• Title/Summary/Keyword: beneficial microorganism

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The use of beneficial microorganisms to improve turfgrass quality and usability (유용미생물의 시용이 잔디의 질과 이용성에 미치는 영향)

  • 황연성;최준수
    • Asian Journal of Turfgrass Science
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    • v.13 no.4
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    • pp.201-212
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    • 1999
  • In use of pesticides in golf courses has been increased steadily. Environmental concern as well as decrease in efficiency led the turfgrass management into an alternate approach of using beneficial microorganism to deal with turfgrass pests. This study was focused on the use of such microorganisms for improving cultural environment and minimizing the use of pesticides. Microorganisms antagonistic to turfgrass diseases were applied to zoysiagrass fairways and creeping bentgrass greens in Yusung country club. Tharch accumulation, disease occurrence, and other cultural environments were compared among the combinations of microorganisms and suppliemental N applications. The application of microorganisms antagonistic to turfgrass diseases improved turf resiliency. Thatch thickness was 3.03cm in the control plot but it was 2.11cm in plots treated by microorganisms, indicating significant effects of microorganism application on reduction of thatch accumulation. Number of microorganism that can decompose of cellulose was higher at the plots treated with useful microbial products and it was considered that existence of higher population of microorganisms resulted in reduction of thatch accumulation. In the evaluation of relationship between thatch accumulation and disease occurrence, greater thatch accumulation was observed at the golf courses which have been frequently infested by large patch. However, the rate of thatch accumulation varied among surveyed golf courses regardless of the year of turf establishment. Therefore, management practice which can be effective for reduction of thatch could result in large patch suppression. The application of microorganisms on the established turfgrasses reduced the occurrence rate of pythium blight and yellow path diseases, whereas occurrence of brown patch and dollar spot increased.

Effect of Microorganism Mixture Application on the Microflora and the Chemical Properties of Soil and the Growth of Vegetables in Greenhouse (미생물혼합제제 처리가 토양의 미생물상과 화학적 특성 및 시설 채소 생육에 미치는 영향)

  • Ryu, Il-Hwan;Jeong, Su-Ji;Han, Seong-Soo
    • Korean Journal of Environmental Agriculture
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    • v.31 no.4
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    • pp.368-374
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    • 2012
  • BACKGROUND: The urgency of feeding the world's growing population while combating soil pollution, salinization and desertification requires suitable biotechnology not only to improve crop productivity but also to improve soil health through interactions of soil nutrient and soil microorganism. Interest in the utilization of microbial fertilizer has increased. A principle of nature farming is to produce abundant and healthy crops without using chemical fertilizer and pesticides, and without interrupting the natural ecosystem. Beneficial microorganisms may provide supplemental nutrients in the soil, promote crop growth, and enhance plant resistance against pathogenic microorganisms. We mixed beneficial microorganisms such as Bacillus sp. Han-5 with anti-fungal activities, Trichoderma harziaum, Trichoderma longibrachiatum with organic material degrading activity, Actinomycetes bovis with antibiotic production and Pseudomonas sp. with nitrogen fixation. This study was carried out to investigate the mixtures on the soil microflora and soil chemical properties and the effect on the growth of lettuce and cucumber under greenhouse conditions. METHODS AND RESULTS: The microbial mixtures were used with each of organic fertilizer, swine manure and organic+swine manure and compared in regard to changes in soil chemical properties, soil microflora properties and crop growth. At 50 days after the treatment of microorganism mixtures, the pH improved from 5.8 to 6.3, and the EC, $NO_3$-Na and K decreased by 52.4%, 60.5% and 29.3%, respectively. The available $P_2O_5$ and $SiO_2$ increased by 25.9% and 21.2%, respectively. Otherwise, the population density of fluorescent Pseudomonas sp. was accelerated and the growth of vegetables increased. Moreover, the population density of E. coli and Fusarium sp., decreased remarkably. The ratio of bacteria to fungi (B/F) and the ratio of Actinomycetes bovis to fungi (A/F) increased 2.3 (from 272.2 to 624.4) and 1.7 times (from 38.3 to 64), respectively. Furthermore, the growth and yield of cucumber and lettuce significantly increased by the treatment of microorganism mixtures. CONCLUSION(S): These results suggest that the treatment of microorganism mixtures improved the chemical properties and the microflora of soil and the crop growth. Therefore, it is concluded that the microorganism mixtures could be good alternative soil amendments to restore soil nutrients and soil microflora.

The Role of Probiotics in Infants and Children with Food Allergy (Probiotics와 영아와 소아의 식품 알레르기)

  • Park, Kie Young
    • Pediatric Gastroenterology, Hepatology & Nutrition
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    • v.11 no.sup1
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    • pp.127-135
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    • 2008
  • According to the hygiene hypothesis, westernized and urbanized life style leads to the increase of allergic disease. This hypothesis supports the use of probiotic therapy for the prevention or treatment of food allergy. The probiotics which contains potentially beneficial microorganism have been used for the treatment of some gastrointestinal disorders and atopic disease as dietary supplements. Many results of studies support the immunologic bases of probiotics therapy. The most important mechanism is that probiotics suppress Th2-skewed immunity as the stimulation of regulatory T cell. The difficulties of diagnosis of food allergy, variable symptoms, many kinds of microorganism, diet style and non-standardized study designs are attributed to the variety and controversy of the effectiveness of probiotics in food allergy with infant and children. More studies is needed to confirm the efficacy of probiotics in infant and children with food allergy.

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Current state of nationally secured or researched beneficial microorganisms for developing environment-friendly agriculture practice and exploration of alternative indication for sustaining freshness (친환경 농업을 위한 농업 분야 유용미생물 확보·연구 현황 및 이에 따른 농산물 선도관리 방안 탐색)

  • Park, Jong Myong;Park, Jong-Han;You, Young-Hyun
    • Journal of agriculture & life science
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    • v.50 no.1
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    • pp.1-22
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    • 2016
  • In this study, the securing state of nationally indicated beneficial microbial resources was evaluated in an aspect of bio-diversity using their taxonomical information. Depending on the analysis result with the Margalef's richness or the Mehinick's index which are representative bio-diversity analytical indices, species diversity values was revealed as 8.537, 3.546 within bacterial resources, 3.349, 2.167 within fungal resources. Several developed or researched beneficial strains and spoilage microbes showed relative taxonomical relationship with comparation of their biological information. As a result, we propose the necessity or countermeasure method for preventing the microbial spoilage with the overhauling consideration of advanced research on agricultural microbiology covering crop endophyte beneficial/spoilage microorganisms.

Effects of Storage Duration and Temperature on the Chemical Composition, Microorganism Density, and In vitro Rumen Fermentation of Wet Brewers Grains

  • Wang, B.;Luo, Y.;Myung, K.H.;Liu, J.X.
    • Asian-Australasian Journal of Animal Sciences
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    • v.27 no.6
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    • pp.832-840
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    • 2014
  • This study aimed to investigate the effects of storage duration and temperature on the characteristics of wet brewers grains (WBG) as feeds for ruminant animals. Four storage temperatures ($5^{\circ}C$, $15^{\circ}C$, $25^{\circ}C$, and $35^{\circ}C$) and four durations (0, 1, 2, and 3 d) were arranged in a $4{\times}4$ factorial design. Surface spoilage, chemical composition and microorganism density were analyzed. An in vitro gas test was also conducted to determine the pH, ammonia-nitrogen and volatile fatty acid (VFA) concentrations after 24 h incubation. Surface spoilage was apparent at higher temperatures such as $25^{\circ}C$ and $35^{\circ}C$. Nutrients contents decreased concomitantly with prolonged storage times (p<0.01) and increasing temperatures (p<0.01). The amount of yeast and mold increased (p<0.05) with increasing storage times and temperatures. As storage temperature increased, gas production, in vitro disappearance of organic matter, pH, ammonia nitrogen and total VFA from the WBG in the rumen decreased (p<0.01). Our results indicate that lower storage temperature promotes longer beneficial use period. However, when storage temperature exceeds $35^{\circ}C$, WBG should be used within a day to prevent impairment of rumen fermentation in the subtropics such as Southeast China, where the temperature is typically above $35^{\circ}C$ during summer.

Shipboard sewage treatment by Sequence Batch Reactor utilizing Beneficial Microorganisms (유용미생물을 적용한 선박오수용 SBR공정에 관한 연구)

  • Kim, In-Soo;Lee, Eon-Sung;Ha, Shin-Young;Oh, Yeom-Jae;Ekpeghere, Kelvin I.;Koh, Sung-Cheol
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2010.10a
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    • pp.36-37
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    • 2010
  • Lab scale experiment was carried out to study applicability of BM (Beneficial Microorganisms) to the conventional SBR system for the shipboard sewage treatment. BM has been successfully applied to the wastewater treatment by the SBR process and hence this system maintained a stable effluent quality together with an increased treatment efficiency, meeting the requirements of IMO regulations. The SBR system facilitated by BM would be a suitable process for cruise ships in terms of the malodor control, treatment efficiency and operation conveniences.

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Immune Disorders and Its Correlation with Gut Microbiome

  • Hwang, Ji-Sun;Im, Chang-Rok;Im, Sin-Hyeog
    • IMMUNE NETWORK
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    • v.12 no.4
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    • pp.129-138
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    • 2012
  • Allergic disorders such as atopic dermatitis and asthma are common hyper-immune disorders in industrialized countries. Along with genetic association, environmental factors and gut microbiota have been suggested as major triggering factors for the development of atopic dermatitis. Numerous studies support the association of hygiene hypothesis in allergic immune disorders that a lack of early childhood exposure to diverse microorganism increases susceptibility to allergic diseases. Among the symbiotic microorganisms (e.g. gut flora or probiotics), probiotics confer health benefits through multiple action mechanisms including modification of immune response in gut associated lymphoid tissue (GALT). Although many human clinical trials and mouse studies demonstrated the beneficial effects of probiotics in diverse immune disorders, this effect is strain specific and needs to apply specific probiotics for specific allergic diseases. Herein, we briefly review the diverse functions and regulation mechanisms of probiotics in diverse disorders.

Effect of Wormwood Ethanol Extract on Human Intestinal Microorganisms. (쑥 추출물이 인체 장내 미생물에 미치는 영향)

  • Kwon, Dong-Jin;Park, Jong-Hyun;Kwon, Min;Yoo, Jin-Young;Koo, Young-Jo
    • Microbiology and Biotechnology Letters
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    • v.27 no.2
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    • pp.102-106
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    • 1999
  • To investigate the effect of wormwood extract on intestinal Microorganisms of human, we examined the changes of the intestinal microflora of 6 volunteers for 13 days. Numbers of total anaerobes in feces of 6 volunteers showed 1010cfu/g before and after intake of wormwood extract. In case of beneficial Microorganisms, wormwood extract did not have an effect on the growth of bifidobacteria and Lactobacillus spp. On the other hand, the growth of C. perfringens and E. coli, the harmful Microorganisms of human intestines, was inhibited by the wormwood extract.

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Estimation of Dominant Bacterial Species in a Bench-Scale Shipboard Sewage Treatment Plant

  • Mansoor, Sana;Ji, Hyeon-Jo;Shin, Dae-Yeol;Jung, Byung-Gil;Choi, Young-Ik
    • Journal of Environmental Science International
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    • v.28 no.10
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    • pp.899-905
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    • 2019
  • Recently, an innovative method for wastewater treatment and nutrient removal was developed by combining the sequence batch reactor and membrane bioreactor to overcome pollution caused by shipboard sewage. This system is a modified form of the activated sludge process and involves repeated cycles of mixing and aeration. In the present study, the bacterial diversity and dominant microbial community in this wastewater treatment system were studied using the MACROGEN next generation sequencing technique. A high diversity of bacteria was observed in anaerobic and aerobic bioreactors, with approximately 486 species. Microbial diversity and the presence of beneficial species are crucial for an effective biological shipboard wastewater treatment system. The Arcobacter genus was dominant in the anaerobic tank, which mainly contained Arcobacter lanthieri (8.24%), followed by Acinetobacter jahnsonii (5.81%). However, the dominant bacterial species in the aerobic bioreactor were Terrimonas lutea (7.24%) and Rubrivivax gelatinosus (4.95%).

Current status and prospect of novel food materials developed by using biotechnology (바이오기술을 이용한 식품소재 개발의 국내·외 현황 및 전망)

  • Yoo, Sang-Ho
    • Food Science and Industry
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    • v.52 no.2
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    • pp.171-187
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    • 2019
  • Novel food materials can be produced based on biotechnology such as genetic recombination, microbial fermentation, and enzymatic engineering by utilizing living organisms such as animal, plant, and microorganism or by applying the enzymes isolated from them. Especially, exploration and development of novel prebiotics and probiotics attracted great attention worldwide in the food industry, of which the research and industrial trends in food biotechnology field are promoting the production of next generation sweeteners and proliferation of beneficial bacteria in gastrointestinal tract. Development and commercialization of novel food materials by domestic bioprocessing technology have been sluggish due to the GMO/LMO food safety issues. Meanwhile, the US and EU do not perceive badly about gene manipulation technology, and the research is most active in the fields of crops and GMMs, respectively. Genetic scissors, which are considered as next generation technology, are notable since foreign genes do not remain in final products.