• 제목/요약/키워드: production activity

검색결과 7,901건 처리시간 0.031초

Methyl jasmonate가 토마토(Lycopersicon esculentum Mill.)하배축 절편과 열매에서 에틸렌 생성에 미치는 영향 (Effects of Methyl Jasmonate on Ethylene Producton in Tomato (Lycopersicon esculentum Mill.) Hypocotyl Segments and Fruits)

  • June Seung Lee
    • Journal of Plant Biology
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    • 제38권3호
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    • pp.235-242
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    • 1995
  • Effects of methyl jasmonate (MeJA) on ethylene production in tomato(Lycopersicon esculentum Mill.) hypocotyl segments and fruits were studied. Ethylene production in tomato hypocotyl segments was inhibited by the increasing concentratons of MeJA, and 450 $\mu$M of MeJA showed 50% inhibitory effect. Time course data indicate that this inhibitory effect of MeJA appeared after 3 h of incubation period and continued until 24 h. Inhibition of ethylene producton by MeJA was due to the decrease in 1-aminocyclopropane-1-carboxylic acid(ACC) synthase activity. However, MeJA treatment had no effect on ACC oxidase activity and the accumulaton of ACC oxidase mRNAs. MeJA also inhibited auxin-induced ethylene production by decreasing in ACC synthase activity. In contrast, MeJA stimulated ethylene production in tomato fruits. When 30 $\mu$L/mL MeJA was treated in a gaseous state, ethylene production doubled and this stimulating effect continued until 4 days. To investigate the mechanisms of MeJA on ethylene production, ACC synthase and ACC oxidase activities were examined after MeJA treatment. MeJA increased the activities of both ACC synthase and ACC oxidase, and induced ACC oxidase mRNA accumulation. These data suggest that MeJA plays distinct roles in the ethylene production in different tomato tissues. It is possible that MeJA affects differently the mechanisms of signal transuction leading to the ethylene biosynthesis.

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Raw 264.7 세포에서 유해산소 생성에 미치는 Caffeic Acid의 영향 (Effect of Caffeic Acid on the Production of Reactive Oxygen Species in Raw 264.7 Cells)

  • 최병철
    • 약학회지
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    • 제52권6호
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    • pp.441-445
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    • 2008
  • To investigate effect of caffeic acid on the intracellular reactive oxygen species production, we used DHE for intracellular superoxide anion production, DCF for intracellular ${H_2}{O_2}$ production and DHR for intracellular hydroperoxide production in Raw 264.7 cells. DPPH assay showed that antioxidant activity of caffeic acid with 39.5 ${\mu}M$ of ${IC}_{50}$ values was similar to that of ascorbic acid with 41.3 ${\mu}M$ of ${IC}_{50}$ values. Caffeic acid dose-dependently inhibited silica-induced ${H_2}{O_2}$ and hydroperoxide production but did not affect superoxide anion production in Raw 264.7 cells, which suggest that antioxidant effect of caffeic acid acts on the post-step of superoxide anion. On the other hand, caffeic acid showed a potent antioxidant effect in $lCuSO_4$-induced lipid peroxidation. Furthermore, plasma superoxide dismutase activity (3.43${\pm}$0.23 U/ml) in 10 mg/kg caffeic acid-fed mice was significantly higher than that (2.32${\pm}$0.24 U/ml) of control. From the above results, it is referred that caffeic acid appears to have potent anti-oxidant activity in both cell system and in vivo system.

Bacillus subtilis EK11로부터 Protopectinase 생산을 위한 배지성분의 영향 (Effect of Medium Composition on Protopectinase Production from Bacillus subtilis EK11)

  • 이대희;박은경;문철환;하정욱;이승철;황용일
    • 한국미생물·생명공학회지
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    • 제27권5호
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    • pp.378-384
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    • 1999
  • Protopectinase (PPases) are heterologous group of enzymes that degrade pectin from the insoluble protopection which is constituent of the middle lamella and primary cell wall of higher plants by restricted depolymerization. From the previous report[6], enzymatically separated plant cells, which are produced from plant tissues by PPases treatment, showed well-conserved cellular components with their rigid cell wall and this characteristic is applicable to preparation of novel food material. The purpose of this study is to investigate the effect of medium composition of PPase production from Bacillus subtilis EK11 which was selected as a PPase producer. Various carbon sources and concentrations on PPase production were studied and corn starch at 0.7% was the most effective for production of PPase. Among the nitrogen sources, yeast extract was the most effective for PPase production and the effect of (NH4)2SO4 was notable as inotganic nitrogen source. Inorganic compounds such as KH2PO4, K2HPO4, Na3-citrate.2H2O and MgSO4 were optimized for PPase production. PPase activity was inhibited by the adition of Ba2+ or Zn2+. The optimal medium for PPase production was devised: 0.7% corn starch, 0.3% yeast extract, 1.4% KH2PO4, 0.6% K2HPO4, 0.1% Na3-citrate.2H2O and 0.02% MgSO4. PPase production by using the optimum medium was carried out with shaking cultivation at 37$^{\circ}C$. The maximum PPase activity of 256unit/ml could be obtained after the cultivation for 48hrs. The activity was increased about 2.2timesthan the activity, 112 unit/ml, in basal medium.

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Bacillus sp. CS-17의 색소 생성조건 및 색소 농축액의 항균특성 (Conditions for the Pigment Production by Bacillus sp. CS-17 and Antibacterial Activity of Pigment Concentrated Extracts)

  • 손동화;권오진;최웅규;정영건
    • Applied Biological Chemistry
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    • 제41권3호
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    • pp.213-218
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    • 1998
  • 전통 대두발효식품으로부터 색소 생성능과 protease 활성이 가장 강한 균을 선별하여 Bacillus sp. CS-l7로 동정하였다. CS-17 균의 균체증식은 배양 24시간, protease 활성은 배양 48시간, 그리고 색소 생성은 배양 72시간 후 최대에 달하였다. Bacillus sp. CS-17은 대두분말을 1.0% 첨가한 색소 생성용 기본배지에서 가장 높은 색소 생성능을 가지는 것으로 나타났다. 배양조건이 Bacillus sp. CS-17의 색소 생성에 미치는 효과를 조사한 결과, pH 8.5에서 $37^{\circ}C$, 72시간 배양하였을 때 최적의 색소 생성을 보였다. NaCl의 첨가는 색소 생성능을 억제하는 것으로 나타났다. 이상의 결과로 Bacillus sp. CS-17의 색소 생성 최적조건은 $37^{\circ}C$, pH 8.5에서 72시간동안 배양하였을 때로 추정되었다. 그람 양성균 5주 및 그람 음성균 6주에 대하여 색소 농축액의 항균활성을 paper disc법으로 조사한 결과, B. subtilis, P. aeruginosa, S. typhimurium, E. aerogenes, B. cereus, A. hydrophila의 성장에 대한 항균효과가 인정되었으나 그 활성은 전반적으로 미약하였다.

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미강 및 밀기울 추출물의 항산화 활성 및 항염증 효과 (Antioxidant Activities and Anti-inflammatory Effects of Rice Bran and Wheat Bran Extracts)

  • 문정선;최성숙;이숙연;임동술
    • 생약학회지
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    • 제46권2호
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    • pp.140-147
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    • 2015
  • The antioxidative activities and anti-inflammatory effects of rice bran and wheat bran were investigated. To determine the antioxidant activity, total phenolic content. DPPH reaction, ABTS reaction and FRAP assay were tested. To investigate the anti-inflammatory effect, the inhibition of NO production, IL-6 production and TNF-${\alpha}$ production were observed. The total phenolic contents were 46.4 mg/g in the BuOH fraction of rice bran (RBB) and 69.0 mg/g in BuOH fraction of wheat bran (WBB). EtOAc fraction of rice bran (RBE), EtOAc fraction of wheat bran (WBE), RBB and WBB showed high radical scavenging activity at a concentration of 5 mg/ml. Scavenging activity of DPPH radical were 89.04% in RBB and 91.53% in WBE. Scavenging activity of ABTS radical were 88.53% in RBB and 90.39% in WBB. In case of FRAP assay, RBE reduced 0.805 mM/mg of Fe2+ and WBE reduced 1.521 mM/mg of Fe2+. RBB, RBE, WBB and WBE showed concentration dependent inhibition of LPS induced NO production (RBE: 57.38%, WBE: 76.85%), IL-6 production (RBE: 92.08%, WBB: 92.57%), TNF-α production (RBE: 86.33%, WBE: 85.05%) at a concentration of 100 μg/ml of each fraction. These results showed that RBB, RBE, WBB and WBE have strong antioxidative activities and anti-inflammatory effects and show the possibilities of a new natural antioxidants and anti-inflammatory medicines.

Solid-State Fermentation for the Production of Meroparamycin by Streptomyces sp. strain MAR01

  • El-Naggar, Moustafa Y.;El-Assar, Samy A.;Abdul-Gawad, Sahar M.
    • Journal of Microbiology and Biotechnology
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    • 제19권5호
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    • pp.468-473
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    • 2009
  • The antibiotic meroparamycin was produced in the free culture system of Streptomyces sp. strain MAR01. Five solid substrates (rice, wheat bran, Quaker, bread, and ground corn) were screened for their ability to support meroparamycin production in solid-state fermentation. In batch culture, wheat bran recorded the highest antibacterial activity with the lowest residual substrate values. The highest residual substrate values were recorded for both ground corn and Quaker. On the other hand, no antibacterial activity was detected for rice as a solid substrate. The use of the original strength of starch-nitrate medium in the solid-state fermentation gave a lower antibacterial activity compared with the free culture system. Doubling the strength of this medium resulted in the increase in the activity to be equivalent to the free culture. The initial pH (7.0) of the culture medium and 2 ml of spore suspension (1 ml contains $5{\times}10^{9}spores/ml$) were the optima for antibiotic production. The water was the best eluent for the extraction of the antibiotic from the solid-state culture. Ten min was enough time to extract the antibiotic using a mixer, whereas, 60 min was required when shaking was applied. Semicontinuous production of meroparamycin using a percolation method demonstrated a more or less constant antibacterial activity over 4 runs ($450-480{\mu}g/ml$). The semicontinuous production of the antibiotic was monitored in a fixed-bed bioreactor and the maximum activity was attained after the fourth run ($510{\mu}g/ml$) and the overall process continued for 85 days.

Paenibacillus sp. DG-22로부터 xylanase 생산의 최적화 (Optimization of Xylanase Production from Paenibacillus sp. DG-22)

  • Lee, Yong-Eok
    • 생명과학회지
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    • 제13권5호
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    • pp.618-625
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    • 2003
  • 목재 저장소의 토양에서 분리된 호열성 세균인 Paenibacillus sp. DG-22로부터 xylanase를 생산하기 위한 배양조건을 최적화시키기 위해 연구를 수행하였다. Xylanase생산은 세포의 생장과 연관된 양상을 나타내었다. Xylanase 활성은 배양상청액에서만 발견된 반면 $\beta-xylosidase$활성은 주로 세포와 결합되어 있었다. Xylanase활성의 형성은 자일란에 의해 유도되었고 포도당과 자일로스에 의해서 억제되었다. 여러 상업적 자일란을 이용하여 xylanase의 생산양상을 조사한 결과 0.1-0.5%의 birchwood xylan에서 가장 높은 생산율을 나타내었다. 조사된 여러 질소 원들 중 효모추출물이 xylanase생산을 위하여 최적이었다. xylanase의 활성은 $Co^{2+},\; Cu^{2+},\; Fe^{3+},\; Hg^{2+}\;$$\; Mn^{2+}$ 이온들에 의하여 억제된 반면 $Ca^{2+},\; Mg^{2+},\; Ni^{2+},\; Zn^{2+}$ 이온들과 DTT에 의해서는 촉진되었다. 수은은 5 mM의 농도에서 xylanase 활성을 완전히 파괴하였다. 자일란 가수분해의 주된 산물은 자일로바이오스, 자일로트라이오스 그리고 자일로 올리고당이었고 이것은 이 효소가 endoxylanase라는 것을 나타낸다.

Anti-Biofilm Effect of Egg Yolk Phosvitin by Inhibition of Biomass Production and Adherence Activity against Streptococcus mutans

  • Kim, Hyeon Joong;Lee, Jae Hoon;Ahn, Dong Uk;Paik, Hyun-Dong
    • 한국축산식품학회지
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    • 제40권6호
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    • pp.1001-1013
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    • 2020
  • The formation of biofilms on the enamel surface of teeth by Streptococcus mutans is an important step in dental plaque formation, demineralization, and early caries because the biofilm is where other bacteria involved in dental caries attach, grow, and proliferate. The objectives of this study were to determine the effect of phosvitin (PSV) on the biofilm formation, exopolysaccharides (EPS) production, adherence activity of S. mutans, and the expression of genes related to the compounds essential for biofilm formation (quorum-sensing inducers and components of biofilm matrix) by S. mutans. PSV significantly reduced the biofilm-forming activity of S. mutans and increased the degradation of preformed biofilms by S. mutans. PSV inhibited the adherence activity of S. mutans by 31.9%-33.6%, and the production of EPS by 62%-65% depending upon the strains and the amount of PSV added. The expressions of genes regulating the production of EPS and the quorum-sensing-inducers (gtfA, gtfD, ftf, relA, vicR, brpA, and comDE) in all S. mutans strains were down-regulated by PSV, but gtfB was down-regulated only in S. mutans KCTC 5316. Therefore, the anti-biofilm-forming activity of PSV was accomplished through the inhibition of biofilm formation, adherence activity, and the production of quorum-sensing inducers and EPS by S. mutans.

밀리타리스 동충하초(Cordyceps militaris)의 면역 활성에 미치는 영향 (Effects of Cordyceps militaris on Immune Activity)

  • 강인순;김혜주;이태호;권용삼;손미원;김채균
    • 약학회지
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    • 제58권2호
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    • pp.81-90
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    • 2014
  • In order to determine the functional benefits of Cordyceps militaris in the immune system, we examined the immunomodulatory activities of C. militaris using an immunocompromised C57BL/6 mice, mouse spleen cells, RAW 264.7 macrophage cells, and A549 lung carcinoma cells. Mice were injected intraperitioneally with an immunosuppressive drug, cyclophosphamide, and then administered orally with 30, 100 and 300 mg/kg of 50% ethanol extract of C. militaris (CME 30, CME 100 and CME 300) for 14 days. CME increased splenocyte proliferation and natural killer (NK) cell activity compared to 3% hydroxypropyl methylcellulose-treated control mice. CME also increased the production of Th1 cytokines, IL-2 and TNF-${\alpha}$ in spleen cells isolated from CME-injected mice and in vitro, which suggested the enhanced cellular immunity in response to CME. CME also increased splenocyte proliferation, NK cell activity, and IL-2 and TNF-${\alpha}$ production compared to 1 ${\mu}M$ methotrexate-treated spleen cells in vitro. We examined whether C. militaris regulates the production of inflammatory mediators in LPS-stimulated RAW 264.7 cells. CME inhibited LPS-induced NO production and iNOS expression in a dose dependent manner, while COX-2 expression was remained unchanged. In addition, CME also has free radical scavenging activity, indicating its antioxidant activity. These results indicate that C. militaris enhances immune activity by promoting immune cell proliferation and cytokine production.

Caffeic Acid의 항산화 활성 및 Amyloid beta와 LPS에 의한 C6 Glial 세포의 산화적 스트레스 보호 효과 (Antioxidant Activity and Protective Effect of Caffeic Acid against Oxidative Stress Induced by Amyloid Beta and LPS in C6 Glial Cells)

  • 김지현;왕천;이상현;조은주
    • 생약학회지
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    • 제46권2호
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    • pp.109-115
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    • 2015
  • This study was investigated the radical scavenging effect and the protective activity of caffeic acid (CA) against oxidative stress. CA showed strong 1,1-diphenyl-2-picrylhydrazyl radical (DPPH) and hydroxyl radical ( OH) scavenging activity, showing 42.00% and 87.22% at 5 μM concentration of DPPH and ·OH scavenging activity, respectively. Furthermore, we studied protective activity of CA from amyloid beta (A${\beta}$25-35) and lipopolysaccharide (LPS) induced neuronal cell damage and neuronal inflammation using C6 glial cells. The treatment of A${\beta}$25-35 to C6 glial cell showed declines in cell viability and high generation levels of reactive oxygen species (ROS). However, the treatment of CA increased cell viability. The treatment of 5 ${{\mu}M}$ CA led to the elevation of cell viability from 59.28% to 81.22%. In addition, the production of ROS decreased cellular levels of ROS by the treatment of CA. The treatment of LPS to C6 glial cells increased significant elevation of nitric oxide (NO) production, while CA decreased NO production significantly. The production of NO increased by the treatment of LPS to 131.08%, while CA at the concentration of 1 ${{\mu}M}$ declined the NO production to 104.86%. The present study indicated thatCA attenuated A${\beta}$25-35-induced neuronal oxidative stress and inflammation by LPS, suggesting as a promising agent for the neurodegenerative diseases.