopathological, and molecular characteristics. Group I induced vein-banding symptoms in cowpea which was similar to those produced by the BCMV-cowpea strain. Group II caused mosaic symptoms in azuki bean but not in peanut and tobacco. Since this character was different from that of previously described BCMV strain, group II may not belong to BCMV GroupIII induced vein-clearing symptoms in azuki bean, kidney bean and peanut, which are typical symptoms for BCMV-peanut stripe virus strain. Virus inclusion patterns of BCMV groups were similar to those of Potyvirus subdivision III with the scroll, pinwheel and long laminated inclusions. However, the inclusions of laminated aggregates were never observed in mungbean isolates. Multiple alignment as well as cluster dendrograms of 3'noncoding region (3'-NCR) and a part of coat protein gene (CP) suggested that group I belongs to the BCMV-cowpea strain, group II to the BCMV-azuki bean strain, and group III to the BCMV-peanut stripe virus strain. Since molecular phylogenesis of BCMV based on nucleotides of 3'-NCR and coat protein differed from the grouping based on virulence differentiation, and BCMV groups are more closely related to each other with the same host origin, other characteristics of those strains are under investigation.

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