African Journal of
Agricultural Research

  • Abbreviation: Afr. J. Agric. Res.
  • Language: English
  • ISSN: 1991-637X
  • DOI: 10.5897/AJAR
  • Start Year: 2006
  • Published Articles: 6863

Full Length Research Paper

Phosphorus fertilization associated to inoculation of maize with diazotrophic bacteria

Adriano Mitio Inagaki
  • Adriano Mitio Inagaki
  • State University of West Parana, Unioeste, CCA/PPGA, Pernambuco Street No. 1777, P. O. Box 9, Zip Code 85960-000, City of Marechal Candido Rondon, Parana State, Brazil.
  • Google Scholar
Vandeir Francisco Guimarães
  • Vandeir Francisco Guimarães
  • State University of West Parana, Unioeste, CCA/PPGA, Pernambuco Street No. 1777, P. O. Box 9, Zip Code 85960-000, City of Marechal Candido Rondon, Parana State, Brazil.
  • Google Scholar
Luan Fernando Ormond Sobreira Rodrigues
  • Luan Fernando Ormond Sobreira Rodrigues
  • State University Paulista Júlio de Mesquita Filho - UNESP, Lageado Farm, Alcides Soares Highway, Km 3, Zip Code 18610-300, City of Botucatu, São Paulo State, Brazil.
  • Google Scholar
Mônica Bartira da Silva
  • Mônica Bartira da Silva
  • State University Paulista Júlio de Mesquita Filho - UNESP, Lageado Farm, Alcides Soares Highway, Km 3, Zip Code 18610-300, City of Botucatu, São Paulo State, Brazil.
  • Google Scholar
Marla Sílvia Diamante
  • Marla Sílvia Diamante
  • State University of West Parana, Unioeste, CCA/PPGA, Pernambuco Street No. 1777, P. O. Box 9, Zip Code 85960-000, City of Marechal Candido Rondon, Parana State, Brazil.
  • Google Scholar
Leandro Rampim
  • Leandro Rampim
  • State University of West Parana, Unioeste, CCA/PPGA, Pernambuco Street No. 1777, P. O. Box 9, Zip Code 85960-000, City of Marechal Candido Rondon, Parana State, Brazil.
  • Google Scholar
Thaísa Muriel Mioranza
  • Thaísa Muriel Mioranza
  • State University of West Parana, Unioeste, CCA/PPGA, Pernambuco Street No. 1777, P. O. Box 9, Zip Code 85960-000, City of Marechal Candido Rondon, Parana State, Brazil.
  • Google Scholar
José Barbosa Duarte Júnior
  • José Barbosa Duarte Júnior
  • State University of West Parana, Unioeste, CCA/PPGA, Pernambuco Street No. 1777, P. O. Box 9, Zip Code 85960-000, City of Marechal Candido Rondon, Parana State, Brazil.
  • Google Scholar


  •  Received: 31 August 2014
  •  Accepted: 10 October 2014
  •  Published: 27 November 2014

References

Alvarez VVH, Fonseca DM (1990). Definition of phosphorus levels to determine the phosphate maximum adsorption capacity and the response curves for greenhouse experiments. R. Bras. Cienc. Solo 14(1):49-55.
 
Baldani JI, Baldani VLD, Seldin, l, Döbereiner, J (1986). Characterization of Herbaspirillum seropedicae gen. nov., sp. nov., a root-associated nitrogen-fixing bacterium. Int. J. Syst. Bacteriol. Baltimore 36(1):86-93.
Crossref
 
Baldani JI, Baldani VLD (2005). History on the biological nitrogen fixation research in graminaceous plants: Special emphasis on the Brazilian experience. An. Acad. Bras. Cienc. 77(3):549-579.
Crossref
 
Baldotto LEB, Silva LGJ, Canellas LP, Olivares F L, Baldotto MA (2012). Initial growth of maize in response to application of rock phosphate, vermicompost and endophytic bacteria. Rev. Ceres 59(2):262-270.
Crossref
 
Carvalho DDC, Oliveira DF, Pasqual M, Campos VP (2009). Plant growth promoter producing rhizobacteria. Pesquisa Agropecuária Tropical, 39(4):338-341. 
 

Coelho AM, França GE de, Bahia Filho AFC. (2006). Nutrição e adubação do milho.

View

 

CONAB – Companhia Nacional de Abastecimento (2014). Indicadores da Agropecuária. Bras. Ano 22(4):90.

View

 
Cowan IR, Troughton JH (1971). The relative role of stomata in transpiration and assimilation. Planta, Berlin 97(4):325-336.
Crossref
 
Dartora J, Guimarães VF, Marini D, Sander G (2013). Nitrogen fertilization associated to inoculation with Azospirillum brasilense and Herbaspirillum seropedicae in the maize. Rev. Bras. Engenharia Agríc. Ambiental Campina Grande 17(10):1023–1029.
Crossref
 
Döbereiner J, Baldani VLD, Baldani JI (1995). Como isolar e identificar bactérias diazotróficas de plantas não-leguminosas. Itaguaí: Embrapa - CNPAB P. 60.
 
Döbereiner J (1953). Azotobacter em solos ácidos. Bol. Inst. Ecol. Exp. Agr. 11:1–36.
 

Döbereiner J (1966). Azotobacter paspali sp. nov., uma bactéria fixadora de nitrogênio na rizosfera de Paspalum. Pesq Agropec Bras 1:357–365.

View

 
Döbereiner J, De-Polli H (1980). Diazotrophic rhizocoenoses. Stewart D. P. & Gallon, J. R., ed. Nitrogen fixation. London: Academic Press, 1:301-334.
 
Döbereiner J, Ruschel AP (1958). Uma nova espécie de Beijerinkia. Rev. Biol. 1:261–272.
 
EMBRAPA (2013). Empresa Brasileira de Pesquisa Agropecuária. Sistema brasileiro de classificação de solos. 3rd ed. Bras. EMBRAPA P. 353.
 
Farquhar GD, Raschke K (1978). On the resistance to transpiration of the sites of evaporation within the leaf. Plant Physiology, Lancaster, 60(6):1000-1005. 
 
Ferreira DF (2011). Sisvar: A computer statistical analysis system. Cienc. Agrotecnol. 15(6):1039-1042. 
 
IBGE - Instituto Brasileiro de Geografia e Estatística (2014). Disponível em: 
 
Jain R, Saxena J, Sharma V. (2010). The evaluation of free and encapsulated Aspergillus awamori for phosphate solubilization in fermentation and soil-plant system. Appl. Soil Ecol. 46(1):90-94.
Crossref
 
Lana M do C, Dartora J, Marini D, Hann JEH (2012). Inoculation with Azospirillum, associated with nitrogen fertilization in maize. Rev. Ceres 59(13):399-405. 
Crossref
 
Marcos Filho J (2005). Fisiologia de sementes de plantas cultivadas. Piracicaba: Fealq P. 495.
 
Novais RF, Smyth TJ, Nunes FN (2007). Fósforo. In: Novais R.F., Alvarez V.H., Barros N.F., Fontes R.L.F., Cantarutti R.B., Neves J.C.L. (Eds.) /Fertilidade do solo. Viçosa: Soc. Bras. Ciênc. Solo pp. 471-550.
 
Rodrigues LFOS, Guimarães VF, Silva MB, Pinto Jr AS, Klein J, Costa ACPR (2014). Características agronômicas do trigo em função de Azospirillum brasilense, ácidos húmicos e nitrogênio em casa de vegetação. Rev. Bras.Engenharia Agríc. Ambiental, Campina Grande 18(1):31-37.
Crossref
 
Strzelczyk E, Kamper M, LI C. (1994). Cytokinin-like-substances and ethylene production by Azospirillum in media with different carbon sources. Microbiol. Res. 149(1):55-60.
Crossref
 
 
Strzelczyk E, Pokojska-Burdziej A (1984). Production of auxins and gibberellin-like substances by mycorrhizal fungi, bacteria and actinomycetes isolated from soil and the mycorrhizosphere of pine (Pinus silvestris L.). Plant Soil 81(2):185-194. .
Crossref
 
Taiz L, Zeiger E (2013). Assimilação de Nutrientes. In: Taiz, L.; Zeiger, E. Fisiologia Vegetal. Porto Alegre: Artmed P. 918.
 

USDA – United States Department of Agriculture. (2014). Wold Agricultural Supply and Demand Estimates. Disponível em:

View

 
Walpola BC, Yoon MH (2013). Phosphate solubilizing bacteria: Assessment of their effect on growth promotion and phosphorous uptake of mung bean (Vigna radiata [L.] R. Wilczek). Chilean J. Agric. Res. 73(3):275-281.
Crossref
 
Murty MG, Ladha JK (1988). Influence of Azospirillum inoculation on the mineral uptake and growth of rice under hydroponic conditions. Plant Soil 108(2):281-285.
Crossref
 
Souchie EL, Saggin Jr OJ, Silva EMR, Campello EFC, Azcón R, Barea JM (2006). Communities of P-solubilizing bacteria, fungi and arbuscular mycorrhizal fungi in grass pasture and secondary forest of Paraty, RJ-Brazil. Anais da Academia Brasileira de Ciências, 78(1):183-193.
Crossref
 
Hameeda B, Harini G, Rupela OP, Wani SP, Reddy G (2008). Growth promotion of maize by phosphate-solubilizing bacteria isolated from composts and macrofauna. Microbiol. Res. 163(2):234-242.
Crossref