• Title/Summary/Keyword: strains inoculation

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Observations of Infection Structures after Inoculation with Colletotrichum orbiculare on the Leaves of Cucumber Plants Pre-inoculated with Two Bacterial Strains Pseudomonas putida or Micrococcus luteus

  • Jeun, Yong-Chull;Lee, Kyung-Hoo
    • Mycobiology
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    • v.33 no.3
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    • pp.131-136
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    • 2005
  • Infection structures were observed at the penetration sites on the leaves of cucumber plants inoculated with Colletotrichum orbiculare using a fluorescence microscope. The cucumber plants were previously drenched with suspension of bacterial strains Pseudomonas putida or Micrococcus luteus. The plants pre-inoculated with both bacterial strains were resistant against anthracnose after inoculation with C. orbiculare. To investigate the resistance mechanism by both bacterial strains, the surface of infected leaves was observed at the different time after challenge inoculation. At 3 days after inoculation there were no differences in the germination and appressorium formation of conidia of C. orbiculare as well as in the callose formation of the plants between both bacteria pre-inoculated and non-treated. At 5 days, the germination and appressorium formation of the fungal conidia were, however, significantly decreased on the leaves of plants pre-inoculated with M. luteus at the concentration with $1.0{\times}10^7\;cfu/ml$. Furthermore, callose formation of plants cells at the penetration sites was apparently increased. In contrast, there were no defense reactions of the plants at the concentration with $1.0{\times}10^6\;cfu/ml$ of M. luteus. Similarly, inoculation P. putida caused no plant resistance at the low concentration, whereas increase of callose formation was observed at the higher concentration. The results of this study suggest that the resistant mechanisms might be differently expressed by the concentration of pre-treatment with bacterial suspension.

Phosphate solubilizing effect by two Burkholderia bacteria isolated from button mushroom bed (양송이배지로부터 분리한 두 Burkholderia 속 세균에 의한 인산가용화 효과)

  • Oh, Jong-Hoon;Kim, Young-Jun;Yoon, Min-Ho
    • Journal of Mushroom
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    • v.18 no.3
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    • pp.208-213
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    • 2020
  • Burkholderia contaminans PSB-A and Burkholderia ambifaria PSB-B were isolated from button mushroom bed to estimate their phosphate solubility. The phosphate-solubilizing abilities of these strains were assessed by measuring the phosphorus content in a single and co-inoculation medium for 7 days. The co-inoculation of these two strains released the highest content of soluble phosphorus (166.3 ㎍ mL-1) into the medium, followed by single inoculation of B. contaminans PSB-A (143.73 ㎍ mL-1) and B. ambifaria PSB-B (127.1 ㎍ mL-1). The highest pH reduction, organic acid production, and glucose consumption were also observed in the co-inoculation medium. According to the plant growth promotion bioassay, co-inoculation enhanced the growth of romaine lettuce much more than the single inoculation (20.4% for leaf widths and 16.6% for root lengths). Although no significant difference was noted between single and co-inoculation of bacterial strains in terms of phosphorous release and plant growth, co-inoculation of PSB may have a beneficial effect on crop growth due to a synergistic effect between the strains.

Studies of Plant Tumor Induction (Pat 1) Experiments on the Inoculation of Agrobacterium tumefaciens in out Field (식물의 암종유발에 관한 연구 1 (제 1 ) Agrobacterium tumefaciens 의 에 관하여)

  • 이민재;홍순우;최영길
    • Korean Journal of Microbiology
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    • v.4 no.2
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    • pp.1-4
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    • 1966
  • As a part of studies of plant tumor induction, this experiment was prepared for the purpose of studying the ability of tumor induction and the tendency of tumor initiation in some Korean plants using the various Agrobacterium tumefaciens strains. Results obtained from this experiment are as follows. The virulences of five strains used in this experiment were gradually decreased in order of strain A6Kl, B6, 11BV7, T37 and 11 BNV6. Especially strain T37 which is known to the host limited strain showed virulent effect to the most of plants given for the materials as well as strain A6Kl, B 6 and 11BV7. Concerning the grade of tumor development, in plants which has tough stem, for example, Glycine max Meer, tumor induction was not well developed after the inoculation of all strains. Particullary in Ricinus communes Linne all strains showed virulent effect but tumor tissues were declined in relation to the development of lignification. It was also confirmed that the induction of tumor tissues on plants is to delay according to the increase of the age of host plants.

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Plant Growth-Promoting Rhizobacteria Improved Salinity Tolerance of Lactuca sativa and Raphanus sativus

  • Hussein, Khalid Abdallah;Joo, Jin Ho
    • Journal of Microbiology and Biotechnology
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    • v.28 no.6
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    • pp.938-945
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    • 2018
  • Salinity stress is an important environmental problem that adversely affects crop production by reducing plant growth. The impacts of rhizobacterial strains to alleviate salinity stress on the germination of Lactuca sativa and Raphanus sativus seeds were assessed using different concentrations of NaCl. Plant growth-promoting rhizobacteria (PGPR) strains were also examined to improve the early germination of Chinese cabbage seeds under normal conditions. Lactobacillus sp. and P. putida inoculation showed higher radicle lengths compared with non-inoculated radish (Raphanus sativus) seeds. LAP mix inoculation increased the radicle length of lettuce (Lactuca sativa) seedlings by 2.0 and 0.5 cm at salinity stress of 50 and 100 mM NaCl concentration, respectively. Inoculation by Azotobacter chroococcum significantly increased the plumule and radicle lengths of germinated seeds compared with non-inoculated control. A. chroococcum increased the radicle length relative to the uninoculated seeds by 4.0, 1.0, and 1.5 cm at 50, 100, and 150 mM NaCl concentration, respectively. LAP mix inoculation significantly improved the radicle length in germinated radish seeds by 7.5, 1.3, 1.2, and 0.6 cm under salinity stress of 50, 100, 150, and 200 mM NaCl concentration, respectively. These results of this study showed that PGPR could be helpful to mitigate the salinity stress of different plants at the time of germination.

Changes in Quality of according to Fermentation Time of Fermented Soybean Produced Made with Bacillus amyloliquefaciens (Bacillus amyloliquefaciens로 제조한 콩 발효물의 발효시간에 따른 품질 변화)

  • Shin, Dong Sun;Choi, In Duck;Park, Ji Young;Kim, Nam Geol;Lee, Seuk Ki;Jeong, Kwang-Ho;Park, Chang Hwan;Choi, Hye Sun
    • The Korean Journal of Food And Nutrition
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    • v.33 no.4
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    • pp.381-389
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    • 2020
  • The purpose of this study was to evaluate the appearance, physicochemical, physical, and fermentation properties of the fermented soybean produced by manufacturing with inoculation the different types of microbial strains. The strains were inoculated by the NSI (natural strains inoculation), and the SSI (selective strain inoculation) were treatments. The appearance showed differences in color, viscous substance, and hardness depending on strains inoculation and fermentation duration. The pH, and total acidity were 6.40~7.26%, and 0.10~0.39% respectively with differences depending on the samples. The moisture content as the fermentation duration increased, the NSI (56.03~57.66%) decreased and the SSI (56.71~58.63%) increased. The physical characteristics of the hardness increased as the fermentation duration increased for the NSI and the SSI decreased. The color values for the L, a, and b values were 47.64~58.56, 7.15~9.08, and 12.41~17.30, respectively. The α-amylase and protease activities of the SSI were the highest among all treatments. The total viable cell counts of the fermented soybean products by strains were 5.02 to 9.77 log CFU/g, and SSI (fermentation, 48 hours) was the highest. The amino-type nitrogen contents of all samples were 301.62~746.97 mg% and the SSI showed the highest content. The amino acid had the highest glutamic acid content.

Responses of Mungbean Varieties to Rhizobium Inoculation in respect of Nodulation, Nitrogenase Activity, Dry Matter Yield, and Nitrogen Uptake

  • A.R.M. Solaiman;M.M. Haque
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.48 no.5
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    • pp.355-360
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    • 2003
  • The responses of six mungbean [Vigna radiata (L.) Wilczek] varieties to Rhizobium inoculation on number and dry weight of nodules, nitrogenase activity of root nodule bacteria, dry weight of shoot and root, nitrogen content, and uptake by shoot were investigated. The mungbean varieties were BARI Mung-2, BARI Mung-3, BARI Mung-4, BARI Mung-5, BINA Moog-2, and BU Mung-1. Two-third seeds of each variety were inoculated with Rhizobium inoculant and the remaining one-third seeds were kept uninoculated. Rhizobium strains TAL 169 and TAL 441 were used for inoculation of seeds. Inoculation of seeds with Rhizobium strains significantly increased nodulation, nitrogenases activity, dry matter production, nitrogen content, and uptake by shoot of the crop compared to uninoculated control. There was positive correlation among the number and dry weight of nodules, nitrogenase activity, dry weight of shoot and root, nitrogen content, and uptake by shoot of the crop. It was concluded that BARI Mung-4 in association with Rhizobium strain TAL 169 performed best in recording nodulation, nitrogenase activity, dry matter production, and nitrogen uptake by shoot of mungbean.

Roles of Azospirillum spp. Inoculation in Two Consecutive Growth of Maize Plants

  • Choi, Seung-Ju;Gadagi, Ravi;Park, Myung-Su;Yang, Jin-Chul;Sa, Tong-Min
    • Korean Journal of Environmental Agriculture
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    • v.21 no.1
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    • pp.74-79
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    • 2002
  • Two consecutive green house experiments were carried out to examine the effect of Azospirillum spp. inoculation on growth, nitrogen and phosphorus accumulation in maize plants grown in pots. There were eight treatments including an uninoculated control and Azospirillum strains OAD-3, OAD-9, AZ-22, AZ-8, AZ-9, Azospirillum brasilense BR-11001 and Azospirillum lipoferum BR-11080. The inoculated plants showed higher values in each of the following measurements; plant height, total dry mass and nitrogen and phosphorus accumulation in shoot when compared to the uninoculated control plants in two consecutive experiments conducted in the same soil. Among Azospirillum strains, Azospirillum sp. OAD-3 inoculated plants showed higher nitrogen accumulation by 44.5% and 45.1%, total dry mass by 48.6% and 66.9% in two consecutive experiments respectively. The nitrogen concentration in the maize plants was not changed significantly in the first experiment, however it increased significantly in the second experiment due to Azospirillum inoculation. In addition, Azospirillum sp. OAD-9 and A. brasilense BR-11001 also proved to be effective with respect to total dry mass, total nitrogen accumulation and total phosphorus accumulation. The nitrogen concentrations in maize plants were increased in the second experiment due to Azospirillum inoculation.

Effects of inoculation with selected Rhizobium japonicum on the yield, nodule formation and nitrogen fixing activity of soybean(Glycine max) (선발대두근류균(選拔大豆根瘤菌)의 접종(接種)의 대두근류형성(大豆根瘤形成) 질소고정호성(窒素固定浩性) 및 수량(收量)에 미치는 영향(影響))

  • Yoo, Ick-Dong;Kim, Chang-Jin;Rhee, Yoon;Kim, Seok-Dong;Hong, Eun-Hi
    • Korean Journal of Soil Science and Fertilizer
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    • v.21 no.1
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    • pp.55-60
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    • 1988
  • To develop soybean inoculant the effects of inoculation with selected Rhizobium japonicum strains were tested in the field, and the results were as following. 1. With the inoculation of selected strains, increase of nodule number, nodule weight and nitrogen fixing activity were observed with or without applying N-fertilizer. 2. Chlorophyll contents was increased and senescence of plant was delayed with the inoculation of selected strains in case without applying N-fertilizer. But there was little difference of chlorophyll contents in case with applying N-fertilizer. 3. There were little differences of plant height and number of nodes, and some increase of plant stem dry matter and number of pods with inoculation of selected strains. 4. The mean yield of inoculation group (363-374kg/10a) was increased by 8-11% comparing to the uninoculated group (337kg/10a) in case without applyiag N-fertilizer. The mean yield of inoculated group (368-384kg/10a) was increased by 9-14% also in case with applying N-fertilizer.

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Experimental infection of Campylobacter jejuni and Campylobacter coli in chicks (유추(幼雛)에 있어서 Campylobacter jejuni 및 Campylobacter coli의 실험적(實驗的) 감염(感染))

  • Chung, Byong-gon;Kang, Ho-jo
    • Korean Journal of Veterinary Research
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    • v.28 no.2
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    • pp.345-353
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    • 1988
  • The present study was carried out to investigate the incidence of C jejuni and C coli in chicken. Also were examined the pathogenicity of the isolates in chick by experimental inoculation. Thermophilic Campylobacter were isolated from 34(45.9%) of the 74 specimens, and classified as 21.6% C jejuni, and 24.3% C coli. In the biotyping of 16 stranis of C jejuni isolates, 37.5% of the strains were grouped as biotype I, 62.5% as biotype II. In the case of 18 strains of C coli isolates, 49.9% of isolates were grouped as biotype I, 55.6% as biotype II. n oral inoculation with $10^4cfu$ of Campylobacter isolates into infant chicks(1 to 3 days-old), 17 days-old and 34 days-old chicks, 32.5% of the chicks developed diarrhea on day 1, 52.5% on day 3, 70.0% on day 5, and 27.5% on day 7, and the peak incidence of diarrhea was reached on day 5. The organisms were found to be discharged in feces one day afterwards. C jejuni and C coli strains were detected from the feces in 87.5% of the chicks on day 5. The organisms were multiplied from $10^4$ to $10^6cfu/gm$ in feces 5 to 7 days after inoculation. C jejuni and C coli recovered from 100% of the cecum, 64.3% of the duodenum, 50.0% of the spleen, 42.9% of the livers, and from 21.4% of gallbladders 7 days after inoculation.

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A Study on the Driving Characteristics of Microbial Fuel Cell Using Mixed Strains in Domestic Wastewater (생활폐수 내 혼합균주를 이용한 미생물 연료전지의 구동 특성에 관한 연구)

  • KIM, SANG KYU;YOO, DONG JIN
    • Transactions of the Korean hydrogen and new energy society
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    • v.32 no.6
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    • pp.506-513
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    • 2021
  • The use of fossil fuels is a major contributor to the increase atmospheric greenhouse gas emissions. As such problems arise, interest in new and renewable energy devices, particularly fuel cells, is greatly increasing. In this study, various characteristics of mixed strains were observed in wastewater collected by the Jeonju Environment Office to investigate the effects of microorganisms on voltage generation and voltage generation of substrates, electrode materials, electrons, electron transport media, and ash microbial fuel cells. As a result of separately measuring the voltage generated during inoculation, the inoculation voltage of Escherichia coli K12 (E. coli K12) was 0.45 V, and the maximum inoculation voltage of the mixed strain was 1.2 V. Thereafter, voltage values were collected using a digital multimeter and the amount of voltage generated over time was measured. In the case of E. coli K12, the maximum voltage reached 0.45 V, and the cell voltage was maintained above 0.23 V for 140 hours. In contrast, for the mixed strain, the maximum voltage reached 1.2 V and the voltage was slowly decreased to 0.97 V. In addition, the degree of microbial adsorption to the electrod surface after the inoculation test was confirmed using a scanning electron microscope. Therefore, these results showed the possibility of purifying pollutants at the same time as power generation through the production of hydrogen ions using microorganisms and wastewater.