• Title/Summary/Keyword: Glucosinolates

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Effect of Processing on the Content of Sulforaphane of Broccoli (브로콜리의 조리가공에 따른 sulforaphane 함량)

  • 김미리;이근종;김혜영
    • Korean journal of food and cookery science
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    • v.13 no.4
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    • pp.422-426
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    • 1997
  • Fresh broccoli is known to have the highest content of sulforaphane (S-methylsulfinylbutyl isothiocyanate) among all vegetables. Since isothiocyanates are formed from myrosinase-catalyzed hydrolysis of glucosinolates during tissue destruction of broccoli, the formation of sulforaphane in the extract of broccoli was examined under various processing conditions. The amount of sulforaphane in processed broccoli was measured using GC/MS analysis. Among fresh, dried, and boiled broccoli fresh broccoli exhibited the highest content of sulforaphane. Sulforaphane was maximally produced from the homogenate in 0.1 M phosphate buffer containing 1 mM Vitamin C stored at room temperature for 1 hr. In boiled broccoli, the amount of sulforaphane decreased as the boiling time increased, and reached to 10% of control after 30 min boiling. The amount of sulforaphane was decreased remarkably in dried broccoli in which freeze-dried and heat-dried broccoli had about 50% and 30% of fresh ones, respectively.

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Influence of the lime on inorganic ion and glucosinolate contents in Chinese cabbage (생석회 시비가 배추 내 무기이온 및 글루코시놀레이트 함량에 미치는 영향)

  • Kim, Young-Jin;Chun, Jin-Hyuk;Kim, Sun-Ju
    • Korean Journal of Agricultural Science
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    • v.42 no.4
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    • pp.415-421
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    • 2015
  • Ca is material to used in Chinese cabbage (Brasica rapa L. spp. pekinensis). The variation of inorganic ions and GSLs in Chinese cabbage cultivated to control additional Ca contents in slaked lime. The additional fertilizer of slaked lime differ four grade that 0 g (Ca-0), 0.28 g (Ca-1), 0.56 g (Ca-2), 0.84 g (Ca-3) are week intervals with a total of 8 times after transplanting. Inorganic ions in Chinese cabbage ('Bulam plus') were analyzed to use inductively coupled plasma atomic emission spectometry(ICP). The more additional slaked lime input, the more almost macronutrients contents were high except Ca. Ca contents were higher in Ca-0 (153.10) and lower in Ca-3 (130.55 mg/kg dry weight, DW). GSLs were identified based on peak retention time in previous results of our laboratory. Seven GSLs including two aliphatic (gluconapin, glucobrassicanapin), one aromatic (gluconasturtiin), four indolyl (glucobrassicin, neoglucobrassicin, 4-methoxyglucobrassicin, 4-hydroxyglucobrassicin) were detected using HPLC. Progoitrin, 4-methoxyglucobrassicin, and gluconasturtiin contents increased in proportion to the input in additional slaked lime. Total GSLs contents were Ca-0 (11.95), Ca-1 (17.02), Ca-2 (19.63), Ca-3 ($17.11{\mu}mol/g$ dry weight, DW). Total Ca and GSLs contents (Ca-1,2,3; mean 17.92) are higher than non treatment (Ca-0; $11.95{\mu}mol/g$ DW).

The Relationshin between ACE Inhibitory Activity and Degradations of Sulfur Containing Materials in Dolsan Leaf Mustard Juice

  • Yoo Eun-Jeong;Choi Myeong-Rak;Lim Hyun-Soo
    • Biotechnology and Bioprocess Engineering:BBE
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    • v.9 no.5
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    • pp.400-404
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    • 2004
  • This Study was tarried out to investigate the relationship ACE inhibitory activity and degradations of sulfur containing materials in Dolsan leaf mustard juice (DLMJ). The changes of sulfur containing materials which were treated with autolysis, myrosinase, ascorbate and papain were studied, as well as the changes of ACE inhibitory activity in DLMJ. At $37^{\circ}C$, sulfur contain-ing materials by autolysis decreased most rapidly from $0.43\%$ to $0.13\%$ in the second day. Conversely. ACE inhibitory activity increased most from $66\%$ to $87\%$. in the second day at $37^{\circ}C$. As myrosinase concentrations increased more, sulfur containing materials in DLMJ decreased more. The ACE inhibitory activities at 0, 0.5, 1, 2, and 4 Units of myrosinase for 240 min later were 70, 74, 75, 82, and $85\%$, respectively. At 1 mM ascorbate. concentrations of Sulfur containing materials in DLMJ decreased more significantly on the second day than on the other days. At 1 mM ascorbate for 6 days, ACE Inhibitory activity reached a maximum of about $92\%$. And, an increase of papain concentration was noted in accordance with a decreased sulfur containing materials. The maximum rate of AEC inhibitory activity at control, 3, 6, and 12 Units of papains treatments was shown as 70, 70, 75, and $78\%$ at 60 min, respectively. These results suggested that the degradation of sulfur containing materials led to the increase of ACE inhibitory activity. Consequently, it was suggested that ACE inhibiting was significantly related to the degradatives of sulfur containing materials.

Effects of different sulfur ion concentration in nutrient solution and light source on glucosinolate contents in kale sprouts (Brassica oleracea var. acephala)

  • Park, Ye-Jin;Chun, Jin-Hyuk;Woo, Hyunnyung;Maruyama-Nakashita, Akiko;Kim, Sun-Ju
    • Korean Journal of Agricultural Science
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    • v.44 no.2
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    • pp.261-271
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    • 2017
  • The aim of this study was to investigate the amount of glucosinolates (GSLs) in kale sprouts (Brassica oleracea L. var. acephala) ('TBC') according to different concentrations of sulfur ions in sprout's nutrient solutions (0.0, 0.5, 1.0, and 2.0 mM) and to different light sources [Fluorescent lamp, Red, Blue, and Mix (R+B) LED]. Kale sprouts were cultivated in a growth chamber for 13 days in sulfur solutions. Kale sprouts were treated with fluorescent lamp and LED light sources for 5 days, from eight days after sowing to harvest. Amount of seven types of GSLs (progoitrin, sinigrin, 4-hydroxyglucobrassicin, glucobrassicin, 4-methoxyglucobrassicin, gluconasturtiin, and neoglucobrassicin) were measured in kale sprouts after harvest. The total GSL content was influenced by different sulfur solution concentration, and it was the highest at S 0.5 mM ($172.54{\mu}mol{\cdot}g^{-1}DW$) and the lowest at S 2.0 mM ($163.09{\mu}mol{\cdot}g^{-1}DW$). The GSL content was influenced by different light source, and it was the highest with Red LED ($159.23{\mu}mol{\cdot}g^{-1}DW$) and the lowest with Blue LED ($147.57{\mu}mol{\cdot}g^{-1}DW$). As the sulfur solution concentration increased under all light source, progoitrin and sinigrin contents tended to decrease while glucobrassicin content showed an upward tendency for all of the light sources. The content of glucobrassicin was higher than that of progitrin when treated with sulfur solutions for all LED light sources. Sinigrin, which has excellent anti-cancer effects, showed the highest rate (92.2%) among all the GSLs, under all of the light sources.

Evaluation of Glucosinolate Content and Composition Contained in Korean Leaf Mustard (Brassica juncea var. integrifolia) Germplasm Using Liquid Chromatography Electrospray Ionization Mass Spectrometry(LC-ESI-MS/MS)

  • Kim, Jung-Bong;Kim, Heon-Woong;Ko, Ho-Cheol;Kim, So-Young;Kim, Se-Na;Jin, Yong-Xie;Kim, Jae-Hyun
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2010.05a
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    • pp.18-18
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    • 2010
  • Glucosinolates(GSLs) are major secondary products($\beta$-thioglucoside N-hydroxysulfates) containing sulfates that are found mainly in Cruciferae family such as cabbage, broccoli, radish, turnip, kale, mustard and rapeseed as the important crops in agronomic and economic aspects. Especially, isothiocyanates(ITCs) have been shown to inhibit carcinogenesis with regulation cancer cell development followed by regulating target enzymes, inducing cell cycle arrest and apoptosis against various human cancer cell lines. Total desulfo(DS)-GSLs of nine type in 210 Korean leaf mustard accessions were isolated and confirmed using electrospray ionization mass spectrometric(ESI-MS/MS) method and DS-GSLs powerful library maked from several reference data. The isolated individual DS-GSLs were identified by removed $\beta$-D-glucopyranose residue ($C_6H_{11}O_5$, MW 163) from MS/MS data. Among them sinigrin(41.7%), glucoiberverin(21.7%) and gluconasturtiin(12.6%) were major components, Especially, despite gluconapin was minor component, accession K046197-1 and K046197-2 showed higher content of 4.11 and 3.31 mg/g(DW), respectively. The total GSLs contents in 210 accessions were ranged from 5.3 to 23.2 mg/g(DW) with a mean value of 13.0 mg/g(DW). As a result of principal component analysis(PCA), the individual GSLs loading plots were composed of three groups and components belonged to each group showed correlationship in quantitative pattern.

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Comparison of Glucosinolate Contents in Leaves and Roots of Radish (Raphanus spp.)

  • Ko, Ho-Cheol;Sung, Jung-Sook;Hur, On-Sook;Baek, Hyung-Jin;Jeon, Young-ah;Luitel, Binod Prasad;Ryu, Kyoung-Yul;Kim, Jung-Bong;Rhee, Ju-Hee
    • Korean Journal of Plant Resources
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    • v.30 no.6
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    • pp.579-589
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    • 2017
  • Glucosinolates (GSLs), beneficial secondary metabolites for human health are abundantly present in radish vegetable. Radish is a member of Brassicaceae family and its seed, leaf and root contain very important GSLs. The objective of this study was to determine the variation of individual and total GSL contents in leaves and roots of 44 radish (Raphanus spp.) germplasm (26 R. sativus L., 3 R. raphanistrum, and 15 R. sativus L. var. raphanistroides Makino), and compare the GSL contents between leaves and roots among three Raphanus species. Thirteen GSLs were identified, being the glucoraphasatin (GRS) and glucobrassicin (GBS) the most abundant aliphatic and indolyl GSLs in both the leaves and roots. Variation in individual and total GSL contents was found among the germplasm of three Raphanus species. The GRS content was higher in roots than that of leaves in all three Raphanus species but the GBS content was higher in leaves than roots. GRS was represented 87.0%, 92.7% and 94.7% of the total GSL in roots of R. sativus L., R. raphanistrum and R. sativus L. var. raphanistroides (Makino) germplasm, respectively. Germplasm of R. raphanistrum exhibited the highest (average, $79.5{\mu}mol/g\;dw$) total GSL with a ranged from 62.7 to $92.9{\mu}mol/g\;dw$. The germplasm IT119288, Joseonmu and IT119262 from R. sativus L., RA 504 and K046542 from R. raphanistrum, and Gyeongju-2003-32 (G2003-32) and IT302373 from R. sativus L. var. raphanistroides (Makino) had high total GSL contents and these could be good candidates for developing the functional compounds-rich varieties in radish breeding program.

Effects of glucoraphanin in dexamethasone-induced skeletal muscle atrophy in vitro model (Dexamethasone으로 유도된 근위축 세포모델에서 glucoraphanin의 효과)

  • Jeon, Sang Kyu;Kim, Ok Hyeon;Park, Su Mi;Lee, Ju-Hee;Park, Sun-Dong
    • Herbal Formula Science
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    • v.28 no.1
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    • pp.29-39
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    • 2020
  • Objectives : Glucoraphanin is one of the well-known natural glucosinolates found in cruciferous plants. In the present study, we investigated the effects and molecular mechanism of glucoraphanin in dexamethasone-induced skeletal muscle atrophy in vitro model. Methods : The cytotoxic effects of glucoraphanin on C2C12 myoblasts or myotubes were evaluated by MTT assay. The glucoraphanin was evaluated effects in dexamethasone-induced skeletal muscle atrophy in C2C12 myotubes using a real-time PCR, western blots analysis, and immunofluorescence staining of myosin heavy chain. Result : Glucoraphanin had no cytotoxicity on both C2C12 myoblasts or myotubes. Dexamethasone markedly induced muscle atrophy by up-regulating muscle-specific ubiquitin E3 ligase markers, atrogin-1 and MuRF1, and down-regulating MyoD, a myogenic regulatory factor whereas co-treatment of glucoraphanin and dexamethasone dose-dependently inhibited it. Furthermore, decreased expressions of p-Akt, p-FOXO1, and p-FOXO3a induced by dexamethasone were reversed by co-treatment with glucoraphanin and dexamethasone. In addition, dexamethasone obviously reduced myotube diameters, while co-treatment of glucoraphanin and dexamethasone increased those to a similar level as control. Conclusions : These results show that glucoraphanin suppresses dexamethasone-induced muscle atrophy in C2C12 myotubes through activation of Akt/FOXO signaling pathway.

Effect of Cold Stress on Carotenoids in Kale Leaves (Brassica oleracea) (저온처리가 케일(Brassica oleracea)잎 내 Carotenoid에 미치는 영향)

  • Hwang, So-Jung;Chun, Jin-Hyuk;Kim, Sun-Ju
    • Korean Journal of Environmental Agriculture
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    • v.36 no.2
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    • pp.106-112
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    • 2017
  • BACKGROUND: Kale (Brassica oleracea) biosynthesizes various phytochemicals including glucosinolates, flavonoids, and carotenoids. Phytochemicals of plants are influenced by light, temperature, carbon dioxide, and growing conditions. Specifically, carotenoids are affected by temperature, light, and oxygen. The aim of this study was to investigate the effect of cold stress (day/night: $25^{\circ}C/20^{\circ}C$, $20^{\circ}C/15^{\circ}C$, $15^{\circ}C/10^{\circ}C$) on carotenoids in kale leaves. METHODS AND RESULTS: Kale was grown in pots for up to 50 days after sowing (DAS) in a greenhouse. For cold acclimation experiments, kale grown in growth chambers for 3 days and was subjected to low temperature for 4 days. The conditions maintained in the growth chambers were as follows: photoperiod, 12/12 h (day/night); light, fluorescent; and relative humidity, 60%. Carotenoid (lutein, ${\alpha}-carotene$, zeaxanthin, ${\beta}-carotene$) contents were analyzed by high-performance liquid chromatography (HPLC). The total carotenoid content gradually increased during cold acclimation for 3 days. When kale was subjected to cold stress, the total carotenoid content was high at $25^{\circ}C/20^{\circ}C$ treatment, but low at $15^{\circ}C/10^{\circ}C$ treatment. The total carotenoid content of kale leaves continuously grown in greenhouse decreased from 50 to 57 DAS (1,418 and 1,160 mgkg-1 dry wt., respectively). The lutein, ${\alpha}-carotene$, and ${\beta}-carotene$ contents were very low and the zeaxanthin contents were very high at $15^{\circ}C/10^{\circ}C$ treatment. When kale was subjected to cold stress, the ratio of individual to the total carotenoid contents of kale leaves was 4553% for -carotene and 210% for zeaxanthin. CONCLUSION: The ${\beta}-carotene$ and zeaxanthin contents in kale leaves indicate their sensitiveness toward cold stress.

Prospect and Situation of Quality Improvement in Oilseed rape (유채 품질 평가 현황과 전망)

  • 장영석
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.47
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    • pp.175-185
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    • 2002
  • Rapeseed(Brassica napus L.) is an important oil crop as a vegetable oil, concentrated feed and industrial materials. The name "canola" was registered in 1979 by the Western Canadian Oilseed Crushers Association to describe "double-low" varieties. Double low indicates that the processed oil contains less than 2% erucic-acid and the meal less than 3mg/g of glucosinolates. Today annual worldwide production of rapeseed is approximately 35 million tons on 24 million hectares. China accounts for 33% of the world production and the European Economic Community for nearly 32%. Canola ranks 3rd in production among the world's oilseed crops following soybeans, sunflowers, peanuts and cottonseed. The recent advances in genomics and in gene function studies has allowed us to understand the detailed genetic basis of many complex traits, such as flowering time, height, and disease resistance. The manipulation of seed oil content via transgene insertion has been one of the earliest successful applications of modern biotechnology in agriculture. For example, the first transgenic crop with a modified seed composition to be approved for unrestricted commercial cultivation in the US was a lauric oil, rape-seed, grown in 1995. There were also some significant early successes, mostly notably the achievement of 40% to 60% lauric acid content in rapeseed oil, which normally accumulates little or no lauric acid. The name "$\textrm{Laurical}^{TM}$" was registered in 1995 by Calgene Inc. Nevertheless, attempts to achieve high levels of other novel fatty acids in seed oils have met with much less success and there have been several reports that the presence of novel fatty acids in transgenic plants can sometimes lead to the induction of catabolic pathways which break down the novel fatty acid, i.e. the plant recognizes the "strange" fatty acid and, far from tolerating it, may even actively eliminate it from the seed oil. It is likely that, in the future, transgenic oil crops and newly domesticated oil crops will both be developed in order to provide the increased amount and diversity of oils which will be required for both edible and industrial use. It is important that we recognize that both approaches have both positive and negative points. It will be a combination of these two strategies that is most likely to supply the increasing demands for plant oils in the 21st century and beyond.ant oils in the 21st century and beyond.

Formation of Indole Glucosinolates Breakdown Products during Processing Treatment in Cruciferous Vegetables (십자화과 채소의 가공처리 중 Indole Glucosinolate의 분해산물 형성)

  • Shim, Ki-Hwan;Kang, Kap-Suk;Sung, Nack-Kie;Seo, Kwon-Il;Moon, Ju-Seok
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.21 no.1
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    • pp.49-53
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    • 1992
  • The released amount of thiocyanate ion in Cruciferous vegetables treated by wet heat, increased as the reaction time goes by and was maximum value after treatment for 30min, but it was not changed by dry heat treatment. When samples were autolyzed by myrosinase, the amount of thiocyanate ion increased gradually as time goes by, was maximum value after 3hrs and much higher than those in the sample treated by wet. The released amount of thiocyanate ion in each sample showed much in cabbage, Chinese cabbage, radish, kale and mustard in the order. The generated amount of indoleacetonitrile by heat treatment increased as time goes by and the generated amount in each sample determined was high in the order of cabbage, Chinese cabbage and radish.

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