• Title/Summary/Keyword: phosphate solubilizing

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Distribution of Phosphate Fractions in Greenhouse Soils Located on Southwest Region in Korea (한국 남서(南西) 지역(地域) 시설(施設) 재배지(栽培地) 토양(土壤)중 인산염(燐酸鹽) 형태별(形態別) 함량(含量))

  • Suh, Jang-Sun;Song, Yo-Sung;Kim, Kwang-Sik
    • Korean Journal of Soil Science and Fertilizer
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    • v.28 no.3
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    • pp.270-277
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    • 1995
  • The phosphate fractions and their relationships with other soil characteristics in greenhouse soils located on the southwest region in Korea were studied to demonstrate the possibility of the application of phosphate solubilizing microorganisms. The average contents of organic matter of 4.0% and exchangeable K, Ca, Mg of 1.16, 3.4, and $1.2cmol\;kg^{-1}$ respectively were higher than the aiming level for improvement of low fertile soil. Especially, available $P_2O_5$ of $1,193mg\;kg^{-1}$ was far more than the aiming level. The distribution of greenhouse soils classified by their total P contents was 46.1% for the range of $1,000{\sim}2,000mg\;kg^{-1}$, 29.6% for $2,000{\sim}3,000mg\;kg^{-1}$, and 12.9% for $3,000{\sim}4,000mg\;kg^{-1}$. And the soils containing more than $1,000mg\;kg^{-1}$, available $P_2O_5$ occupied 63.0% of the examined soils. The main forms of inorganic phosphates in greenhouse soils were Ca-P and Fe-P. The P fractions compared to total P were significantly correlated to soil pH, while available P was not so. Available phosphate was significantly correlated with the contents of organic matter and nitrogen, which are closely related to soil microbial activity, at the probability level of less than 1%.

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Organic acid production and phosphate solubilization by Enterobacter intermedium 60-2G (Enterobacter intermedium 60- 2G의 유기산 생성과 불용성인의 가용화)

  • Kim, Kil-Yong;Hwangbo, Hoon;Kim, Yong-Woong;Kim, Hyo-Jeong;Park, Keun-Hyung;Kim, Young-Cheol;Seong, Ki-Young
    • Korean Journal of Soil Science and Fertilizer
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    • v.35 no.1
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    • pp.59-67
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    • 2002
  • A phosphate solubilizing bacterium. strain 60-2G, possessing a strong ability to solubilize insoluble phosphate was isolated from the rhizosphere of grass. On the basis of GC-FAME profile, carbon utilization pattern, and the DNA sequence of a conserved partial 16S rRNA gene, the 60-2G was identified as Enterobacter intermedium. The analysis by HPLC revealed that the strain 60-2G produced mainly gluconic and 2-ketogluconic acids with small amounts of lactic acid in broth culture medium containing hydroxyapatite. During the incubation period of the strain 60-2G in broth culture, pH of the medium decreased upto 3.8 while the soluble phosphate concentration increased. The reversed correlation between pH and soluble phosphate concentration indicated that the solubility of P was due to the produced organic acids. The sequence homology of the deduced amino acids suggested that E. intermedium 60-2G synthesized PQQ which is essential for the oxidation of glucose by glucose dehydrogenase.

Growth Promotion of Lettuce by Biofertilizer, BIOACTIVE, Prepared from Bacillus subtilus HR-1019 and N-acetyl-thioproline (Bacillus subtilus HR-1019와 N-Acetyl-thioproline으로 제조한 미생물처리제, BIOACTIVE에 의한 상추의 생장 촉진)

  • Lee, Yong-Suk;Park, Dong-Ju;Kim, Jae Hoon;Kim, Hyeong Seok;Chung, Soo Yeol;Choi, Yong-Lark
    • Journal of Life Science
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    • v.23 no.1
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    • pp.79-83
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    • 2013
  • A biofertilizer, BIOACTIVE, was manufactured by N-acetyl-thioproline (ATCA) and mineral phosphate solubilizing bacteria. The growth promoting effect of the biofertilizer on lettuce was evaluated under three different pot conditions, and its stability was assessed in the field. According to the results of the pot experiments, plant growth was improved compared with that of control: 128%, 122%, and 153% for the leaf number, leaf length, and leaf mass, respectively. Applying the manufactured biofertilizer increased the concentration of phosphate: 118% and 132% in the cultivation soil and plant cells, respectively. These show that BIOACTIVE may have potential as an effective biofertilizer in agriculture.

Phosphate solubilizing effect by two paraburkholderia bacteria Isolated from button mushroom medium (양송이배지로부터 분리한 두 Paraburkholderia 속 세균에 의한 인산가용화 효과)

  • Yu, Hye-Jin;Yoon, Min-Ho
    • Journal of Mushroom
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    • v.17 no.2
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    • pp.64-69
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    • 2019
  • The present study was conducted to investigate the synergistic effects caused by single and co-inoculation of the phosphate solubilizing bacteria (PSB), Paraburkholderia phenazinium YH3 and Paraburkholderia metrosideri YH4. Phosphate solubilization was assessed by measuring the phosphorus contents for 7 days in a single and co-inoculation medium. Co-inoculation of the two strains was found to release the highest content of soluble phosphorus ($1,250{\mu}g\;mL^{-1}$) into the medium, followed by the single inoculation of P. metrosideri YH4 ($1196.59{\mu}g\;mL^{-1}$) and P. phenazinium YH3 ($994.34{\mu}g\;mL^{-1}$). The highest pH reduction, organic acid production and glucose consumption was also observed in the co-inoculation medium of the two strains. A plant growth promotion bioassay revealed that co-inoculation with the two strains enhanced the growth of romaine lettuce more than single inoculation with either of the two strains (28.5% for leaf and 16.6% for root). Although there was no significant difference between single and co-inoculation of bacterial strains in terms of phosphorous release and plant growth, the synergistic effects of co-inoculation with PSB could be beneficial for crop growth.

인산가용화균 PeniciLLium sp. PS-113의 액상비료 제제화

  • Tae, Eon-Hui;Lee, Tae-Geun;Gang, Seon-Cheol
    • 한국생물공학회:학술대회논문집
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    • 2001.11a
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    • pp.398-399
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    • 2001
  • A fungus. Penicillium sp. PS-113. with high phosphate-solubilizing activities was isolated from soil and tested the viability in POA medium supplemented with various concentrations of Trio in order to develop a dispersing agent for liquid formulation. Moreover, the number of Penicillium sp. PS-113 conidia, stored at $4^{\circ}C$ and $25^{\circ}C$ with Trio(0.1%) and various concentrations of additives($Cu^{++}$ $Mo^{++}$, bio-ceramic, Tween 80, PEG 200. diatomite. SDS), was counted on PDA at the intervals of 2 weeks. As a result, the liquid formulation containing 0.1 %( v/v) Trio was remarkably improved in dispersing ability and the viability of the conidia, and each of the supplements (0,01% $Mo^{++}$, 0.5% bio-ceramic. 1.0% Tween 80, 1.0% PEG 200) was similar to the 0.1% Trio.

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Effects of Co-Cultures, Containing N-Fixer and P-Solubilizer, on the Growth and Yield of Pearl Millet (Pennisetum glaucum (L.) R. Br.) and Blackgram (Vigna mungo L.)

  • POONGUZHALI POONGUZHALI;SELVARAJ SELVARAJ;MADHAIYAN MUNUSAMY;THANGARAJU MUTHU;RYU JEOUNGHYUN;CHUNG KEUNYOOK;SA TONGMIN
    • Journal of Microbiology and Biotechnology
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    • v.15 no.4
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    • pp.903-908
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    • 2005
  • Inoculation of the carrier-based mixed bioinoculants af N-fixer (Azospirillum lipoferum strain Az204/Rhizobium strain BMBS P47) and phosphate-solubilizing bacterium (Bacillus megaterium var phosphaticum strain Pb 1) promoted growth and yield of pearl millet and blackgram under pot-culture conditions. The mixed inoculant of Az204 and Pb 1 enhanced germination, seedling vigor, plant height, and seed weight, and resulted in $6\%$ increase in grain yield of pearl millet. Likewise, the mixed inoculant of BMBS P47 and Pb1 increased growth, nodulation, and yield in blackgram. The rhizosphere soil enzyme activities, including nitrogenase, urease, and phosphatase, in both pearl millet and blackgram were significantly increased by the inoculation of the mixed inoculant, compared to that of the individual inoculants. The results clearly indicate the beneficial effect of co-culturing the N-fixer and P-solubilizer in inoculants production.

건조공정에 따른 인산가용화균 Penicillium sp. PS-113의 고체분말비료 제제화 효과 비교

  • Tae, Eon-Hui;Lee, Tae-Geun;Gang, Seon-Cheol
    • 한국생물공학회:학술대회논문집
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    • 2002.04a
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    • pp.369-370
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    • 2002
  • A fungus. Penicillium sp. PS-113, with high phosphate-solubilizing activities was isolated from soil and formulated to powder type in order to manufacture it as a solid powder fertilizer. First of all, in this research, we are trying to establish an optimal condition for a drying process based on the drying time, temperature and humidity by testing its viability on potato dextrose agar(PDA) media after storing at $4^{\circ}C$. As a result the number of Penicillium sp. PS-1l3 conidia, which was dried at $80^{\circ}C$ and 15% humidity, and then stored at $4^{\circ}C$, was maximally increased to 60 times more than the control. But the viability of the conidia at $100^{\circ}C$ or over was decreased suddenly in spite of the period of storage.

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Characterization of Soil Microorganism from Humus and Indigenous Microorganism Amendments

  • Jan, Umair;Feiwen, Rui;Masood, Jan;Chun, Se Chul
    • Mycobiology
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    • v.48 no.5
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    • pp.392-398
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    • 2020
  • This study was conducted to understand the dynamics of microbial communities of soil microorganisms, and their distribution and abundance in the indigenous microorganisms (IMOs) manipulated from humus collected from the forest near the crop field. The soil microorganisms originated from humus and artificially cultured microbial-based soil amendments were characterized by molecular and biochemical analyses. The bacterial population (2 × 106~13 × 106 CFU/g sample) was approximately 100-fold abundant than the fungal population (2 × 104~8 × 104 CFU/g sample). The 16S rDNA and ITS sequence analyses showed that the bacterial and fungal communities in humus and IMOs were mainly composed of Bacillus and Pseudomonas, and Trichoderma and Aspergillus species, respectively. Some of the bacterial isolates from the humus and IMOs showed strong inhibitory activity against soil-borne pathogenic fungi Fusarium oxysporum and Sclerotinia sclerotiorum. These bacteria also showed the siderophore production activity as well as phosphate solubilizing activity, which are requisite traits for biological control of plant pathogenic fungi. These results suggest that humus and IMOs could be a useful resource for sustainable agriculture.

Optimization of Indole-3-Acetic production by phosphate solubilization bacteria isolated from waste mushroom bed of Agaricus bisporus

  • Walpola, Buddhi Charana;Noh, Jae-Geun;Kim, Chan Kyem;Kyung, Ki-Cheon;Kong, Won-Sik;Yoon, Min-Ho
    • Journal of Mushroom
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    • v.11 no.2
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    • pp.53-62
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    • 2013
  • A total of 35 phosphate solubilizing bacterial strains were isolated from waste mushroom bed of Agaricus bisporus in Buyeo-Gun, Chungnam and screened for the production of indole acetic acid (IAA). The best IAA producing strain was identified as Pantoea rodasii using 16S rRNA analysis. In addition to the IAA production, this strain could act as an efficient phosphate solubilizer (1100 ${\mu}g$ $ml^{-1}$ after 5 days of incubation) also. The selected strain was cultured under different conditions in order to assess the optimum conditions for maximum IAA production. The nutrient broth (NB) medium was recorded as the best medium, where the maximum IAA production (229 ${\mu}g$ $ml^{-1}$) was recorded at the start of stationary phase (12 hours after inoculation) of the bacteria growth. The performance of the strain was found to be maximum at the temperature of $30^{\circ}C$ followed by $25^{\circ}C$. IAA production was found to be increased with increasing tryptophan concentration (from 0.1 to 0.6%), however beyond this limit, a slight reduction in IAA production was observed. The strains' ability to produce IAA was further confirmed by extraction of crude IAA and subsequent TLC analysis. A specific spot from the extracted IAA preparation was found corresponding with the standard spot of IAA with same $R_f$ value. The results of HPLC analysis conducted in identifying and quantifying the IAA production more precisely, are in agreement with the results of the assessment done with colorimetric method. As revealed by the results of the pot experiment, the isolated strain could significantly enhance the growth (as measured by shoot and root growth) of mung bean plants compared to that of non-inoculated plants. Therefore it can be concluded that the present strain, Pantoea rodasii has great potential to be used as bio-inoculants.

Characterization of Plant-Growth-Promoting Traits of Acinetobacter Species Isolated from Rhizosphere of Pennisetum glaucum

  • Rokhbakhsh-Zamin, Farokh;Sachdev, Dhara;Kazemi-Pour, Nadia;Engineer, Anupama;Pardesi, Karishma R.;Zinjarde, Smita;Dhakephalkar, Prashant K.;Chopade, Balu A.
    • Journal of Microbiology and Biotechnology
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    • v.21 no.6
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    • pp.556-566
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    • 2011
  • A total of 31 Acinetobacter isolates were obtained from the rhizosphere of Pennisetum glaucum and evaluated for their plant-growth-promoting traits. Two isolates, namely Acinetobacter sp. PUCM1007 and A. baumannii PUCM1029, produced indole acetic acid (10-13 ${\mu}g$/ml). A total of 26 and 27 isolates solubilized phosphates and zinc oxide, respectively. Among the mineral-solubilizing strains, A. calcoaceticus PUCM1006 solubilized phosphate most efficiently (84 mg/ml), whereas zinc oxide was solubilized by A. calcoaceticus PUCM1025 at the highest solubilization efficiency of 918%. All the Acinetobacter isolates, except PUCM1010, produced siderophores. The highest siderophore production (85.0 siderophore units) was exhibited by A. calcoaceticus PUCM1016. Strains PUCM1001 and PUCM1019 (both A. calcoaceticus) and PUCM1022 (Acinetobacter sp.) produced both hydroxamate-and catechol-type siderophores, whereas all the other strains only produced catechol-type siderophores. In vitro inhibition of Fusarium oxysporum under iron-limited conditions was demonstrated by the siderophore-producing Acinetobacter strains, where PUCM1018 was the most potent inhibitor of the fungal phytopathogen. Acinetobacter sp. PUCM1022 significantly enhanced the shoot height, root length, and root dry weights of pearl millet seedlings in pot experiments when compared with controls, underscoring the plant-growth-promoting potential of these isolates.