• Title/Summary/Keyword: Microbial growth

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A Study on the Growth Characteristics of Multi-layer Planted Trees through Growth Analysis - With a Focus on Seoul Forest Park -

  • Kim, Han Soo;Ban, Soo Hong
    • 한국환경생태학회지
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    • 제29권2호
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    • pp.279-291
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    • 2015
  • This study analyzed the growth characteristics of multi-layer planted trees through their growth analysis and attempted to present a management strategy. The subject of research is the Citizen's Forest Area of Seoul Forest Park located in Seoul City. Field surveys were conducted three times over eight years from 2005 when the Seoul Forest Park was created through 2013. Labels were attached to all trees in the target area, and their species, height and DBH were investigated. To identify the growth differences by trees in each area, a detailed tree location map was drawn up for use in the analysis. To check soil health, soil organic matter, soil pH and soil microbial activities were analyzed. It turned out that the growth of the multi-layer planted trees in the target area of research was higher than that of the trees in existing urban parks, and that it was similar to that of trees in natural forests. Through a field survey in the area with a remarkably low growth, high-density planting problem, soil was found to have excess-moisture and there was the problem of Pueraria lobata covering. As a result of the analysis of the soil, it was found that its organic content in the soil was lower; soil pH was higher; and microbial activities in the soil were lower when compared to that of natural forests.

Nature of a Root-Associated Paenibacillus polymyxa from Field-Grown Winter Barley in Korea

  • RYU CHOONG-MIN;KIM JINWOO;CHOI OKHEE;PARK SOO-YOUNG;PARK SEUNG-HWAN;PARK CHANG-SEUK
    • Journal of Microbiology and Biotechnology
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    • 제15권5호
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    • pp.984-991
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    • 2005
  • Soil or seed applications of plant growth-promoting rhizobacteria (PGPR) have been used to enhance growth of several crops as well as to suppress the growth of plant pathogens. In this study, we selected a PGPR strain, Paenibacillus polymyxa strain E681, out of 3,197 heat-stable bacterial isolates from winter wheat and barley roots. Strain E681 inhibited growth of a broad spectrum plant pathogenic fungi in vitro, and treatment of cucumber seed with E681 reduced incidence of damping-off disease caused by Pythium ultimum, Rhizoctonia solani, or Fusarium oxysporum. When inoculated onto seeds as vegetative cells or as endospores, E681 colonized whole cucumber root systems and root tips. Different temperatures such as $20^{\circ}C\;and\;30^{\circ}C$ did not affect root colonization by strain E681. This colonization was associated with a consistent increase in foliar growth of cucumber in the greenhouse. These results indicate that strain E681 is a promising PGPR strain for application to agricultural systems, particularly during the winter season.

하수슬러지 처리에서 미생물과 메탄올 적용을 통한 암모니아 배출 감소 및 식물 성장 향상 연구 (Reducing Ammonia Emissions and Enhancing Plant Growth through Co-application of Microbes and Methanol in Sewage Sludge Treatment)

  • 김진원;양희건;양희종;류명선;하광수;정수지;이수영;서지원;정도연
    • 한국환경복원기술학회지
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    • 제26권2호
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    • pp.13-24
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    • 2023
  • Sewage sludge has been widely used as an organic fertilizer in agriculture. However, sewage sludge can cause serious malodor problems resulting from the decomposition of organic compounds in anaerobic conditions. The malodor of sewage sludge mainly occurs due to a low carbon to nitrogen ratio (C/N), high moisture, and low temperature, which are ideal conditions for ammonia emissions. Therefore, in this study, we investigated the reduction of the odor-causing ammonia nitrogen (NH3-N) in sewage sludge by co-application of microbes and methanol (MeOH). The physico-chemical properties of the municipal sewage sludge showed that the odor was mainly caused by a higher NH3-N content (2932.2 mg L-1). Supplementation with MeOH (20%) as a carbon source in the sewage sludge significantly reduced the NH3-N up to 34.2% by increasing C/N ratio. Furthermore, the sewage sludge was treated with the NH3-N reducing and plant growth promoting (PGP) bacteria Stenotrophomonas rhizophila SRCM 116907. The treatment with S. rhizophila SRCM 116907 significantly increased the seedling vigor index of Lolium perenne (10.3%) and Chrysanthemum burbankii (42.4%). The findings demonstrate that supplementing sewage sludge with methanol significantly reduces ammonia emissions, thereby mitigating malodor problems. Overall, the study highlights the potential of using a microbial and methanol approach to improve the quality of sewage sludge as an organic fertilizer and promote sustainable agriculture.

MICROBIAL COLONISATION AND DEGRADATION OF SOME FIBROUS CROP RESIDUES IN THE RUMEN OF GOATS

  • Ho, Y.W.;Abdullah, N.;Jalaludin, S.
    • Asian-Australasian Journal of Animal Sciences
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    • 제9권5호
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    • pp.519-524
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    • 1996
  • An investigation was carried out to study the microbial colonization and degradation of five crop residues, viz., sago waste, rice straw, oil palm trunk shavings, untreated palm press fibre and palm press fibre teated with 3% ammonium hydroxide in the rumen of goats. Colonisation by rumen bacteria and fungi was already established on all the five crop residues 8 h after incubation. However, the extent of colonization varied among the crop residues. Microbial colonization was poor on palm press fibre (treated and untreated) but more extensive on sago waste, oil palm trunk shavings and rice straw. By 24 h, most of the soft-walled tissues in sago waste, rice straw and oil palm trunk shavings were degraded leaving the thick-walled tissues extensively colonized by bacteria and fungi. Degradation on palm press fibre was still limited. At 48 h, the thick-walled tissues of sago waste, oil palm trunk shavings and rice straw showed various degrees of degradation - from small erosion zones to large digested areas. Bacterial growth was similar to that at 24 h but fungal growth was less. On palm press fibre, microbial colonization was more extensive than at 24 h but degradation of the fibres was still limited. Degradation of all the five crop residues at 72 h was somewhat similar to that at 48 h. Overall, microbial colonization and degradation were the most extensive on sago waste, followed by rice straw and oil palm trunk shavings, and the least on palm press fibre (treated and untreated). Dry matter loss of the five crop residues at the various incubation periods also showed the same order of degradation.

미생물 연료전지 영속발전 지표개발 (Sustainability Indices (=Green Star) for Microbial Fuel Cell)

  • 송하근;구자공
    • 유기물자원화
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    • 제23권2호
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    • pp.47-52
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    • 2015
  • 미생물연료전지(MFC)는 미생물의 촉매 반응을 통해 다양한 유기물로부터 전기를 얻을 수 있는 장치이다. MFC는 여러 분야로 응용이 가능하며 현재 생산되는 전력이 낮기 때문에 상용화가 되기 위해서는 미생물연료전지의 성능을 증진시키는 연구가 필요하다. 현재 연료전지에 비해 MFC의 성능이 낮은 이유로는 미생물 분해시간이 오래 걸린다는 점과 음극에서 산소 환원의 과정에서 과전압이 상당히 높기 때문이다. MFC는 전력량이 미흡하지만 많은 요인들을 고려하면 신재생에너지로써 현재 일반적으로 사용 하고 있는 이온교환막인 Nafion 117 대비 전력밀도가 PP(Poly Propylene) 80에서 약 11배 높은 저비용의 미세 다공성 부직포로 변경하여 하 폐수를 처리하는데 드는 비용을 절감시키면서 전력을 발생시키는 친환경적인 에너지원이 될 수 있을 것이다. 모든 폐기물은 미생물의 먹이로 작용할 수 있다는 점에서 미생물 연료 전지의 지속가능성은 무한하다. 본 논문에서는 미생물연료전지의 구성, 운전 매개변수의 최적화 및 성능에 대한 최근 연구를 고찰하고 SSaM-GG(Smart, Shared, and Mutual-Green Growth) 또는 GG-SSaM =(Green Growth - Smart, Shared, and Mutual)라는 개념을 통하여 MFC의 지속가능한 발전에 대한 중간지표들을 개발하고자하는 바이다.

삼림토양의 미생물군집과 아밀라아제 활성에 관한 연구 (Studies on the Microbial Population and the Amylase Activity of the Forest Soil)

  • Lee, Hee-Sun;Shim, Jae-Kuk
    • The Korean Journal of Ecology
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    • 제17권2호
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    • pp.171-183
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    • 1994
  • Soil condition, total number of bacteria, soil amylase activity and microbial biomass $(CO_2-C)$ were measured at soil of different forest types. And the difference of the allelopathic effect was determined between fresh leaf extract of Quercus acutissima and Pinus rigida to the bacteria isolated from soil of different forest types. 1. Total number of bacteria in Carpinus laxiflora forest soil was 4~7 times larger than that in pinus desiflora forest soil. 2. Soil amylase activity was positively correlated with total number of soil bacteria and soil organic matter content. The amylase activity at F layer was 4~5 times larger than that at H layer, and that at H layer was 2~4 times larger than that at A layer. 3. Seasonal changes of microbial biomass showed a peak in summer, and vertical distribution of microbial biomass decreased with increasing soil depth. The microbial biomass in Pinus densiflora forest soil was larger than that in Quercus serrata forest soil. 4. Fresh leaf extract of Pinus rigida and Quercus acutissima showed an acceleration or inhibition effect on the growth of soil bacteria, and that of !. acutissima inhibited larger number of soil bacterial strains than that of P. rigida. 4.2% and 25% of soil bacterial strains isolated from soil of P. rigida and Q. acutissima forests were inhibited by fresh leaf extract of P. rigida and Q. acutissima, respectively.

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RO 농축수내 고농도 염분이 생물학적 폐수처리공정내 미생물 순응/배양에 미치는 영향평가 (Evaluation of the Effect of High Salinity RO Concentrate on the Microbial Acclimation/Cultivation Characteristics in Biological Wastewater Treatment Process)

  • 김연권;강석형
    • 환경영향평가
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    • 제21권5호
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    • pp.707-713
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    • 2012
  • There are a lot of parameters affecting microbial acclimation/cultivation characteristics such as dynamic conditions, F/M ratio and substrate affinity. From the process control point of view, the effect of high salinity on the removal efficiencies of BOD and SS have been documented by few researchers. In this research, lab-scale CAS(Conventional Activated Sludge) process and modified $A_2O$(Anaerobic/Anoxic/Oxic) process were operated and monitored to evaluate the characteristics of microbial acclimation and cultivation under high salinity wastewater during the period of three weeks. As a result of acute microbial activity test(6hr) at various $Cl^-$ concentration, the appropriate $Cl^-$ concentration for microbial growth and acclimation ranged under 3,100 mg/l. As a result of acclimation/cultivation test, the trend of COD removal efficiency reduced gradually as time elapsed. It is considered that $NH_4$-N removal phenomenon of the conventional pollutants removal mechanisms gave little effect to the microbial acclimation/cultivation under high salinity wastewater.

Effects of radon on soil microbial community and their growth

  • Lee, Kyu-Yeon;Park, Seon-Yeong;Kim, Chang-Gyun
    • Environmental Engineering Research
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    • 제25권1호
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    • pp.29-35
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    • 2020
  • The aim of this study was to estimate the microbial metabolic activity of indigenous soil microbes under the radon exposure with different intensity and times in the secured laboratory radon chamber. For this purpose, the soil microbes were collected from radon-contaminated site located in the G county, Korea. Thereafter, their metabolic activity was determined after the radon exposure of varying radon concentrations of 185, 1,400 and 14,000 Bq/㎥. The average depth variable concentrations of soil radon in the radon-contaminated site were 707, 860 and 1,185 Bq/㎥ from 0, 15, and 30 cm in deep, respectively. Simultaneously, the soil microbial culture was mainly composed of Bacillus sp., Brevibacillus sp., Lysinibacillus sp., and Paenibacillus sp. From the radon exposure test, higher or lower radiation intensities compared to the threshold level attributed the metabolic activity of mixed microbial consortium to be reduced, whereas the moderate radiation intensity (i.e. threshold level) induced it to the pinnacle point. It was decided that radon radiation could instigate the microbial metabolic activity depending on the radon levels while they were exposed, which could consequently address that the certain extent of threshold concentration present in the ecosystem relevant to microbial diversity and population density to be more proliferated.

The Phylotype of Thermus from the Rehai Geothermal Area, Tengchong, China

  • Guo, Chunlei;Wang, Tao;Zhu, Wei;Zhang, Donghua;Cui, Xiaolong;Xu, Lihua;Peng, Qian
    • Journal of Microbiology
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    • 제41권2호
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    • pp.152-156
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    • 2003
  • Through enrichment on two nutrient agars, 57 Thermus isolates were recovered from 15 hot spring samples taken from the Rehai geothermal area, Tengchong, China. Unique growth characteristics were observed when the strains were transferred from YIM14 medium to Thermus medium. Phylogenetic analysis showed that the 16S rDNA sequences of the isolates and clones from the Rehai geothermal area farmed a monophyletic group on the phylogenetic tree. A secondary structure comparison showed that their 16S rRNAs have unique secondary structure characteristics.

Effect of Non-indigenous Bacterial Introductions on Rhizosphere Microbial Community

  • Nogrado, Kathyleen;Ha, Gwang-Su;Yang, Hee-Jong;Lee, Ji-Hoon
    • 한국환경농학회지
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    • 제40권3호
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    • pp.194-202
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    • 2021
  • BACKGROUND: Towards achievement of sustainable agriculture, using microbial inoculants may present promising alternatives without adverse environmental effects; however, there are challenging issues that should be addressed in terms of effectiveness and ecology. Viability and stability of the bacterial inoculants would be one of the major issues in effectiveness of microbial pesticide uses, and the changes within the indigenous microbial communities by the inoculants would be an important factor influencing soil ecology. Here we investigated the stability of the introduced bacterial strains in the soils planted with barley and its effect on the diversity shifts of the rhizosphere soil bacteria. METHODS AND RESULTS: Two different types of bacterial strains of Bacillus thuringiensis and Shewanella oneidensis MR-1 were inoculated to the soils planted with barley. To monitor the stability of the inoculated bacterial strains, genes specific to the strains (XRE and mtrA) were quantified by qPCR. In addition, bacterial community analyses were performed using v3-v4 regions of 16S rRNA gene sequences from the barley rhizosphere soils, which were analyzed using Illumina MiSeq system and Mothur. Alpha- and beta-diversity analyses indicated that the inoculated rhizosphere soils were grouped apart from the uninoculated soil, and plant growth also may have affected the soil bacterial diversity. CONCLUSION: Regardless of the survival of the introduced non-native microbes, non-indigenous bacteria may influence the soil microbial community and diversity.