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    Solubilization of Inorganic Phosphates and Plant Growth Promotion by Pantoea Strains

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    https://www.riss.kr/link?id=A99870079

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Two phosphate solubilizing Pantoea strains (P. agglomerans and P. rodasii) were employed in elucidating their phosphate solubilizing potential under different carbon and nitrogen sources, pH, temperature and salt conditions. Plant growth promoting characteristics such as ACC deaminase activity, indole acetic acid (IAA), HCN, ammonia, and siderophore production of the two strains were assessed in vitro. Potential applicability of the strains as bio-inoculants was also evaluated in pot experiments conducted under green house conditions. Phosphate solubilization measured as the amount of phosphorous released into the medium was recorded as 810 and 788 μg ml<SUP>-1</SUP> respectively by P. agglomerans and P. rodasii. Glucose at the rate of 2% was found be the best carbon source, while (NH4)2SO4 was the best nitrogen source for both strains. Despite a slight decrease in phosphate solubilization observed at higher temperature, pH and salt concentrations, both strains could withstand against a range of temperature (30-35℃), pH (7-9) and the presence of NaCl (up to 5%) without much compromising the phosphate solubilization. Different plant growth promoting traits (ACC deaminase activity, IAA, HCN, ammonia, and siderophore production) of the strains and their ability to promote the growth of green gram seedlings indicate that both strains possess high potential to be used as bio-inoculants.
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    Two phosphate solubilizing Pantoea strains (P. agglomerans and P. rodasii) were employed in elucidating their phosphate solubilizing potential under different carbon and nitrogen sources, pH, temperature and salt conditions. Plant growth promoting cha...

    Two phosphate solubilizing Pantoea strains (P. agglomerans and P. rodasii) were employed in elucidating their phosphate solubilizing potential under different carbon and nitrogen sources, pH, temperature and salt conditions. Plant growth promoting characteristics such as ACC deaminase activity, indole acetic acid (IAA), HCN, ammonia, and siderophore production of the two strains were assessed in vitro. Potential applicability of the strains as bio-inoculants was also evaluated in pot experiments conducted under green house conditions. Phosphate solubilization measured as the amount of phosphorous released into the medium was recorded as 810 and 788 μg ml<SUP>-1</SUP> respectively by P. agglomerans and P. rodasii. Glucose at the rate of 2% was found be the best carbon source, while (NH4)2SO4 was the best nitrogen source for both strains. Despite a slight decrease in phosphate solubilization observed at higher temperature, pH and salt concentrations, both strains could withstand against a range of temperature (30-35℃), pH (7-9) and the presence of NaCl (up to 5%) without much compromising the phosphate solubilization. Different plant growth promoting traits (ACC deaminase activity, IAA, HCN, ammonia, and siderophore production) of the strains and their ability to promote the growth of green gram seedlings indicate that both strains possess high potential to be used as bio-inoculants.

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    목차 (Table of Contents)

    • Introduction
    • Materials and Methods
    • Results and discussion
    • References
    • Introduction
    • Materials and Methods
    • Results and discussion
    • References
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    참고문헌 (Reference)

    1 Costa, E., "Water activity, temperature, and pH effects on growth of the biocontrol agent Pantoea agglomerans CPA-2" 48 : 987-992, 2002

    2 Schwyn, R., "Universal chemical assay for detection and determination of siderophores" 160 : 47-56, 1987

    3 Saitou, N., "The neighbor-joining method : A new method for reconstructing phylogenetic trees" 40 : 6-425, 1987

    4 Jain, R., "The evaluation of free and encapsulated Aspergillus awamori for phosphate solubilization in fermentation and soil-plant system" 46 : 90-94, 2010

    5 Thompson, J. D., "The clustal x windows interface : flexible strategies for multiple sequence alignment aided by quality analysis tools" 25 : 4876-4882, 1997

    6 Malboobi, M. A., "Solubilization of organic and inorganic phosphates by three highly efficient soil bacterial isolates" 25 : 1471-1477, 2009

    7 Son, H. J., "Solubilization of insoluble inorganic phosphates by a novel salt and pH tolerant Pantoea agglomerans R-42 isolated from soybean rhizosphere" 97 : 204-210, 2006

    8 Scervino, J. M., "Soil fungal isolates produce different organic acid patterns involved in phosphate salts solubilization" 46 : 755-763, 2010

    9 Nezarat, S., "Screening plant growth promoting rhizobacteria for improving seed germination, seedling growth and yield of maize" 12 : 26-32, 2009

    10 Donate-Correa, J., "Screening for plant growth-promoting rhizobacteria in Chamaecytisus proliferus(tagasaste), a forage tree-shrub legume endemic to the Canary Islands" 266 : 261-272, 2005

    1 Costa, E., "Water activity, temperature, and pH effects on growth of the biocontrol agent Pantoea agglomerans CPA-2" 48 : 987-992, 2002

    2 Schwyn, R., "Universal chemical assay for detection and determination of siderophores" 160 : 47-56, 1987

    3 Saitou, N., "The neighbor-joining method : A new method for reconstructing phylogenetic trees" 40 : 6-425, 1987

    4 Jain, R., "The evaluation of free and encapsulated Aspergillus awamori for phosphate solubilization in fermentation and soil-plant system" 46 : 90-94, 2010

    5 Thompson, J. D., "The clustal x windows interface : flexible strategies for multiple sequence alignment aided by quality analysis tools" 25 : 4876-4882, 1997

    6 Malboobi, M. A., "Solubilization of organic and inorganic phosphates by three highly efficient soil bacterial isolates" 25 : 1471-1477, 2009

    7 Son, H. J., "Solubilization of insoluble inorganic phosphates by a novel salt and pH tolerant Pantoea agglomerans R-42 isolated from soybean rhizosphere" 97 : 204-210, 2006

    8 Scervino, J. M., "Soil fungal isolates produce different organic acid patterns involved in phosphate salts solubilization" 46 : 755-763, 2010

    9 Nezarat, S., "Screening plant growth promoting rhizobacteria for improving seed germination, seedling growth and yield of maize" 12 : 26-32, 2009

    10 Donate-Correa, J., "Screening for plant growth-promoting rhizobacteria in Chamaecytisus proliferus(tagasaste), a forage tree-shrub legume endemic to the Canary Islands" 266 : 261-272, 2005

    11 SAS, "SAS/STAT User's Guide Version 8"

    12 Reyes, I., "Rock phosphate solubilization and colonization of maize rhizosphere by wild and genetically modified strains of Penicillium rugulosum" 44 : 39-48, 2002

    13 Feng, Y., "Rice endophyte Pantoea agglomerans YS19 promotes host plant growth and effects allocations of host photosynthates" 100 : 938-945, 2006

    14 Gutierrez, C. K., "Production of the phytohormone indole-3-acetic acid by the estuarine species of the genus Vibrio" 75 : 2253-2258, 2009

    15 Viruel, E., "Plant growth promotion traits of phosphobacteria isolated from puna, Argentina" 193 : 489-496, 2011

    16 Cimmino, A., "Phytohormone production by strain Pantoea agglomerans from knot on olive plants caused by Pseu-domonas savastanoi pv. savastanoi" 45 : 247-252, 2006

    17 Cappucino, J. C., "Microbiolgy : A laboratory manual" Cummings Publishing Company 125-179, 1992

    18 Penrose, D. M., "Methods for isolating and characterizing ACC deaminase-containing plant growthpromoting rhizobacteria" 118 : 10-15, 2003

    19 Viveros, O. M., "Mechanism and practical considerations involved in plant growth promotion by rhizobacteria" 10 : 293-319, 2010

    20 Kumar, S., "MEGA2 : molecular evolutionary genetics analysis software" 17 : 1244-1245, 2001

    21 Dastager, S. G., "Isolation and characterization of plant growthpromoting strain Pantoea NII-186 from Western Ghat forest soil, India" 2009

    22 Silini-Cherif, H., "Isolation and characterization of plant growth promoting traits of a rhizobacteria : Pantoea agglomerans Ima2" 15 : 267-276, 2012

    23 Zaidi, A., "Interactive effect of rhizotrophic microorganisms on yield and nutrient uptake of chickpea(Cicer arietinum L.)" 19 : 15-21, 2003

    24 Dave, A., "Impact of different carbon and nitrogen sources on phosphate solubilization by Pseudomonas fluorescens" 43 : 33-36, 2003

    25 Rahman, M. M., "Effect of high water temperature(33°C)on the clinical and virological outcome of experimental infections with white spot syndrome virus(WSSV)in specific pathogen-free(SPF)Litopenaeus vannamei" 261 : 842-849, 2006

    26 Relwani, L., "Effect of carbon and nitrogen sources on phosphate solubilisation by a wild type strain and UV-induced mutants of Aspergillus tubigensis" 57 : 401-406, 2008

    27 Khalim, K., "Effect of Pantoea agglomerans on growth promotion and yield of rice" 2 : 240-249, 2012

    28 Kausar, R., "Effect of ACC-deaminase Containing Rhizobacteria on Growth Promotion of Maize under Salinity Stress" 2 : 216-218, 2006

    29 Saleena, L. M., "Diversity of Azospirillum strains isolated from rice plants grown in saline and nonsaline sites of coastal agricultural ecosystem" 44 : 271-277, 2002

    30 Payne, S. M, "Detection, isolation and characterization of siderophores" 235 : 329-344, 1994

    31 Collavino, M. M., "Comparison of in vitro solubilization activity of diverse phosphate-solubilizing bacteria native to acid soil and their ability to promote Phaseolus vulgaris growth" 46 : 727-738, 2010

    32 Souchie, E. L., "Communities of P-solubilizing bacteria, fungi and arbuscular mycorrhizal fungi in grass pasture and secondary forest of Paraty, RJ-Brazil" 78 : 1-11, 2006

    33 Lugo, M. A., "Arbuscular mycorrhizal fungi and rhizospheric bacteria diversity along a altitudinal gradient in South American Puna grassland" 55 : 705-713, 2008

    34 Nautiyal, C. S, "An efficient microbiological growth medium for screening of phosphate solubilizing microorganisms" 170 : 265-270, 1999

    35 Murphy, J., "A modified single solution method for the determination of phosphate in mineral waters" 27 : 31-36, 1962

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    학술지 이력

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    연월일 이력구분 이력상세 등재구분
    2026 평가 재인증평가 신청대상 (재인증)
    2020-01-01 등재 등재학술지 유지 (재인증) KCI등재
    2017-01-01 등재 등재학술지 유지 (계속평가) KCI등재
    2013-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2010-01-01 등재 등재 1차 FAIL (등재유지) KCI등재
    2008-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2007-05-25 학술지명변경 한글명 : Korean Journal of Soil Science and Fertilizer -> 한국토양비료학회지(Korean Journal of Soil Science and Fertilizer) KCI등재
    2006-06-20 학술지명변경 한글명 : Korean Journal of Soil Science & Fertilizer -> Korean Journal of Soil Science and Fertilizer KCI등재
    2006-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2003-01-01 등재 등재학술지 선정 (등재후보2차) KCI등재
    2002-01-01 등재 등재후보 1차 PASS (등재후보1차) KCI등재후보
    2000-07-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.37 0.37 0.36
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.38 0.41 0.544 0.08
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