• 제목/요약/키워드: functional plant materials

검색결과 189건 처리시간 0.026초

Biological activities of Rosa multiflora Ethanol Extract as Cosmetic Material

  • Jo, Ha Neul;Kim, Hyun Woo;So, Yangkang;Yoo, Byoung Wan;Kim, Ji Hyo;Lee, Tae Bum
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 한국자원식물학회 2018년도 추계학술대회
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    • pp.91-91
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    • 2018
  • The Rosa multiflora, a well-known plant belonging to Rosacea, is widely used in orthodox medicine in worldwide. However, its biological activity as a functional ingredient for cosmetic products have not yet been studied. Accordingly, an investigation of the above mentioned atrributes was performed on a 50% ethanol extract of Rosa multiflora. The antioxidant activities were determined by DPPH. Additionally, the contents of total phenols and flavonoids were analyzed. Also, the phenolic compounds were detected using HPLC. The melanogenesis regulatory effect was evaluated using melanin content and cellular tyrosinase activity in B16F10 melanoma cells. The elastase inhibitory activity assay was performed for anti-wrinkle effect. The antimicrobial activity was assessed using the disc diffusion assay. The DPPH radical scavenging ability, denoted by the $SC_{50}$ value was found to be $123.1{\mu}g/ml$, whereas that of positive control (ascorbic acid) was $27.5{\mu}g/mL$. The content of total polyphenol and flavonoid content were 202 mg/g and 86.77 mg/g, respectively. In addition, astragalin and gallic acid were identified in the extract. Also, the ethanol extract significantly inhibited ${\alpha}$-MSH-induced melanogenesis in B16F10 cells. For anti-wrinkle effect, elastase inhibition activity of the ethanol extract was 53.2% at a concentration of $100{\mu}g/ml$. The antimicrobial activity of the extract against S. aureus and E. coli was observed to be 0.5 - 5%, and no significant activity was noted against C. albicans. Therefore, the ethanol extract of Rosa multiflora can be used effectively for development of functional cosmetic materials.

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Verification of anti-oxidative activity of Aruncus dioicus, a native plant of Ulleungdo (울릉도 자생식물 삼나물(Aruncusdioicus)의 항산화 활성 검증)

  • Kim, Dong-Hee;Moon, Yong-Sun;Son, Jun-Ho
    • Journal of Plant Biotechnology
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    • 제42권1호
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    • pp.55-59
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    • 2015
  • The extracts of Aruncus dioicus were investigated for anti-oxidant and biological activities in order to verify its potential as functional ingredients of cosmetic products. The ethyl acetate (EtOAc) extract of A. dioicus showed excellent scavenging activity using DPPH and ABTS anti-oxidant analysis at the $1,000{\mu}g/mL$ concentration. While tyrosinase inhibitory effect was measure for whitening assay and showed 59.2%, the suppression levels of elastase and collagenase were 56% and 90% respectively for anti-wrinkle activity. Therefore, it is plausible to conclude that A. dioicus extract, especially EtOAc fraction which has outstanding whitening, anti-oxidant, and anti-wrinkle activities, could be used as a new functional materials for cosmetics.

Seed-borne Pathogenic Bacterium Interact with Air-borne Plant Pathogenic Fungus in Rice Fields

  • Jung, Boknam;Park, Jungwook;Kim, Namgyu;Li, Taiying;Kim, Soyeon;Bartley, Laura E.;Kim, Jinnyun;Kim, Inyoung;Kang, Yoonhee;Yun, Ki-Hoon;Choi, Younghae;Lee, Hyun-Hee;Lee, Kwang Sik;Kim, Bo Yeon;Shon, Jong Cheol;Kim, Won Cheol;Liu, Kwang-Hyeon;Yoon, Dahye;Kim, Suhkman;Ji, Sungyeon;Seo, Young Su;Lee, Jungkwan
    • 한국균학회소식:학술대회논문집
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    • 한국균학회 2018년도 춘계학술대회 및 임시총회
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    • pp.33-33
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    • 2018
  • Air-borne plant pathogenic fungus Fusarium graminearum and seed-borne plant pathogenic bacterium Burkholderia glumae are cause similar disease symptoms in rice heads. Here we showed that two pathogens frequently co-isolated in rice heads and F. graminearum is resistant to toxoflavin produced by B. glumae while other fungal genera are sensitive to the toxin. We have tried to clarify the resistant mechanism of F. graminearum against toxoflavin and the ecological reason of co-existence of the two pathogens in rice. We found that F. graminearum carries resistance to toxoflavin as accumulating lipid in fungal cells. Co-cultivation of two pathogens resulted in increased conidia and enhanced chemical attraction and attachment of the bacterial cells to the fungal conidia. Bacteria physically attached to fungal conidia, which protected bacterium cells from UV light and allowed disease dispersal. Chemotaxis analysis showed that bacterial cells moved toward the fungal exudation compared to a control. Even enhanced the production of phytotoxic trichothecene by the fungal under presence of toxoflavin and disease severity on rice heads was significantly increased by co-inoculation rather than single inoculation. This study suggested that the undisclosed potentiality of air-born infection of bacteria using the fungal spores for survival and dispersal.

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Antioxidant Activity of Solvent Fraction from Broccoli Sprouts Cultivated at the Plant Factory System (식물공장에서 재배한 브로콜리 새싹 용매 분획물의 항산화 활성)

  • Kim, Eun-Ji;Kim, Mi-Hye
    • The Korean Journal of Food And Nutrition
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    • 제28권1호
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    • pp.1-8
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    • 2015
  • This study was designed to determine the antioxidant activity of solvent fractions of broccoli sprouts grown by controlling the growing environment at the plant factory system. Fractionation was achieved with chloroform, n-hexane, ethyl acetate, butanol, water by 70% EtOH extract of the broccoli sprouts. Each solvent fraction was put through TLC and HPLC to separate active components. Higher antioxidant activities were observed for the butanol and ethyl acetate layers. Further evaluation of each of the 5 layers (LH1 to LH5) of the butanol fraction showed that the refined LH3 extract had a high antioxidant effect. Components with similar Rf values from TLC had the same retention times and peaks in the HPLC analysis. It was also determined that the sulforaphane content was high at the chloroform and butanol layers and the sulforaphane was responsible for, the high antioxidant activity. Thus, to use for functional materials, the butanol extract/layer of broccoli sprouts is recommended as the most effective.

Phenolic Compounds from Antioxidant Plant Materials and their Protective Effect on PC12 cells (항산화 식물의 페놀성화합물에 의한 PC12 세포보호 효과연구)

  • You, SoHyeon;Kim, Gun-Hee
    • Journal of the Korean Society of Food Culture
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    • 제33권1호
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    • pp.86-94
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    • 2018
  • This study was designed to evaluate the antioxidant activities and protective effects on PC12 cells of the extract of Epimedium koreanum and its main constituents icariin and icariside I. After screening the seven identified flavonoid glycosides from E. koreanum through DPPH (2,2-diphenyl-1-picryl-hydrazyl-hydrate) assay, E. koreanum, Icariin and Icariside I exhibited significant effect on radical scavenging activity. E. koreanum, icariin and icariside I were examined using DPPH, ABTS (2,2'-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid)) and FRAP (ferric reducing ability power) assay. In all antioxidant assays, E. koreanum, icariin and icariside I showed high radical scavenging activities in a dose-dependent manner. Protective effects against $H_2O_2-induced$ PC12 cells were assessed with MTT assay. The results indicated that cell viability and protection on PC12 cells of icariside I and icariin increased dose dependently. These study results suggest that E. koreanum, icariin and icariside showed high antioxidant capacities and cell protective effects. Icariside I, one of the metabolites of icariin, may be a new and effective flavonoid compound as a functional component.

Screening of Anti-inflammatory Effect of Halophyte Extracts

  • Jae-Bin Seo;Young-Jae Song;Sa-Haeng Kang;Se-Woong-Ko;Dong-Keun Kim;Tae-Hyun Kim;Jeong-Hyang Park;Ju-Ryun Soh;Jong-Sik Jin
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 한국자원식물학회 2020년도 추계국제학술대회
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    • pp.79-79
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    • 2020
  • Halophyte is a plant that has evolved to grow well in salty places, and is mainly distributed in coastal wetlands, sand dunes, salt fields, and reclaimed lands in tidal flats and river estuaries. Because it grows in the soil where seawater enters and exits, it is very abound in natural minerals and produces certain metabolites to survive sustainably in the surrounding environment. In this study, anti-inflammatory studies were conducted using 15 kinds of halophyte to secure data on halophytes of infinite value as functional materials. The aim of this study was to select a group of halophytes that regulate iNOS expression, which is involved in the secretion of inflammatory cytokines and nitric oxide production in LPS-induced macrophages. Among the 15 species of halophyte, except for Triglochin maritimum, Suaeda japonica, and Carex pumila, NO production was reduced in 12 species of halophytes, and 7 species of halophyte (Suaeda asparagoides, Artemisia fukudo, Spergularia marina, Aster tripolium, Suaeda australis, Atriplex subcordata, Calystegia soldanella) significantly decreased the expression levels of TNF-α and IL-1β.

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Ac/Ds-mediated gene tagging system in rice

  • Eun, Moo-Young;Yun, Doh-Won;Nam, Min-Hee;Yi, Gi-Hwan;Han, Chang-Deok;Kim, Doh-Hoon;Park, Woong-June;Kim, Cheol-Soo;Park, Soon-Ki
    • Proceedings of the Korean Society of Plant Biotechnology Conference
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    • 한국식물생명공학회 2005년도 추계학술대회 및 한일 식물생명공학 심포지엄
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    • pp.95-105
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    • 2005
  • Transposon-mediated insertional mutagenesis provides one of the most powerful tools for functional studies of genes in higher plants. This project has been performed to develop a large population of insertional mutations, and to construct databases of molecular information on Ds insertion sites in rice. Ultimate goals are to supply genetic materials and information to analyze gene function and to identify and utilize agronomically important genes for breeding purpose. Two strategies have been employed to generate the large scale of transposon population in a Japonica type rice, Dongjin Byeo; 1) genetic crosses between Ac and Ds lines and 2) plant regeneration from seeds carrying Ac and Ds. Our study showed that over 70% of regenerated plants generally carried independent Ds elements and high activity of transposition was detected only during regeneration period. Ds-flanking DNA amplified from leaf tissues of F2 and T1 (or T2) plants have been amplified via TAIL-PCR and directly sequenced. So far, over 65,000 Ds lines have been generated and over 9,500 Ds loci have been mapped on chromosomes by sequence analysis. Database of molecular information on Ds insertion sites has been constructed, and has been opened to the public and will be updated soon at http://www.niab.go.kr. Detailed functional analysis of more than 30 rice mutants has been performed. Several Ds-tagged rice genes that have been selected for functional analysis will be briefly introduced. We expect that a great deal of information and genetic resources of Ds lines would be obtained during the course of this project, which will be shared with domestic and international rice researchers. In addition to the Japonica rice, we have established the tagging system in an rice line of indica genetic background, MGRI079. MGRI079 (Indica/Japonica) was transformed with Agrobacteria carrying Ac and Ds T-DNA vectors. Among transgenic lines, we successfully identified single-copy Ds and Ac lines in MGR1079. These lines were served as ‘starter lines’ to mutagenize Indica genetic background. To achieve rapid, large scale generation of Ds transposant lines, MGR1079 transformants carrying homozygous Ac were crossed with ones with homozygous Ds, and $F_2$seeds were used for plant regeneration. In this year, over 2,000 regeneration plants were grown in the field. We are able to evaluate the tagging efficiency in the Indica genetic background in the fall.

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Current status on global sweetpotato cultivation and its prior tasks of mass production (세계 고구마 재배현황 및 대량생산의 선결과제)

  • Kim, Ho Soo;Lee, Chan-Ju;Kim, So-Eun;Ji, Chang Yoon;Kim, Sung-Tai;Kim, Jin-Seog;Kim, Sangyong;Kwak, Sang-Soo
    • Journal of Plant Biotechnology
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    • 제45권3호
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    • pp.190-195
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    • 2018
  • Sweetpotato [Ipomoea batatas (L.) Lam] represents an attractive starch crop that can be used to facilitate solving global food and environmental problems in the $21^{st}$ century. It can be used as industrial bioreactors to produce various high value-added materials, including bio-ethanol, functional feed, antioxidants, as well as food resources. The non-profit Center for Science in the Public Interest (CSPI) announced sweetpotato as one of the ten 'super foods' for better health, since it contains high levels of low molecular weight antioxidants such as vitamin-C, vitamin-E and carotenoids, as well as dietary fiber and potassium. The United States Department of Agriculture (USDA) also reported that sweetpotato is the best bioenergy crop among starch crops on marginal lands, that does not affect food security. The Food and Agriculture Organization (FAO) estimated that world population in 2050 will be 9.7 billion, and require approximately 1.7 times more food than today. In this respect, sweetpotato will be a solution to solving problems such as food, energy, health, and environment facing the globe in the $21^{st}$ century. In this paper, the current status of resources, and cultivation of sweetpotato in the world was first described. Development of a new northern route of the sweetpotato and its prior tasks of large scale cultivation of sweetpotato, were also described in terms of global food security, and production of high-value added biomaterials.

Antimicrobial Effects and Antioxidative Activities of the Cosmetic Composition Having Natural Plant Pigments (천연색소 함유 화장료 조성물의 항균효과 및 항산화활성)

  • Boo, Hee-Ock;Shin, Ji-San;Hwang, Sung-Jin;Bae, Chun-Sik;Park, Su-Hyun
    • Korean Journal of Plant Resources
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    • 제25권1호
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    • pp.80-88
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    • 2012
  • This study was conducted to clarify the antimicrobial effects and radical scavenging activities of the cosmetic compositions having the natural plant pigments, and to enhance the natural materials utilization of cosmetics. The antimicrobial activities of the fifteen kinds of cosmetic composition having natural plant pigments were evaluated using the agar diffusion method. Most of the cosmetic composition having the natural pigments showed the clear zone formation of growth inhibition against Bacillus subtilis, Staphylococcus aureus, Listeria monocytogenes, Vibrio parahaemolyticus and Aspergillus flavus. Especially, purple sweet potato, bitter melon, mulberry leaf and gromwell showed the higher antimicrobial activities. All the cosmetic compositions were evaluated for their antioxidant activity using DPPH radical scavenging capacity and nitrite scavenging ability activity. Both of the free radical DPPH and nitrite scavenging ability was the highest in the cosmetic compositions of onion peel, and these antioxidant activity was significant differences according to different plant pigments. In this study, we conjectured that the plant pigment had the potent biological activities, therefore these plant resources having functional components could be a good materials for development into source of natural cosmetics.

Performance analysis of an experimental plant factory

  • Ryu, Dong-Ki;Kang, Sin-Woo;Chung, Sun-Ok;Hong, Soon-Jung
    • Korean Journal of Agricultural Science
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    • 제40권4호
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    • pp.395-403
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    • 2013
  • Plant factory has drawn attention in many countries in the world due to capability of environmental control not only for better yield and quality, but also for increase in functional and medicinal components of the products. In this paper, an experimental plant factory was constructed for various tests under different environmental conditions, and the operations were evaluated. A production room was constructed with adiabatic materials with dimensions of $6,900{\times}3,000{\times}2,500$ mm ($L{\times}W{\times}H$). Four sets of $2,890{\times}600{\times}2,320$ mm ($L{\times}W{\times}H$) production frame unit, each with 9 light-installed beds and an aeroponic fertigation system, resulting in 36 beds, were prepared. Accuracy and response were evaluated for each environmental control component with and without crops. Air temperature, humidity, $CO_2$ concentration, light intensity, frequency, and duty ratio, fertigation rate and scheduling were controllable from a main control computer through wireless communication devices. When the plant factory was operated without crop condition, the response times were 8 minutes for change in temperature from 20 to $15^{\circ}C$ and 20 minutes from 15 to $20^{\circ}C$; 7 minutes for change in humidity from 40 to 65%; and 4 minutes for change in $CO_2$ concentration from 450 to 1000 ppm. When operated for 24 hours with crop cultivation; average, maximum, and minimum values of temperatures were 20.06, 20.8, and $18.8^{\circ}C$; humidity were 66.72, 69.37, and 63.73%; $CO_2$ concentrations were 1017, 1168, and 911 ppm, respectively. Photosynthetic Photon Flux Density was increased as the distance from the light source decreased, but variability was greater at shorter distances. Results of the study would provide useful information for efficient application of the plant factory and to investigate the optimum environment for crop growth through various experiments.