• Title/Summary/Keyword: soil enzymes

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Quinone Reductase Inducer from Radish Leaf Cultivated in the Soil Containing Sulfur (유황시비처리가 열무의 Quinone Reductase 유도물질 생성에 미치는 영향)

  • 김경아;노치웅;최경락;황해준;최혜선
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.33 no.6
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    • pp.946-950
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    • 2004
  • Young radishes which were grown in the soil containing sulfur increased quinine reductase (QR) activity in Hepa 1clc cells and isothiocyanate-like compound analyzed by HPLC. QR inducing activity was maximum in young radishes grown with 1,818 g/㎥ sulfur and was decreased when the soil was neutralized with lime mortar in order to improve a recovery. These results have suggested that consumption of young radishes, especially grown in the presence of sulfur, would prevent from cancer incidence through inducing detoxification enzymes and could have therapeutic effects for chemoprevention.

Isolation, Cloning and Co-Expression of Lipase and Foldase Genes of Burkholderia territorii GP3 from Mount Papandayan Soil

  • Putra, Ludwinardo;Natadiputri, Griselda Herman;Meryandini, Anja;Suwanto, Antonius
    • Journal of Microbiology and Biotechnology
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    • v.29 no.6
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    • pp.944-951
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    • 2019
  • Lipases are industrial enzymes that catalyze both triglyceride hydrolysis and ester synthesis. The overexpression of lipase genes is considered one of the best approaches to increase the enzymatic production for industrial applications. Subfamily I.2. lipases require a chaperone or foldase in order to become a fully-activated enzyme. The goal of this research was to isolate, clone, and co-express genes that encode lipase and foldase from Burkholderia territorii GP3, a lipolytic bacterial isolate obtained from Mount Papandayan soil via growth on Soil Extract Rhodamine Agar. Genes that encode for lipase (lipBT) and foldase (lifBT) were successfully cloned from this isolate and co-expressed in the E. coli BL21 background. The highest expression was shown in E. coli BL21 (DE3) pLysS, using pET15b expression vector. LipBT was particulary unique as it showed highest activity with optimum temperature of $80^{\circ}C$ at pH 11.0. The optimum substrate for enzyme activity was $C_{10}$, which is highly stable in methanol solvent. The enzyme was strongly activated by $Ca^{2+}$, $Mg^{2+}$, and strongly inhibited by $Fe^{2+}$ and $Zn^{2+}$. In addition, the enzyme was stable and compatible in non-ionic surfactant, and was strongly incompatible in ionic surfactant.

$\beta$-Amylase System Capable of Hydrolyzing Raw Starch Granules from Bacillus polymyxa No. 26 and Bacterial Identification

  • SOHN, CHEON-BAE;MYUNG-HEE KIM;JUNG-SURL, BAE;CHEORL-HO KIM
    • Journal of Microbiology and Biotechnology
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    • v.2 no.3
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    • pp.183-188
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    • 1992
  • A soil bacterium which produces raw starch-digesting $\beta$-amylase in culture medium, has been screened from soils. One strain, isolated and identified as Bacillus polymyxa No. 26, was selected as a $\beta$-amylase producing bacterium. Morphological and biological characteristics of the strain were found to be similar to those of a strain belonging to B. polymyxa. The electron microscopic observations of the bacterial vegetative cells and sporulated cells were extensively done to know the corelation between the enzyme synthesis and sporulation. When the bacterium was cultured on the appropriate media (3% dextrin, 0.3% beef extract, 0.5% polypeptone, 1% yeast extract and 0.3% NaCl at pH 7.0 for 4 days) raw starch-digestible $\beta$-amylase was produced extracellularly. This strain produced 130 units of $\beta$-amylase per ml in a culture medium containing 3% dextrin at $30^\circ{C}$. This value is compared to those of other $\beta$-amylase-producing strains. The optimum pH and temperature for crude enzymes were pH 6.5 to 7.0 and $50^\circ{C}$, respectively. The enzymes were stable between pH 5.5 and 9.0 for 30 min at $45^\circ{C}$.

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Bacterial community structure of paddy fields as influenced by heavy metal contamination

  • Tipayno, Sherlyn;Samaddar, Sandipan;Chatterjee, Poulami;Halim, MD Abdul;Sa, Tongmin
    • Proceedings of the Korean Society of Crop Science Conference
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    • 2017.06a
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    • pp.245-245
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    • 2017
  • Heavy metal pollution of agricultural soils affects land productivity and has impact on the quality of surrounding ecosystem. Soil microbial community parameters are used as reliable indices for assessing quality of agricultural lands under metal stress. This study investigated bacterial community structure of polluted and undisturbed paddy soils to elucidate soil factors that are related to alteration of bacterial communities under conditions of metal pollution. No obvious differences in the richness or diversity of bacterial communities were observed between samples from polluted and control areas. The bacterial communities of three locations were distinct from one another, and each location possessed distinctive set of bacterial phylotypes. The abundances of several phyla and genera differed significantly between study locations. Variation of bacterial community was mostly related to soil general properties at phylum level while at finer taxonomic levels concentrations of arsenic and lead were significant factors. According to results of bacterial community functional prediction, the soil bacterial communities of metal polluted locations were characterized by more abundant DNA replication and repair, translation, transcription and nucleotide metabolism pathway enzymes while amino acid and lipid metabolism as well as xenobiotic biodegradation potential was reduced.Our results suggest that the soil microbial communities had adapted to the elevated metal concentrations in the polluted soils as evidenced by changes in relative abundances of particular groups of microorganisms at different taxonomic resolution levels, and by altered functional potential of the microbial communities.

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Direct Antimicrobial Activity and Induction of Systemic Resistance in Potato Plants Against Bacterial Wilt Disease by Plant Extracts

  • Hassan, M.A.E.;Bereika, M.F.F.;Abo-Elnaga, H.I.G.;Sallam, M.A.A.
    • The Plant Pathology Journal
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    • v.25 no.4
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    • pp.352-360
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    • 2009
  • The potential of three plants extracts, to protect potato plants against bacterial wilt caused by Ralstonia solanacearum was determined under greenhouse and field conditions. All soil drenching treatments of aqueous plant extracts of Hibsicus sabdariffa, Punica granatum and Eucalyptus globulus significantly reduced the disease severity compared with inoculated control. Although the applications of all three plant extracts resulted in similar reductions of disease severity in field up 63.23 to 68.39%, treatment of E. globulus leaf extract was found greater in restricting the symptom development than other the two plant extracts in the greenhouse. More than 94% reduction in the bacterial wilt symptom was observed in potato plants. All tested plant extracts were effective in inhibiting the growth of bacterial pathogen, not only in vitro, but also in stem of potato plants as compared with the inoculated control Potato plants treated with extract of H. sabdariffa reduced bacterial growth more effectively than treatment with P. granatum and E. globulus. Activity of defence-related enzymes, including peroxidase, polyphenoloxidase and phenylalanine ammonia lyase, were significantly increased in plants treated with the plant extracts compared to the control during the experimental period. In general, the higher enzymes activities were determined in both inoculated and non-inoculated treated potato plants after 8 days from plant extracts treatment. These results suggested that these plant extracts may be play an important role in controlling the potato bacterial wilt disease, through they have antimicrobial activity and induction of systemic resistance in potato plants.

Expression and Characterization of Fibrinolytic Enzyme Activity During Earthworm Tail Regeneration (지렁이 꼬리 재생시 발현되는 피브리노겐 분해효소의 활성과 특성에 관한 연구)

  • Tak, Eun-Sik;Cho, Sung-Jin;Kim, Jae-Young;Lee, Kyu-Seok;Park, Soon-Cheol
    • The Korean Journal of Soil Zoology
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    • v.4 no.2
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    • pp.101-106
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    • 1999
  • Fibrinolytic enzyme is thought to be involved in extracellular matrix remodeling during regeneration. We investigated the expression and characterization fibrinolytic enzyme activity during earthworm tail regeneration. Electrophoretic analysis of fibrinolytic enzymes induced during regeneration revealed that at least seven types of fibrinolytic enzymes were expressed, which had molecular weight of 12, 19, 23, 27, 32, 45 and 58 kDa, respectively. These fibrinolytic enzyme activities were dramatically increased within 1 day after amputation. These activities were maintained by 7 days postamputation, followed by decrease to control level from 14 days after amputation. Alltypes of fibrinolytic enzyme activities were inhibited by treatment of PMSF and aprotinin, and were insensitive to EDTA and exogenous Ca$^{2+}$. These results indicate that the fibrinolytic enzymes are serineproteinase. Other characteristics including specificities for extracellular matrix proteins are under investigation. Based on these results, we are trying to find out the relationship among expression of proteinases, extracellular matrix remodeling, and dedifferentiation, which are believed to be essential processes during regeneration.

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Korean-Style No-tillage Organic Agriculture on Recycled Ridge IV. Changes in Soil Microorganisms and Enzymes by Split Irrigation and Organic Matter Application in Organic Farming of Red Pepper in Plastic Film Greenhouse (두둑을 재활용한 한국형 무경운 유기 농업 IV. 분할관수와 유기물처리에 의한 시설 고추 유기재배 토양 미생물상과 토양 효소의 변화)

  • Yang, Seung-Koo;Shin, Kil-Ho;Song, Yong-Su;Kim, Kil-Yong;Jung, Woo-Jin
    • Korean Journal of Organic Agriculture
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    • v.25 no.2
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    • pp.311-328
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    • 2017
  • This study was carried out to investigate the changes in soil microorganisms and soil enzymes by split irrigation and organic matter application under no-tillage green house conditions. Soil bacteria and fungi abundances were higher in soybean cake fertilizer than in the soil without the soybean cake fertilizer under whole quantity irrigation. Bacteria and fungi abundances in soil increased with increasing organic fertilizer application rate. Bacteria and fungi amount in the soil increased at half division irrigation in no-treatment of soybean cake fertilizer compared with whole quantity irrigation. Actinomycete amount in the soil decreased with increasing soybean cake fertilizer with whole quantity irrigation while clearly increased in no-treatment of soybean cake fertilizer. Actinomycete amount in soil clearly increased with increasing organic fertilizer input at half division irrigation. Chitinase activity in the soil decreased in soybean cake fertilizer with increasing organic fertilizer input, while increased in no-treatment of soybean cake fertilizer. Chitinase activity in the soil increased at half division irrigation compared with whole quantity irrigation regardless of soybean cake fertilizer input. ${\beta}$-Glucosidase activity in the soil was higher in soybean cake fertilizer than in no-treatment of soybean cake fertilizer with whole quantity irrigation. ${\beta}$-Glucosidase activity in the soil increased with increasing organic fertilizer input, but decreased in above the standard level 66%. ${\beta}$-Glucosidase activity in the soil clearly increased in no-treatment of soybean cake fertilizer at half division irrigation compared with whole quantity irrigation. N-acetyl-${\beta}$-D-glucosaminidase activity was higher in soybean cake fertilizer than in no-treatment of soybean cake fertilizer with whole quantity irrigation. N-acetyl-${\beta}$-D-glucosaminidase activity in the soil increased with increasing organic fertilizer input, but decreased in above the standard level 66%. N-acetyl-${\beta}$-D-glucosaminidase activity in the soil was not significantly different at half division irrigation and whole quantity irrigation in organic fertilizer input, while increased at half division irrigation in no-treatment of soybean cake fertilizer. Acid phosphatase activity increased at standard level 66% in soybean cake fertilizer, while was not significantly different in no-treatment of soybean cake fertilizer. Spore density of Arbuscular Mycorrhizal Fungi (AMF) in the soil increased with increasing organic fertilizer input at whole quantity irrigation in no-treatment of soybean cake fertilizer, while decreased above the standard level 66% in organic fertilizer input. However, spore density of AMF in the soil was not significantly different in soybean cake fertilizer regardless of input amount of organic fertilizer. Root colonization rate of AMF in red pepper roots was not significant difference at two irrigations regardless of soybean cake input.

Effects of Composted Pig Manure Application on Enzyme Activities and Microbial Biomass of Soil under Chinese Cabbage Cultivation (돈분퇴비의 시용이 토양의 미생물체량 및 효소활성에 미치는 영향)

  • Weon, Hang-Yeon;Kwon, Jang-Sik;Shin, Yong-Kwang;Kim, Seung-Hwan;Suh, Jang-Sun;Choi, Woo-Young
    • Korean Journal of Soil Science and Fertilizer
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    • v.37 no.2
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    • pp.109-115
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    • 2004
  • To elucidate the effects of composted pig manure on soil biochemical properties, composted pig manure was amended in a sandy loam soil and Chinese cabbage was grown. Composted pig manure treatments included 8, 29 and $57Mg\;ha^{-1}$ for CM-08, CM-29, and CM-57 plots, respectively. Biomass contents and enzymes activities in the non-rhizophere soil were measured. Activities of protease, phosphomonoesterase and dehydrogenase in the plot CM-57 increased to 2.3, 1.6, and 2.4 fold as compared with those of the control plot. Soil microbial biomass contents increased in proportion to the application rates of compost and biomass C, N, and P in the plot CM-59 were 4.3, 3.4, 2.8-fold higher than those of control p1ot(no fertilizer), respectively. During cultivation of Chinese cabbage, biomass C and N were higher in the middle growth stage, although biomass P was the highest in the early growth stage. The average ratio of biomass C:N:P was 11:2:1, and proportion of biomass C and N in the soil organic C and N was 1.1 and 3.6%, respectively. Activities of protease and dehydrogenase had significant correlations with biomass C and P.

Effect of Soil Moisture and Texture on Saikosaponins Content and Antioxidative Enzyme Activities in Bupleurum falcatum L. (재배토양의 수분 및 토성이 시호의 생육상황 및 항산화효소 활성에 미치는 영향)

  • 정형진;신동현;이인중;권순태;임종국;유정민;정규영;김길웅
    • Korean Journal of Plant Resources
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    • v.13 no.2
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    • pp.95-103
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    • 2000
  • To study the effects of soil moisture and texture on characteristics of growth, content of saikosaponins and activity of antioxidative enzymes in Bupleurum falcatum L., content of saikosaponins(a, c and d) and activities of superoxide dismutase(SOD) and peroxidase(POD) were investigated with two Bupleurum genotypes(Jangsoo and Samdo). Two Bupleurum genotypes were grown under different soil moisture(deficit, normal, surplus) and soil texture(sandy, sandy loam, loam) conditions. Among the tested soil conditions, dry weight accumulation rate of both cultivars could be ranked in the order surplus > normal > deficit soil for soil moisture and sandy > sandy loam > loam for soil texture. Under the surplus soil condition, growth retardation of Samdo cultivar was more severer than that of Jangsoo. Furthermore, content of saikosaponin a, d, and c also could be ranked in the order deficit > normal > surplus and sandy > sandy loam > loam for soil moisture and texture, respectively. Although both Jangsoo and Samdo cultivars grown under water deficit condition showed the highest POD and SOD activity, in general POD and SOD activity in both shoot and root was remarkably high in Jangsoo cultivar compared with Samdo. Saikosaponin content of root was positively correlated with POD and SOD. However, shoot and root length were negatively correlated with POD.

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The Soil Removal of Artificially Soiled Fabrics with Commercial Detergents at Various Washing Conditions (시판 세제를 사용하여 세척 조건에 따른 인공오염포의 세척성)

  • Chung, Hae-Won;Kim, Mi-Kyung
    • Fashion & Textile Research Journal
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    • v.9 no.6
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    • pp.671-678
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    • 2007
  • Formulations of compact and supercompact heavy-duty detergents, which are being used widely around the world, differ from those of conventional heavy-duty detergents. Significant differences in composition exist between the compact detergents and the conventional detergents. The compact detergents have a higher content of surfactants, oxygen bleach and enzymes than the conventional detergents. We have studied to find the most effective washing conditions of artificially soiled cloths with a commercial, supercompact, heavy-duty detergent and a drum type washing machine which is becoming the preferred type in Korea. Moreover, we have studied the washing performance with an impeller type washing machine, which has heretofore been the most popular type in East Asia. With the drum-type washing machine, washing performances improved as the washing temperatures went up and the washing times were lengthened. Though the rate of soil removal with a double recommended dosage was higher than with the recommended amount at $20^{\circ}C$, the effects of the higher dosage decreased as the washing temperatures increased. Finally, the washing performances with the two different dosages were the same at $60^{\circ}C$. The washing performances at $40^{\circ}C$ with the recommended dosage for 90 minutes were the same as with the double recommended dosage for 45 minutes. The soil removal efficiencies with the impeller-type washing machine were much lower than those of the drum-type washing machine. The reasons for this were the higher bath ratio that led to the lower concentration of wash liquor, the shorter washing time, and the lower washing temperature.