• 제목/요약/키워드: Nitrogen-fixing microorganism

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The effect of nitrogen-fixing microorganisms on plant promotion in cabbage

  • Moon, Je-Hun;Jadamba, Chuluuntsetseg;Yoo, Soo-Cheul
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.190-190
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    • 2017
  • Chemical fertilizers have been used to increase crop production and contributed to escaping food shortages. However, excessive use of chemical fertilizers over a long period caused many problems such as environmental pollution and the hampered production potential of the land. Thus, it is necessary to develop eco-friendly bio-fertilizers that can replace the use of chemical fertilizers. Here, we tested the effect of some nitrogen-fixing microorganims on the plant growth promotion. Seventy free-living nitrogen fixing microorganisms were isolated from rhizosphere of crop cultivation fields, streamside soils and sludge in Ansung, Korea. Of them, three strains (NF2-4-1, Yeast; EMM409, Mesorhizobium; Gsoil662, Burkholderia) were selected to be most efficient in the capacity of N-fixing nitrogen based on colony forming cell assay in N-free media. To investigate the ability to promote plant growth, these strains were inoculated into the soil and cabbage were grown for 4 weeks in the grown chamber. Fresh weight, dry weight, and leaf area were measured from 4-week-old plants. Phenotypic analysis revealed that the growth of the plants inoculated with NF2-4-1 and EMM409 strains were significantly promoted compared to the mock-treated control plants, while Gsoil662-inoculated plants did not show statically significant promotion. These results indicate that these nitrogen-fixing microorganims can be used to develop plant growth promoting bio-fertilizers. Further analysis on nitrogen fixing level in soil by these strains will be tested.

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수종(數種)의 비두과(非豆科) 식물(植物)로 부터의 질소고정균(窒素固定菌)의 분리(分離)에 관(關)한 연구(硏究) (Isolation of N2-fixing Microorganism from the Root of Non-leguminous Crops)

  • 안상배;포생탁마;육창수
    • 한국토양비료학회지
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    • 제23권1호
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    • pp.67-72
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    • 1990
  • 수종(數種)의 비두과식물(非荳科植物)의 뿌리로 부터 질소고정균(窒素固定菌)을 분리(分離)하여 분리(分離)된 균(菌)에 대(對)해서 숙주식물(宿主植物)의 접종실험(接種實驗)을 하여 유효균(有效菌)의 선발(選拔)을 한 결과(結果) 1. 9개(個)의 식물(植物)에 대(對)해서는 시금치, 배추, 오이, 갓 및 가지에서 비교적(比較的) 높은 아세칠렌 환원능(還元能)을 가진 균주(菌株)를 얻었고 2. 그 중(中)에서 아세칠렌 환원능(還元能)이 큰 4개(個)의 숙주식물(宿主植物)중 시금치, 배추, 오이에서 양호(良好)한 생육(生育)을 하는 균주(菌株)를 찾았다. 특(特)히 시금치에서 접종효과(接種效果)가 현저(顯著)하였다. 3. 이상(以上)의 결과(結果)로 부터 비두과식물(非荳科植物)의 뿌리에도 약한 협생(協生)을 하는 질소고정균(窒素固定菌)이 생육(生育)되고 있어 뿌리의 생장(生長) 및 분화(分化)를 촉진(促進)시켜 지상부(地上部)의 생육(生育)을 왕성하게 하는 것으로 판단(判斷)된다.

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토양에 투입된 미생물의 거동 및 활성 (Fate and Activity of Microorganism introduced into the Soil)

  • 정재춘;주설;이재웅;이정재
    • 유기물자원화
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    • 제10권2호
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    • pp.100-116
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    • 2002
  • 농작물에 영양분을 공급하거나 식물의 생장촉진, 식물 병원균의 억제 등을 위하여 토양에 미생물이 투입된다. 대표적인 예가 질소고정 공생세균과 Pythium, Rhizobium 등이다. 이들이 투입되어 성공적으로 작용하려면 생존하여 충분한 밀도로 집략을 형성하여야 한다. 이들의 생존과 집략화에 미치는 영향은 생물적인 인자와 비생물적 인자에 의해 좌우된다. 생물적 인자중에서 중요한 것은 포식과 경쟁, 비생물적 인자 중에서 중요한 것은 물의 장력 유기탄소, 무기영양분(N, P), pH 등이다. 토양의 토성과 소공극 분포도 투입된 미생물의 생존과 활착에 중요한 역할을 담당한다. 또한 미생물에 대한 토양생태계의 선택성은 접종 세포 개체군의 활착에 있어서 중요하다. 예를 들면 항생제의 사용에 의한 토착미생물의 제어, 계면활성제를 분해하는 Psendomonas종을 투입하는 경우이다. 투입미생물의 활착을 증진시키기 위하여 이탄, 점토 등의 수송체를 동시에 첨가할 수 있는데 이들은 투입미생물에게 보호적인 미소서식지를 만듦으로서 토양중에서 세균을 보호할 수 있다. 또한 세균이나 공업용 효소를 부동화시키기 위한 수송체로서 유기성 중합체가 사용되고 있다. 이러한 물질들의 예를 들면 아질산칼륨, agarose, k-carrageenan 등이다. 이들도 미소서식처를 제공하므로서 투입미생물의 활착을 돕는 역할을 한다.

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Effect of 'Azotobacter' Bioinoculant on the Growth and Substrate Utilization Potential of Pleurotus eous Seed Spawn

  • Eyini, M.;Parani, K.;Pothiraj, C.;Rajapandy, V.
    • Mycobiology
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    • 제33권1호
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    • pp.19-22
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    • 2005
  • We investigated the effect of nitrogen fixing Azotobacter bioinoculant on the mycelial growth and the rate of substrate utilization by Pleurotus eous. The synergistic or antagonistic role of the microorganism during dual culturing with the mushroom or the competitor molds Trichoderma viride, and Trichoderma reesi was studied. Azotobacter was inhibitory to the molds, which are competitive to the mushroom in the seed spawn substrate, but was synergistic towards the mushroom. The growth, substrate utilization potential as total nitrogen content and cellulase enzyme activities of the mushroom in the seed spawn substrate were also enhanced in the presence of the bioinoculant at lower inoculum concentrations, upto 5 ml broth culture per spawn bottle.

Polyphasic Analysis of the Bacterial Community in the Rhizosphere and Roots of Cyperus rotundus L. Grown in a Petroleum-Contaminated Soil

  • Jurelevicius, Diogo;Korenblum, Elisa;Casella, Renata;Vital, Ronalt Leite;Seldin, Lucy
    • Journal of Microbiology and Biotechnology
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    • 제20권5호
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    • pp.862-870
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    • 2010
  • Cyperus rotundus L. is a perennial herb that was found to be dominating an area in northeast Brazil previously contaminated with petroleum. In order to increase our knowledge of microorganism-plant interactions in phytoremediation, the bacterial community present in the rhizosphere and roots of C. rotundus was evaluated by culture-dependent and molecular approaches. PCR-DGGE analysis based on the 16S rRNA gene showed that the bacterial community in bulk soil, rhizosphere, and root samples had a high degree of similarity. A complex population of alkane-utilizing bacteria and a variable nitrogen-fixing population were observed via PCR-DGGE analysis of alkB and nifH genes, respectively. In addition, two clone libraries were generated from alkB fragments obtained by PCR of bulk and rhizosphere soil DNA samples. Statistical analyses of these libraries showed that the compositions of their respective populations were different in terms of alkB gene sequences. Using culturedependent techniques, 209 bacterial strains were isolated from the rhizosphere and rhizoplane/roots of C. rotundus. Dot-blot analysis showed that 17 strains contained both alkB and nifH gene sequences. Partial 16S rRNA gene sequencing revealed that these strains are affiliated with the genera Bosea, Cupriavidus, Enterobacter, Gordonia, Mycoplana, Pandoraea, Pseudomonas, Rhizobium, and Rhodococcus. These isolates can be considered to have great potential for the phytoremediation of soil with C. rotundus in this tropical soil area.