• 제목/요약/키워드: rhizosphere environment

검색결과 104건 처리시간 0.023초

지표종을 이용한 생태계 위해성평가 (Ecosystem Risk Assessment Using the Indicator Species)

  • 장진수;김경웅
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제12권1호
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    • pp.103-115
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    • 2007
  • 생태계 위해성평가는 유해물질의 노출로 인한 생태계 교란, 생물 공생의 파괴 및 부적합한 서식조건에 의한 생물집단구조의 문제를 적절히 평가할 수 있어야 한다. 초기의 위해성 평가는 오염의 수준을 숫자로 표기하여 단일된 공식으로 평가하였으나, 현재 이러한 평가는 실제로 생태계에 미치는 위해성을 평가하는데는 부적합하다. 따라서 지표종을 이용한 생태 위해성평가는 이러한 단점을 극복하며 육안적 지표의 변화 뿐만 아니라 유전자 수준에서의 변화까지도 감지함으로써 위해성 평가의 폭을 넓힐 수 있게 한다. 국외의 경우 오염의 평가 및 오염 지역 복원의 평가기준으로 여러 지표종을 이용하고 있으며, 여러 지표종을 국가 차원에서 종합적으로 관리하며 오염으로 인한 변화를 유전자 돌연변이 및 암발생 수준까지 연구함으로써 생태계 위해성 평가를 하는 추세이다. 국내의 경우에도 점차 지표종을 이용한 유해성 평가 연구가 진행되고 있으며, 오염물질의 인체에서의 발암 메커니즘, 동물실험을 통한 발암 메커니즘에까지 그 영역이 확대되고 있다. 본 논문에서는 현재까지 이용되는 여러 지표종을 개략적으로 살펴보고, 중금속으로 오염된 폐광산에서 발견된 생지표종인 고사리, 지렁이, 미생물 및 도룡뇽의 변화를 생태계 위해성 평가에 활용되어진 다양한 예가 소개되어 질 것이다.

간척지 토양에서 양액의 전기전도도가 비트 및 순무의 생장에 미치는 영향 (Effects of Electro-conductivity on Growth of Beet and Turnip in the Reclaimed Land Soil)

  • 조지영;성호영;천진혁;박종석;박상언;박영준;김선주
    • 한국환경농학회지
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    • 제37권3호
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    • pp.197-206
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    • 2018
  • BACKGROUND: The present study aimed to examine the crops capable of growing and adapting to the external environment and various stresses of reclaimed agriculture land for the development of high value-added agricultural utilization technology based on reclaimed land through standardization and empirical study of cultivation environment for cultivating crops. METHODS AND RESULTS: Two crops namely turnips and beets were selected for the salt tolerance test of soil environmental conditions on reclaimed land. Turnip and beet seedlings were planted on the soil collected at the 'Seokmun' reclaimed land. There are five treatments such as non-treatment, 1.0, 2.0 (control), 4.0 and $8.0dS{\cdot}m^{-1}$ of EC. The contents of betacyanin in beet roots was highest in control and decreased with increasing salt concentration. The GSL contents in the turnip roots waswere highest at EC 2.0 and decreased with increasing salt concentration, whereas those in turnip leaves waswere high both in the non-treated control and atthe EC 1.0-treatment. But, tThere was, however, no statistical differences among the treatments. CONCLUSION: The degree of salt tolerance of crops was examined, and the limit EC iswas expected to be $3.0{\sim}4.0dS{\cdot}m^{-1}$ as reported to date. If the soil improvement is performed and irrigation systems are used in the actual reclaimed land, the EC of supplied irrigation will be low, and desalination effecttreatment by the lower EC of the supplied irrigation on the soil will lead to more favorable soil condition of the rhizosphere and cultivation environment offor the crops than those in the port experiment. Therefore, monitoring the salinity, water content and ground water level will enable prediction of the rhizosphere environment, and setting up irrigation management and supplying irrigation will lead to crop cultivation results that are close to normal.

인공습지에서 오염물질 제거기작 및 국내외 연구동향 (Removal Mechanisms for Water Pollutant in Constructed Wetlands: Review Paper)

  • 고대현;정윤철;서성철
    • 대한환경공학회지
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    • 제32권4호
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    • pp.379-392
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    • 2010
  • 최근 국내에서 인공습지는 하 폐수처리장 방류수의 후처리, 비점오염원 관리, 생태하천 복원 등 다양한 용도로 적용되고 있다. 그러나 인공습지가 설치되는 지역의 기후, 유입수의 특성, 지역적 특성 등에 따라 매우 영향을 많이 받기 때문에 인공습지 내에서의 오염물질의 제거기작은 확실하게 이해되고 있지는 않다. 그러므로, 이 연구에서는 인공습지 내에서 질소, 인을 중심으로 한 오염물질의 제거기작을 중심으로 살펴보았다. 그 결과, 질소 제거의 주된 기작은 인공습지 내의 근권(rhizosphere)에서의 질산화/탈질에 의한 것으로 판단되며, 인 제거의 주된 기 작은 인공습지내 여재 등의 기층(substrate)에서의 흡착에 의한 것으로 판단된다. 그러나, 인공습지내의 인의 거동은 산화/환원 전위(ORP), 흡착/탈착, 미생물의 작용 등에 따라 다양한 형태를 가질 수 있는 것으로 판단된다.

Zinc-Solubilizing Streptomyces spp. as Bioinoculants for Promoting the Growth of Soybean (Glycine max (L.) Merrill)

  • Chanwit Suriyachadkun;Orawan Chunhachart;Moltira Srithaworn;Rungnapa Tangchitcharoenkhul;Janpen Tangjitjareonkun
    • Journal of Microbiology and Biotechnology
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    • 제32권11호
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    • pp.1435-1446
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    • 2022
  • Zinc-solubilizing bacteria can convert the insoluble form of zinc into soluble forms available to plants. This study was conducted to isolate and screen zinc-solubilizing actinobacteria from rhizosphere soils and to assess their effect on vegetable soybean growth. In total, 200 actinobacteria strains belonging to 10 genera were isolated from rhizosphere soil samples. Among these isolates, four showed zinc solubilization with solubilizing index values ranging from 3.11 to 3.78 on Bunt and Rovira agar supplemented with 0.1% zinc oxide. For the quantitative assay, in broth culture, strains CME34 and EX51 solubilized maximum available zinc contents of 529.71 and 243.58 ㎍/ml. Furthermore, indole-3-acetic acid (IAA) and ammonia were produced by these two strains, the strain CME34 produced the highest amount of IAA 4.62 ㎍/ml and the strain EX51 produced the highest amount of ammonia 361.04 ㎍/ml. In addition, the phosphate-solubilizing abilities in Pikovskaya's medium of CME34 and EX51 were 64.67 and 115.67 ㎍/ml. Based on morphological and biochemical characterization and 16S rDNA sequencing, the strains CME34 and EX51 were closely related to the genus Streptomyces. In a greenhouse experiment, single-strain inoculation of Streptomyces sp. CME34 or EX51 significantly increased the shoot length, root length, plant dry weight, number of pods per plant and number of seeds per plant of vegetable soybean plants compared to the uninoculated control. These findings facilitated the conclusion that the two Streptomyces strains have potential as zinc solubilizers and can be suggested as bioinoculants to promote the growth and yield of soybean.

A Genetically Engineered Pseudomonas fluorescens Strain Possesses Dual Activity Against Phytopathogenic Fungi and Insects

  • Lu, Wenwei;Zhang, Weiqiong;Bai, Yan;Fu, Yingying;Chen, Jun;Geng, Xiaolu;Wang, Yujing;Xiao, Ming
    • Journal of Microbiology and Biotechnology
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    • 제20권2호
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    • pp.281-286
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    • 2010
  • A Pseudomonas fluorescens strain was isolated and found to show antagonistic activity against phytopathogenic fungi and to possess a gene responsible for production of antibiotic 2,4-diacetylphloroglucinol. For the extension of biocontrol range, a gene for an Androetonus australis Hector insect toxin 1 (AaHIT1), one of the most known toxic insect-selective peptides, was designed and synthesized according to the preferred codon usage of Pseudomonas fluorescens, cloned, and transformed into the strain by pSUP106 vector, a broad-host-range plasmid. Bioassays indicated that the engineered strain was able to produce AaHIT1 with insecticidal activity, and at the same time retain the activity against plant pathogen. The experiments for nonplanted soil and rhizosphere colonization showed that, similar to the population of the wild-type strain, that of the engineered strain remained relatively constant in the first 10 days, and the subsequent 50 days, suggesting that AaHIT1 expression in the bacterial cell does not substantially impair its long-term colonization. It is first reported that a Pseudomonas fluorescens strain expressing an active scorpion neurotoxin has dual activity against phytopathogenic fungi and insects, making at attractive for agronomic applications.

Investigation of Siderophore production and Antifungal activity against Phytophthora capsici as related to Iron (III) nutrition by Lysobacter antibioticus HS124

  • Ko, Hyun-Sun;Tindwa, Hamisi;Jin, Rong De;Lee, Yong-Seong;Hong, Seong-Hyun;Hyun, Hae-Nam;Nam, Yi;Kim, Kil-Yong
    • 한국토양비료학회지
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    • 제44권4호
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    • pp.650-656
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    • 2011
  • Lysobacter antibioticus HS124 isolated from pepper rhizosphere soil produced catechol type siderophore. Purified siderophore by Diaion HP-20 and silica gel column chromatography showed several hydroxyl functional groups adjacent to benzene rings by analysis of $^1H$ NMR spectroscopy. The strain HS124 showed different activities to suppress Phytophthora capsici with different concentrations of exogenous Fe (III) in minimal medium where antifungal activity with $100{\mu}M$ Fe (III) was approximately 1.5 times higher than in absence of Fe (III). Bacterial population in this Fe (III)-amended medium was also highest with $8.9{\times}10^8\;CFU\;ml^{-1}$ which also corresponded to the strongest siderophore activity. When grown in rich medium (minimal medium with N, $P_2O_5K_2O$ and glucose), HS124 exhibited approximately 2 times stronger antifungal activity compared to minimal medium. In pot trials, treatments of bacterial culture grown in rich medium with (C1) or without (C2) $100{\mu}M$ Fe (III) exhibited a high protection of pepper plants from disease, compared to medium only with (M1) or without (M2) $100{\mu}M$ Fe (III). Especially, treatment C1 showed the best disease control effect of about 70 %. Thus, the strain HS124 should be recommended as a potential biocontrol agent against P. capsici in pepper.

P-hydroxybenzoic acid positively affect the Fusarium oxysporum to stimulate root rot in Panax notoginseng

  • Jing Zhao;Zhandi Wang;Rong Jiao;Qionglian Wan;Lianchun Wang;Liangxing Li;Yali Yang;Shahzad Munir
    • Journal of Ginseng Research
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    • 제48권2호
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    • pp.229-235
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    • 2024
  • Background: Plant health is directly related to the change in native microbial diversity and changes in soil health have been implicated as one of the main cause of root rot. However, scarce information is present regarding allelopathic relationship of Panax notoginseng root exudates and pathogenic fungi Fusarium oxysporum in a continuous cropping system. Methods: We analyzed P. notoginseng root exudate in the planting soil for three successive years to determine phenolic acid concentration using GC-MS and HPLC followed by effect on the microbial community assembly. Antioxidant enzymes were checked in the roots to confirm possible resistance in P. notoginseng. Results: Total 29 allelochemicals in the planting soil extract was found with highest concentration (10.54 %) of p-hydroxybenzoic acid. The HPLC showing a year-by-year decrease in p-hydroxybenzoic acid content in soil of different planting years, and an increase in population of F. oxysporum. Moreover, community analysis displayed negative correlation with 2.22 mmol. L-1 of p-hydroxybenzoic acid correspond to an 18.1 % population of F. oxysporum. Furthermore, in vitro plate assay indicates that medium dose of p-hydroxybenzoic acid (2.5-5 mmol. L-1) can stimulate the growth of F. oxysporum colonies and the production of macroconidia, as well as cell wall-degrading enzymes. We found that 2-3 mmol. L-1 of p-hydroxybenzoic acid significantly increased the population of F. oxysporum. Conclusion: In conclusion, our study suggested that p-hydroxybenzoic acid have negative effect on the root system and modified the rhizosphere microbiome so that the host plant became more susceptible to root rot disease.

토양길항세균 Bacillus sp. KL-3의 대사산물을 이용한 벼도열병균 Pyricularia oryzae의 생물학적방제

  • 김규영;김상달
    • 한국미생물·생명공학회지
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    • 제25권4호
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    • pp.396-402
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    • 1997
  • Biocontrol of plant pathogens provides an alternative means of reducing the incidence of plant diseases without the negative aspects of chemical pesticides. Nowdays, as the resistant fungi about the chemical fungicides have revealed and the concern of environment has increased, the biological control of phytopathogenic fungi by the antagonistic microorganisms is very much indispensable. For the selection of strong antagonistic bacterium for biological control agent of rice leafblast and cucumber gray mold rot, the antifungal strain KL-3 strain was selected among 120 strains isolated from the rhizosphere soils. And the strain was identified to be a species of Bacillus subtilis or closely related strain. In several biochemical and in vitro antibiosis tests, antifungal substances of Bacillus sp. KL-3 were presumed heat stable, micromolecular antibiotic substances. In vivo test and vinyl house field test, the antifungal substances of Bacillus sp. KL-3 represented excellent biocontrol ability aganist Alternaria mali, Phyricularia oryzae, and Alternaria kikuchiana as well as broad spectrum of other fungi. In particular, Bacillus sp. KL-3 strain showed more predominant activity than some chemical fungicides against fungi shown to resist chemcal fungicides.

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The role of macrophytes in wetland ecosystems

  • Rejmankova, Eliska
    • Journal of Ecology and Environment
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    • 제34권4호
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    • pp.333-345
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    • 2011
  • Aquatic macrophytes, often also called hydrophytes, are key components of aquatic and wetland ecosystems. This review is to briefly summarizes various macrophyte classifications, and covers numerous aspects of macrophytes' role in wetland ecosystems, namely in nutrient cycling. The most widely accepted macrophyte classification differentiates between freely floating macrophytes and those attached to the substrate, with the attached, or rooted macrophytes further divided into three categories: floating-leaved, submerged and emergent. Biogeochemical processes in the water column and sediments are to a large extent influenced by the type of macrophytes. Macrophytes vary in their biomass production, capability to recycle nutrients, and impacts on the rhizosphere by release of oxygen and organic carbon, as well as their capability to serve as a conduit for methane. With increasing eutrophication, the species diversity of wetland macrophytes generally declines, and the speciose communities are being replaced by monoculture-forming strong competitors. A similar situation often happens with invasive species. The roles of macrophytes and sediment microorganisms in wetland ecosystems are closely connected and should be studied simultaneously rather than in isolation.