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Original Articles

Impact of plant genotype and nitrogen level on rice growth response to inoculation with Azospirillum sp. strain B510 under paddy field conditions

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Pages 636-644 | Received 02 Jan 2010, Accepted 14 Jun 2010, Published online: 21 Dec 2010

References

  • Bashan , Y and Holguin , G . 1997 . Azospirillum-plant relationships: environmental and physiological advances (1990–1996) . Can. J. Microbiol. , 43 : 103 – 121 .
  • Bhattarai , T and Hess , D . 1993 . Yield responses of Nepalese spring wheat (Triticum aestivumL.) cultivars to inoculation with Azospirillumspp. of Nepalese origin . Plant Soil , 151 : 67 – 76 .
  • Chela , GS , Tiwana , MS , Thind , IS , Puri , KP and Kaur , K . 1993 . Effect of bacterial cultures and nitrogen fertility on the yield and quality of maize fodder (Zea maysL.) . Ann. Biol. , 9 : 83 – 86 .
  • Christiansen-Weniger , C , Groneman , AF and van Veen , JA . 1992 . Associative N2fixation and root exudation of organic acids from wheat cultivars of different aluminium tolerance . Plant Soil , 139 : 167 – 174 .
  • Coelho , MRR , Marriel , IE , Jenkins , SN , Lanyon , CV , Seldin , L and O’Donnell , AG . 2009 . Molecular detection and quantification of nifHgene sequences in the rhizosphere of sorghum (Sorghum bicolor) sown with two levels of nitrogen fertilizer . Appl. Soil Ecol. , 42 : 48 – 53 .
  • Dobbelaere , S , Croonenborghs , A Thys , A . 2001 . Responses of agronomically important crops to inoculation with Azospirillum . Aust. J. Plant Physiol. , 28 : 871 – 879 .
  • Dubeikovsky , AN , Mordukhova , EA , Kochetkov , VV , Polikarpova , FY and Boronin , AM . 1993 . Growth promotion of blackcurrant softwood cuttings by recombinant strain Pseudomonas fluorescens BSP53a synthesizing an increased amount of indole-3-acetic acid . Soil Biol. Biochem. , 25 : 1277 – 1281 .
  • Ebana , K , Kojima , Y , Fukuoka , S , Nagamine , T and Kawase , M . 2008 . Development of mini core collection of Japanese rice landrace . Breed. Sci. , 58 : 281 – 291 .
  • El Zemrany , H , Czarnes , S , Hallett , PD , Alamercery , S , Bally , R and Jocteur Monrozier , L . 2007 . Early changes in root characteristics of maize (Zea mays) following seed inoculation with the PGPR Azospirillum lipoferumCRT1 . Plant Soil , 291 : 109 – 118 .
  • Elbeltagy , A , Nishioka , K Sato , T . 2001 . Endophytic colonization and in plantanitrogen fixation by a Herbaspirillumsp. isolated from wild rice species . Appl. Environ. Microbiol. , 67 : 5285 – 5293 .
  • Elliott , LF and Lynch , JM . 1985 . Plant growth-inhibitory pseudomonads colonizing winter wheat (Triticum aestivumL.) roots . Plant Soil , 84 : 57 – 65 .
  • Fallik , E and Okon , Y . 1996 . The response of maize (Zea mays) to Azospirilluminoculation in various types of soils in the field . World J. Microbiol. Biotechnol. , 12 : 511 – 515 .
  • Garcia De Salomone , I and Dobereiner , J . 1996 . Maize genotype effects on the response to Azospirilluminoculation . Biol. Fertil. Soils , 21 : 193 – 196 .
  • Gyaneshwar , P , James , EK , Reddy , PM and Ladha , JK . 2002 . Herbaspirillumcolonization increases growth and nitrogen accumulation in aluminium-tolerant rice varieties . New Phytol. , 154 : 131 – 145 .
  • Hartman , A and Baldani , JI . 2006 . In the genus Azospirillum , New York : Springer .
  • Ikeda , S , Okubo , T Kaneko , T . 2010 . Community shifts of soybean stem-associated bacteria responding to different nodulation phenotypes and N levels . ISME J , 4 : 315 – 326 .
  • Isawa , T , Yasuda , M , Awazaki , H , Minamisawa , K , Shinozaki , S and Nakashita , H . 2010 . Azospirillumsp. strain B510 enhances rice growth and yield . Microbes Environ. , 1 : 58 – 61 .
  • Kaneko , T , Minamisawa , K Isawa , T . 2010 . Complete genomic structure of the cultivated rice endophyte Azospirillumsp. B510 . DNA Res. , 17 : 37 – 50 .
  • Kanemura , T , Homma , K , Ohsumi , A , Shiraiwa , T and Horie , T . 2007 . Evaluation of genotypic variation in leaf photosynthetic rate and its associated factors by using rice diversity research set of germplasm . Photosynth. Res. , 94 : 23 – 30 .
  • Kesava Rao , PS , Arunachalam , V and Tilak , KVBR . 1990 . Genotype-dependent response to Azospirillumtreatment in yield and nitrogenase activity in Brassica juncea . Curr. Sci. , 59 : 607 – 609 .
  • Kojima , Y , Ebana , K , Fukuoka , S , Nagamine , T and Kawase , M . 2005 . Development of an RFLP-based rice diversity research set of germplasm . Breed. Sci. , 55 : 431 – 440 .
  • Lynch , JM . 1982 . “ Interactions between bacteria and plants in the root environment ” . In Bacteria and plants , Edited by: Rhodes-Roberts , ME and Skinner , FA . 1 – 23 . New York : Academic Press .
  • Mano , H and Morisaki , H . 2008 . Endophytic bacteria in the rice plant . Microbes Environ. , 23 : 109 – 117 .
  • Okon , Y and Labandera-Gonzalez , CA . 1994 . Agronomic applications of Azospirillum: an evaluation of 20 years worldwide field inoculation . Soil Biol. Biochem. , 26 : 1591 – 1601 .
  • Pedraza , RO , Bellone , CH , Carrizo de Bellone , S , Boa Sorte , PMF and Teixeira , KRdS . 2009 . Azospirilluminoculation and nitrogen fertilization effect on grain yield and on the diversity of endophytic bacteria in the phyllosphere of rice rainfed crop . Eur. J. Soil Biol. , 45 : 36 – 43 .
  • Roesti , D , Gaur , R Johri , BN . 2006 . Plant growth stage, fertiliser management and bio-inoculation of arbuscular mycorrhizal fungi and plant growth promoting rhizobacteria affect the rhizobacterial community structure in rain-fed wheat fields . Soil Biol. Biochem. , 38 : 1111 – 1120 .
  • Romero , AM , Correa , OS , Moccia , S and Rivas , JG . 2003 . Effect of Azospirillum-mediated plant growth promotion on the development of bacterial diseases on fresh-market and cherry tomato . J. Appl. Microbiol. , 95 : 832 – 838 .
  • Rudrappa , T , Czymmek , KJ , Pare , PW and Bais , HP . 2008 . Root-secreted malic acid recruits beneficial soil bacteria . Plant Physiol. , 148 : 1547 – 1556 .
  • Saito , A , Ikeda , S , Ezura , H and Minamisawa , K . 2007 . Microbial community analysis of the phytosphere using culture-independent methodologies . Microbes Environ. , 22 : 93 – 105 .
  • Saito , A , Kawahara , M , Ikeda , S , Ishimine , M , Akao , S and Minamisawa , K . 2008 . Broad distribution and phylogeny of anaerobic endophytes of cluster XlVa clostridia in plant species including crops . Microbes Environ. , 23 : 73 – 80 .
  • Spaepen , S , Dobbelaere , S , Croonenborghs , A and Vanderleyden , J . 2008 . Effects of Azospirillum brasilenseindole-3-acetic acid production on inoculated wheat plants . Plant Soil , 312 : 15 – 23 .
  • Suzuki , K , Okazaki , K , Tawaraya , K , Osaki , M and Shinano , T . 2009 . GC-MS associated global analysis of rice root exudates under aseptical condition . Soil Sci. Plant Nutr. , 55 : 505 – 513 .
  • Tsunoda , S . 1987 . Distribution, properties and phylogenetic relations of Asian upland rice varieties . Southeast Asian Stud. , 25 : 39 – 50 . In Japanese with English summary
  • Uga , Y , Ebana , K , Abe , J , Morita , S , Okuno , K and Yano , M . 2009 . Variation in root morphology and anatomy among accessions of cultivated rice (Oryza sativaL.) with different genetic backgrounds . Breed. Sci. , 59 : 87 – 93 .
  • Watanabe , I and Lin , C . 1984 . Response of wetland rice to inoculation with Azospirillum lipoferumand Pseudomonassp . Soil Sci. Plant Nutr. , 30 : 117 – 124 .
  • Xie , CH and Yokota , A . 2005 . Azospirillum oryzaesp. nov., a nitrogen-fixing bacterium isolated from the roots of the rice plant Oryza sativa . Int. J. Syst. Evol. Microbiol. , 55 : 1435 – 1438 .
  • Yasuda , M , Isawa , T , Minamisawa , K , Shinozaki , S and Nakashita , H . 2009 . Effects of colonization of a bacterial endophyte, Azospirillumsp. B510a on disease resistance in rice . Biosci. Biotechnol. Biochem. , 12 : 2595 – 2599 .

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