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      Isolation and Characterization of Phosphate Solubilizing Pseudomonas Species and Their Effect on Plant Growth Promotion

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      https://www.riss.kr/link?id=A106455842

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      다국어 초록 (Multilingual Abstract)

      Plant growth-promoting rhizobacteria (PGPR) affect plant growth via various direct or indirect mechanisms. In this study, eight different Pseudomonas strains (PM1 - PM8) isolated from rhizospheric soil were characterized plant growth-promoting charact...

      Plant growth-promoting rhizobacteria (PGPR) affect plant growth via various direct or indirect mechanisms. In this study, eight different Pseudomonas strains (PM1 - PM8) isolated from rhizospheric soil were characterized plant growth-promoting characteristics, including indole-3-acetic acid (IAA) and Gibberellin (GA3) production, phosphate solubilization, 1- aminocyclopropane-1-carboxylic acid (ACC) deaminase activity and effects of direct inoculation on plant growth parameters (fresh weight, shoot length). All of these strains have their ability for solubilization of insoluble phosphate depending on pH decrease at the range around pH4 - 5 at 2 days after inoculation. PM1, PM4, PM5 and PM7 species was capable of IAA production and PM4, PM5, PM7 and PM8 species have high activity for production of gibberellin (GA3) hormone. For ACC deaminase activity, PM1, PM3 and PM8 show high activity. Furthermore, all these species have significantly promoted the growth of the lettuce seedling plants for fresh weight and shoot length enhancement, so that these Pseudomonas species could be used as potential bio-fertilizer agents.

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      참고문헌 (Reference)

      1 Leveau, J. H. J., "Utilization of the plant hormone indole-3-acetic acid for growth by Pseudomonas putida strain 1290" 71 : 2365-2371, 2005

      2 Saitou, N., "The neighbor-joining method : a new method for reconstructing phylogenic trees" 4 : 406-425, 1987

      3 Glick, B. R, "The enhancement of plant growth by free living bacteria" 4 : 1109-1114, 1995

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

      5 Holbrook, A., "Spectrophotometric method for determination of gibberellic acid" 28 : 159-167, 1961

      6 Illmer, P. A., "Solubilization of inorganic phosphates by microorganisms isolated from forest soil" 24 : 389-395, 1992

      7 SAS, "SAS/STAT User’s Guide Version 8"

      8 Steel, R.G.D., "Principles and procedures of statistics" McGraw Hill Book Co. Inc 1980

      9 Lugtenberg, B., "Plant-growth-promoting rhizobacteria" 63 : 541-556, 2009

      10 Bhattacharyya, P. N., "Plant growth-promoting rhizobacteria(PGPR) : emergence in agriculture" 28 : 1327-1350, 2012

      1 Leveau, J. H. J., "Utilization of the plant hormone indole-3-acetic acid for growth by Pseudomonas putida strain 1290" 71 : 2365-2371, 2005

      2 Saitou, N., "The neighbor-joining method : a new method for reconstructing phylogenic trees" 4 : 406-425, 1987

      3 Glick, B. R, "The enhancement of plant growth by free living bacteria" 4 : 1109-1114, 1995

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

      5 Holbrook, A., "Spectrophotometric method for determination of gibberellic acid" 28 : 159-167, 1961

      6 Illmer, P. A., "Solubilization of inorganic phosphates by microorganisms isolated from forest soil" 24 : 389-395, 1992

      7 SAS, "SAS/STAT User’s Guide Version 8"

      8 Steel, R.G.D., "Principles and procedures of statistics" McGraw Hill Book Co. Inc 1980

      9 Lugtenberg, B., "Plant-growth-promoting rhizobacteria" 63 : 541-556, 2009

      10 Bhattacharyya, P. N., "Plant growth-promoting rhizobacteria(PGPR) : emergence in agriculture" 28 : 1327-1350, 2012

      11 Backer, R., "Plant growth-promoting rhizobacteria : context, mechanisms of action, and roadmap to commercialization of bostimulants for sustainable agriculture" 9 : 1473-, 2018

      12 Santoro, M. V., "Plant growth-promoting effects of native Pseudomonas strains on Mentha piperita(peppermint) : an in vitro study" 17 : 1218-1226, 2015

      13 Gupta, G., "Plant growth promoting rhizobacteria(PGPR) : current and future prospects for development of sustainable agriculture" 7 : 96-102, 2015

      14 Vessey, J. K, "Plant growth promoting rhizobacteria as biofertilizers" 255 : 571-586, 2003

      15 Jong-SooJeon, "Plant Growth Promotion in Soil by Some Inoculated Microorganisms" 한국미생물학회 41 (41): 271-276, 2003

      16 Khan, A. A., "Phosphorus solubilizing bacteria : occurrence, mechanisms and their role in crop production" 1 : 48-58, 2009

      17 Castagno, L. N., "Phosphate-solubilization mechanism and in vitro plant growth promotion activity mediated by Pantoea eucalypti isolated from Lotus tenuis rhizosphere in the Salado River Basin(Argentina)" 110 : 1151-1165, 2011

      18 Sharma, S. B., "Phosphate solubilizing microbe : sustainable approach for managing phosphorus deficiency in agricultural soils" 2 : 587-, 2013

      19 Rodriguez, H., "Phosphate solubilizing bacteria and their role in plant growth promotion" 17 : 319-339, 1999

      20 Rengel, Z., "Nutrient availability and management in the rhizosphere : exploiting genotypic differences" 168 : 305-312, 2005

      21 Bloemberg, G. V., "Molecular basis of plant growth promotion and biocontrol by rhizobacteria" 4 : 343-350, 2001

      22 Pikovskaya, R. I, "Mobilization of phosphorus in soil in connection with vital activity of some microbial species" 17 : 362-370, 1948

      23 Beattie, G. A, "Microbiomes : curating communities from plants" 528 : 340-341, 2015

      24 Pii, Y., "Microbial interactions in the rhizosphere : beneficial influences of plant growth-promoting rhizobacteria on nutrient acquisition process" 51 : 403-415, 2015

      25 Penrose, F. D. M., "Methods for isolating and characterizing ACC deaminase-containing plant growth promoting rhizobacteria" 118 : 10-15, 2003

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

      27 Islam, S., "Isolation and identification of plant growth promoting rhizobacteria from cucumber rhizosphere and their effect on plant growth promotion and disease suppression" 6 : 1360-, 2016

      28 Heydarian, Z., "Inoculation of soil with plant growth promoting bacteria producing 1-aminocyclopropane-1-carboxylate deaminase or expression of the corresponding acds gene in transgenic plants increases salinity tolerance in camelina sativa" 7 : 1966-, 2016

      29 Omer, Z. S., "Indole-3-acetic acid production by pink-pigmented facultative methylotrophic bacteria" 43 : 93-96, 2004

      30 Ellis, R. J., "Identification of conserved traits in fluorescent pseudomonads with antifungal activity" 2 : 274-284, 2000

      31 Dey, R., "Growth promotion and yield enhancement of peanut(Arachishypogaea L. )by application of plant growth promoting rhizobacteria" 159 : 371-394, 2004

      32 Garrido-Sanz, D., "Genomic and genetic diversity within the Pseudomonas fluorescens complex" 11 : e0150183-, 2016

      33 Morgan, P. W., "Ethylene and plant responses to stress" 100 : 620-630, 1997

      34 Saber, K., "Effect of P on nodule formation and N fixation in bean" 25 : 389-393, 2005

      35 Loper, J. E., "Comparative genomics of plant-associated Pseudomonas spp. : insights into diversity and inheritance of traits involved in multitrophic interactions" 8 : e1002784-, 2012

      36 Gordon, S. A., "Colorimetric estimation of indole acetic acid" 2 : 192-195, 1951

      37 Glick, B. R, "Bacteria with ACC deaminase can promote plant growth and help to feed the world" 169 : 30-39, 2014

      38 Bender, S. F., "An underground revolution : biodiversity and soil ecological engineering for agricultural sustainability" 31 : 440-452, 2016

      39 Gupta, S., "ACC deaminase producing bacteria with multifarious plant growth promoting traits alleviates salinity stress in french bean(Phaseolus vulgaris)plants" 10 : 1506-, 2019

      40 Bal, H. B., "ACC deaminase and IAA producing growth promoting bacteria from the rhizosphere soil of tropical rice plants" 53 : 972-984, 2013

      41 Murphy, J., "A modified single solution method for the determination of phosphate in natural waters" 27 : 265-270, 1962

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2026 평가예정 재인증평가 신청대상 (재인증)
      2020-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2017-01-01 평가 등재학술지 유지 (계속평가) KCI등재
      2013-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2010-01-01 평가 등재 1차 FAIL (등재유지) KCI등재
      2008-01-01 평가 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 평가 등재학술지 유지 (등재유지) KCI등재
      2003-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2002-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2000-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      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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