• Title/Summary/Keyword: 토양 미생물상(土壤 微生物相)

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Effects of Rice Straw on the Microflora in Submerged Soil -III. Microflora in Relation to Nitrogen Fixation and Acetylene Reducing Activity (볏짚시용(施用)이 논토양(土壤)의 미생물상(微生物相)에 미치는 영향(影響) -III. 질소고정(窒素固定)에 관여(關與)하는 미생물상(微生物相)과 질소고정능(窒素固定能))

  • Kim, Yong-Woong;Kim, Kwang-Sik
    • Korean Journal of Soil Science and Fertilizer
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    • v.17 no.4
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    • pp.399-405
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    • 1984
  • The results of these experiments which were carried out to investigate the effects of rice straw for nitrogen metabolism and acetylene reducing activity, during rice plants were cultured under the percolated condition, are as follows. Azotobacter had tendency to increase with the passage of time, but decreased when rice straw was added. Population change of Clostridia was little as rice grew. Blue green algae increased until heading stage but decreased after the stage. And the application of rice straw increased the number of microorganisms. Thiorhodaceae were never detected, but yeast tended to increase slightly with passing time. Acetylene reducing activity was increased with increasing the number of nitrogen fixing microorganisms, and nitrogen fixing activity was between 0.2kg N/10 a and 0.4kg N/10 a during the growing season of rice plants. Though acetylene reducing activity was promoted by the use of rice plants on non-plant area, but the activity was not clearly affected by percolation.

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Effects of Fowl Dropping, Saw Dust and Rice Hull on Soil Microflora in vitro (실내배양에서 생계분, 톱밥 및 왕겨 첨가가 토양미생물상에 미치는 효과)

  • Yang, Chang-Sool;Kong, Hye-Suk
    • Korean Journal of Soil Science and Fertilizer
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    • v.29 no.1
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    • pp.53-59
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    • 1996
  • This study was conducted to evaluate the effects of fowl dzopping. saw dust and rice hall on the soil microflora in vitro. The experiment was designed in seven treatments with the various organic materials and they were only soil (control). soil + fowl dropping (S+F), soil+fowl dropping+rice hull (S+F+R) soil+fowl dropping*saw dust (S+F+S). soil+chemical fertilizer (S+C.F), fowl dropping+rice hull (F+R) and fowl dropping+saw dust (F+S). All the samples of treatment were incubated in $28{\pm}2^{\circ}C$ condition and tested the activity of soil microflora for 84 days The activity of fungi, total bacteria, gram-negative bacteria and actinomycetes showed the highest values at, twenty-first day and the spore-forming bacteria was at forty-second day after incubation. The number of fungi and gram-negative bacteria showed the highest values in the treatment of F+S, the spore-forming bacteria and the actinomycetes were in the S+F+S. and the number of total bacteria was in the F+C.F., but in the treatment of F+R. all the microorganism except fungi showed the lowest values in their numbers. The composition ratio of dead bacteria was higher in the treatments of S+F+R and F+R than in those of others as 70% and 40% respectively. Actinomycetes isolated from the treatments of S+F and S+F+S were identified as Streptomyces sp.. Nocardia sp., Micromonospora sp. Actinomadura sp. and Saccharomonospora sp.

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Changes of Physico-chemical Properties and Microflora of Pig Manure due to composting with some Bulking Agents (보조재료별 돈분 퇴비화 과정중 이화학적 특성과 미생물상 변화)

  • Lee, Jong-Tae;Nam, Yeun-Gyu;Lee, Jin-Il
    • Korean Journal of Soil Science and Fertilizer
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    • v.34 no.2
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    • pp.134-144
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    • 2001
  • This study was conducted to investigate physicochemical and microbiological properties during composting process when pig manure was composted with some bulking agents(Saw dust, Rice hull, Crushed wood). The pig manure consisted of 2.95% total nitrogen, 4.55% $P_2O_5$, 2.07% $K_2O$, 81.2% organic matter and 14.0 C/N, dry base. The inorganic content of bulking agents were similar one another, and C/N ratio was Saw dust 392. Rice hull 91.5, Crushed wood 266. The temperature of Saw dust composting slowly increased at initial stage, whereas one of Rice hull and Crushed wood rapidly increased and stabilized similarly to outdoor temperature after about 2 month. The pH of compost increased during initial 1 month after decreasing, but thereafter decreased rapidly. The C/N ratio rapidly decreased at initial stage, and it slowly decreased after 1 month. Total nitrogen somewhat increased according to composting process. Ammonium-nitrogen increased until 60th day, and thereafter it was rapidly inclined to decrease. The population of aerobic bacteria, Bacillus spp., actinomycetes and fungi increased up to > $10^{10}cfu\;g^{-1}$ fresh weight, > $10^7$, > $10^8$ and > $10^6$, respectively in Rice hull and Crushed wood composting, and more than ones in Saw dust composting, and specially actinomycetes. The persuasive Bacillus spp. isolated from composting process were B. lentimorbus, B. licheniformis, B. pumilus, B. megaterium, etc.

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Soil Microflora and Microfauna in 29 Years of N-P-K Fertilizer Omission Plot (N-P-K 비료 29년 결제구에서의 미생물상 연구)

  • Jo Chae-Hee;Yu Sun-Nam;Kim Dong-Geun
    • Research in Plant Disease
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    • v.12 no.2
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    • pp.108-114
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    • 2006
  • This study was conducted to elucidate the interactions among soil microorganisms in a special field where one, two or three of N, P, K fertilizers were continuously not applied for 29 years. Crop yield (barley, soybean), soil chemical properties and microflora and microfauna including nematodes, nematophagous fungi, actinomycetes, bacteria, and fungi were examined for two years. Tylenchorhynchus sp. was the most important plant-parasitic nematode (range $11{\sim}642/300 cm^3$ soil) followed by Pratylenchus sp. and Helicotylenchus sp. Among nematophagous fungi, Monacrosporium spp. was the most frequently found followed by Harposporium sp. and Cystopage sp. In general, plots treated with phosphate fertilizer yielded more, had more nematodes, bacteria and actinomycetes. In contrast, total fungal population densities including nematophagous fungi, Cystopage sp. and Harposporium sp. were in reverse; they were more abundant in the plots with lower phosphate contents. Phosphate and pH are positively correlated and two most important determining factors for the population density of soil organisms under investigation. According to correlation analysis, Ca, Mg, and $SiO_2$ contents in soil and population densities of Tylenchorhynchus sp., saprophitic nematodes, actinomycetes, and bacteria were positively correlated with pH, but were negatively correlated with fungal population densities. We hope that the study will add an additional knowledges to understand our mysterious underworld.

Effects of the continuous cultivating years of the hot-pepper, sesame and peanut on yields and soil microorganism (연작년수(連作年數)가 고추, 참깨 및 땅콩의 수량(收量)과 토양미생물상(土壤微生物相)에 미치는 영향(影響))

  • Chung, Chi-Ho;Jeon, Jang-Hyeob;Kim, Hee-Kweon;Park, Keon-Ho
    • Korean Journal of Soil Science and Fertilizer
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    • v.22 no.1
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    • pp.67-71
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    • 1989
  • The experiment was conducted to investigate the effects of the continuous cultivating periods of the hot-pepper, sesame and peanut on yields and soil microorganism from 1985 to 1988 in field. The results obtained were as follows: 1. Continuous cultivating decreased soil pH by 0.1 to 0.9 per year and soil hardness and bulk density increased. 2. Continuous cultivating increaded incidence of disease and number of nematodes. 3. The bacteria-fungi ratio of hot-pepper, sesame and peanut in continuous cultivation for 4 years were 29.6, 30.7 and 12.0 respectively. 4. The yields of hot-pepper, sesame and peanut in continuous cultivation for 4 years decreased by 39%, 33% and 23%, respectively, in comparion to 1 year cultivation.

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Effects of Condensed Molasses Soluble on Chemical and Biological Properties of Soil, and Nitrogen Mineralization (당밀농축용액이 토양의 화학 및 생물학적 성질과 질소의 무기화에 미치는 영향)

  • Kang, Gwan-Ho;Kang, Byung-Hwa;Park, Ki-Do;Chung, Keun-Yook;Sohn, Bo-Kyoon;Ha, Ho-Sung;Heo, Jong-Soo;Cho, Ju-Sik
    • Korean Journal of Soil Science and Fertilizer
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    • v.37 no.2
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    • pp.124-130
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    • 2004
  • This study was carried out to evaluate the effects of condensed molasses soluble (CMS) treatment on the mineralization of N, chemical properties and soil microbial population under the incubation condition with unsaturated water content during the 7 weeks at $25^{\circ}C$ in the different levels of CMS application. The results indicated that the total nitrogen content of soil was increased with increasing application rate of CMS and this trend was maintained up to 7 weeks. With CMS treatment content of $NH_4-N$ was gradually decreased. However, the content of $NO_3-N$ in the soil was gradually increased with incubation time due to the nitrification under the unsturated water condition. The CMS treatment increased the microbial populations such as bacteria, actinomycetes and fungi, which may be due to the availability of more nutrients such as amino acids, sugars and other minor elements from CMS. The pH of soil was found to be reduced by the addition of CMS, Whereas, electrical conduvtivity of soil was correspondingly increased with increasing application rate of CMS.

The Effect of Long-term Application of different Organic Material Sources on Soil Physical Property and Microflora of Upland Soil (유기물원이 다른 퇴비연용이 밭토양의 물리성 및 미생물상 변화에 미치는 영향)

  • Kim, Jong-Gu;Lee, Sang-Bok;Kim, Seong-Jo
    • Korean Journal of Soil Science and Fertilizer
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    • v.34 no.5
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    • pp.365-372
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    • 2001
  • The objective of this study was to determine the effects of various kinds of composts on the change of soil physical properties and microorganism in upland soils. Field experiments were conducted in the loam and sandy loam soils, while the clay loam and sandy loam soils were used for laboratory experiments. Various kinds of composts such as poultry manure compost(PMC). cow manure compost(CMC). human excrement sludge(HES), and food industrial sludge compost(FISE) were applied annually at rates of 0, 40, and $80Mg\;ha^{-1}$ to soils grown with soybean and maize plants for 4 years during 1994 to 1997. The results of this study were as follows : Bulk density of loam soil decreased with compost application to $1.07{\sim}1.32Mg\;m^{-3}$ compared with $1.49Mg\;m^{-3}$ of control plot, while in sandy loam soil it decreased to $1.00{\sim}1.20Mg\;m^{-3}$ compared with $1.25Mg\;m^{-3}$ of control plot. Bulk density of soil was decreased according to maize cultivation compared with bare control, but soybean cultivation was similar. Population of organic material decomposing microorganisms was increased rapidly at the initial incubation stage at $25^{\circ}C$, and increased more sensitively at the loam soil than sandy loam soil. In the case of the change of microorganisms associated with nitrogen circulation, ammonia oxidizing bacteria was more at the initial incubation stage, and denitrifying bacteria was more at the initial incubation stage, and denitrifying bacteria increased until 1~4 weeks after incubation and increased more at the loam soil than sandy loam soil.

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Soil Microbial Flora and Chemical Properties as Influenced by the Application of Pig Manure Compost (돈분퇴비의 시용이 배추재배지 토양의 미생물상 및 화학성에 미치는 영향)

  • Weon, Hang-Yeon;Kwon, Jang-Sik;Suh, Jang-Sun;Choi, Woo-Young
    • Korean Journal of Soil Science and Fertilizer
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    • v.32 no.1
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    • pp.76-83
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    • 1999
  • Studies were conducted during 2 months from May of 1997 to evaluate the effects of pig manure compost(PMC) on soil microbial flora. To do so, a field experiment of Chinese cabbage(Brassica campestris L.) was conducted in a randomized block design on a sandy loam soil and microbial floral characteristics in soils were analyzed. Treatments to control included the application of PMC at (A) $8Mg\;ha^{-1}$CM-8), (B) $29Mg\;ha^{-1}$(CM-2,9), and (C) $57Mg\;ha^{-1}$(CM-57), and of chemical fertilizer(D) at $320N-80P_2O_5-200K_2O\;kg\;ha^{-1}$(NPK). In each treatment, the rhizosphere and non-rhizosphere soils were tested for the analysis of microbial populations. The populations of bacteria, actinomycetes, and fungi increased in soils with the applications of PMC and chemical fertilizer, but that of Bacillus sp. decreased. However, the population of fluorescent Pseudomonas sp. was reduced in NPK plots only. With increasing application rates of PMC, the number of colony forming units(cfu) of bacteria (Pseudomonas sp. and actinomycetes) and fungi increased. in all PMC-treated plots, the population density peaked at early growth stage for bacteria(including Bacillus sp.), at late growth for fluorscent Pseudomonas sp., and at harvest for fungi and actinomycetes. The rhizosphere effect was greatest for fluorscent Pseudomonas sp. As the application rates of PMC increased, Total N, organic matter, available phosphate, and exchangeable -K, -Ca, and -Mg increased compared to control, but soil pH was lowered. In NPK plots, EC was 3.4-fold and exchangeable K was 5-fold higher than control.

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The Influence of Pesticides on Some Chemical and Microbiological Properties Related to Soil Fertility II. Effects of CNP Herbicide on Soil Microflora (농약제(農藥劑)의 시용(施用)이 토양(土壤)의 비옥성(肥沃性) 및 미생물상(微生物相)에 미치는 영향(影響) II. CNP 제초제시용(除草劑施用)이 토양미생물(土壤微生物) flora에 미치는 효과(效果))

  • Ryu, Jin-Chang;Araragi, Michio;Koga, Hiroshi
    • Korean Journal of Soil Science and Fertilizer
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    • v.17 no.1
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    • pp.67-76
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    • 1984
  • This experiment was conducted to find out the changes in microflora of submerged soil uncultivated rice plant by application of CNP herbicide (2, 4, 6 - Trichlorophenyl-4-Nitrophenyl ether) under conditions applied with compost, rice straw, glucose or without organic material. The soil, sandy loam textured was incubated in green house for 66 days. Sampling and analysis of microorganisms were carried out during submergence periods. The results were summarilized as follows. 1. Number of aerobic total bacteria was increased by application of CNP herbicide during submerbed 50 days, afterthen, could not seen the difference. The application of rice straw increased number of aerobic bacteria regardless of CNP herbicide application or not, but glucose tended to decrease. 2. Number of Fungi was constantly maintained at $8-20{\times}10^3$ levels during period of submergence regardless of application of CNP herbicide and organic materials or not. 3. The CNP herbicide application tended to decrease the number of actinomycetes, particularly, in the treatments without organic substances and rice straw were remarkably decreased. 4. Anaerobic-and gram-negative bacteria populations were not showed any difference by application of herbicide and organic materials. 5. The ratios of aerobic bacteria to fungi and aerobic bacteria to actinomycetes appeared high values by application of herbicide and of organic substances. 6. At 66 days after submergence, the ratio of chromogenic actinomycetes to the total number of actinomycetes was lowered in application of herbicide. On the other hand, the percentage of both pretense-positive and cellulase-positive actinomycetes to the total isolates were higher in the treatment with herbicide than An without herbicide, particularly. The ratios of pretense-positive actinomycetes were high in the rice straw application regardless of herbicide application or not, but cellulase-positive actinomycetes was not remarkably difference.

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Evaluation of Soil Microflora in Salt Accumulated Soils of Plastic Film House (염유집적(鹽類集積) 시설재배지(施設栽培地)의 토양미생물상(土壤微生物相) 평가(評價))

  • Kwon, Jang-Sik;Suh, Jang-Sun;Weon, Hang-Yeon;Shin, Jae-Sung
    • Korean Journal of Soil Science and Fertilizer
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    • v.31 no.2
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    • pp.204-210
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    • 1998
  • The experiment was conducted to obtain the basic data required to characterize and improve rhizosphere environment of salt-accumulated greenhouse(SAG) soils by comparing the soil properties and the microbial flora of such soils to those of unprotected arable upland(UAU) soils. Soils were sampled from greenhouses and unprotected upland fields around the country. Microbial propulation, biomass C content and soil chemical properties were of interest. Population density of fluorescent Pseudomonas was high in UAU soils, while those of pathogenic Fusarium sp. and fluorescent Pseudomonas were low in SAG soils. With increasing soil organic matter(OM) content, the population densities of Bacillus sp., fluorescent Pseudomonas sp., Enterobacteriaceae, and microbial biomass C content increased. As soil electrical conductivity(EC) increased higher than $5.1dS\;m^{-1}$, the ratios of bacteria to fungi(B/F) and actinomycetes to fungi(A/F) and the population density of fluorescent Pseudomonas decreased remarkably. The soil pH was positively related to the population density of aerobic bacteria, while it was negatively related to that of fungi. The soil OM content was significantly correlated to the population densities of actinomycetes($r=0.226^*$). Bacillus sp.($r=0.334^{**}$), Enterobacteriaceae($r=0.276^*$), and the microbial biomass C content($R=0.439^{**}$). The population density of actinomycetes was also significantly correlated with soil exchangeable Ca($r=0.334^{**}$) and Mg($r=0.352^{**}$).

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