415
Views
13
CrossRef citations to date
0
Altmetric
Original Articles

Pseudomonas striata for Improving Phosphorus Availability in Soil under Pearl Millet Cultivation

Pages 255-271 | Received 03 Sep 2012, Accepted 14 Dec 2012, Published online: 20 Mar 2013

REFERENCES

  • Adesemoye , A. , Joseph , O. and Kloepper , W. 2009 . Plant-microbes interactions in enhanced fertilizer-use efficiency . Appl. Microbiol. Biotechnol , 85 ( 1 ) : 1 – 12 .
  • Braum , S. M. and Helmke , P. A. 1995 . White lupin utilizes soil P that is unavailable to soybean . Plant Soil , 176 ( 1 ) : 95 – 100 .
  • Engelen , A. J. , Vander Heft , F. C. P. , Randsdorp , H. G. and Somers , W. A. C. 2001 . Determination of phytase activity in feed by colorimetric enzymatic methods . Collaborative interlaboratory study. J. AOAC Int , 84 : 629 – 633 .
  • Gadagi , R. S. and Sa , T. 2002 . New isolation method for microorganisms solubilizing iron and aluminium phosphates using dyes . Soil Sci. Plant Nutr , 48 : 615 – 618 .
  • Gordon , S. and Weber , R. P. 1951 . Production of indole acetic acid by bacteria . Plant Physiol , 26 : 192 – 194 .
  • Gyaneshwar , P. , Kumar , G. Naresh , Parekh , P. and Poole , P. S. 2002 . Role of soil microorganisms in improving P nutrition of plants . Plant Soil , 245 : 83 – 93 .
  • Hill , J. E. , Kysela , D. and Elimelech , M. 2007 . Isolation and assessment of phytate hydrolyzing bacteria from the DelMar Va Penninsula . Enviro. Microbiol , 9 : 3,100 – 3,107 .
  • Hwangbo , H , Park , R. D. , Kim , Y. W , Rim , Y .S , Park , K. H. , Kim , T. H. , Suh , J. S. and Kim , K. Y. 2003 . 2-Ketogluconic production and phosphate solubilization by Enterobacter intermedium . Curr. Microbiol , 47 : 87 – 92 .
  • Jackson , M. L. 1973 . Soil chemical analysis , New Delhi , India : Prentice Hall of India Pvt Ltd .
  • Jones , D. L. 1998 . Organic acids in the rhizosphere—a critical review . Plant Soil , 157 : 1 – 9 .
  • Jorquera , M. , Martinez , O. , Maruyama , F. , Marschner , P. and Mora , M. de la. luz. 2008 . Current and future biotechnological application of bacterial phytases and phytase producing bacteria . Microbes Environ , 23 : 182 – 191 .
  • Jorquera , M. A. , Hernandez , M. T. , Rengel , Z. , Marschner , P. and Mora , M. de la. luz. 2008 . Isolation of culturable phsophobacteria with both phytate-mineralization and phosphate-solubilization activity from the rhizosphere of plants grown in volcanic soil . Biol. Fertil. Soils , 44 : 1,025 – 1,034 .
  • Kerovou , J. , Lauraeus , M. , Nurminen , P. , Kalkkinen , N. and Apajalahti , J. 1998 . Isolation, characterization, molecular gene cloning, and sequencing of a novel phytase from Bacillus subtilis . Appl. Environ. Microbiol , 64 : 2,079 – 2,085 .
  • Khan , M. S. , Zaidi , A. , Ahemad , M. , Oves , M. and Wani , P. A. 2010 . Plant growth promotion by phosphate solubilising fungi: Current perspective . Arch. Agron. Soil Sci , 56 : 73 – 98 .
  • Konietzny , U. and Greiner , R. 2004 . Bacterial phytase: potential application, In vivo function, and regulation of its synthesis . Brazilian J. Microbiol , 35 : 11 – 18 .
  • Marilley , L. and Aragno , M. 1999 . Phytogenetic diversity of bacterial communities differing in degree of proximity of Lolium perenne and Trifolium repens roots . Appl. Soil Ecol , 13 : 127 – 136 .
  • Marschner , P. , Solaiman , Z. and Rengel , Z. 2005 . Growth, phosphorus uptake and rhizosphere microbial-community composition of a phosphorus-efficient wheat cultivar in soils differing in pH . J. Plant Nutr. Soil Sci , 168 : 343 – 351 .
  • Nareshkumar , G. July 16–19 2002 . Biochemistry of mineral phosphate solubilization. In First International meeting on microbial phosphate solubilization held at Salamanca July 16–19 , 25 – 26 . Spain
  • Oliveira , C. A. , Alves , V. M. C. , Marriel , I. E. , Gomes , E. A. , Scotti , M. R. , Carneiro , N. P. , Guimaraes , C. T. , Schaffert , R. E. and Sa , N. M. H. 2009 . Phosphate solubilizing microorganisms isolated from rhizosphre of maize cultivated in an oxisol of Brazilian Cerrado Biome . Soil Biol. Biochem. , 42 : 1,782 – 1,787 .
  • Olsen , S. R. , Cole , C. V. , Watanabe , F. S. and Dean , L. A. 1954 . Estimation of available phosphorus in soil by extraction with sodium bicarbonate. United Sates Department of Agriculture Circular No. 939 , Washington , DC : US Government Printing Office .
  • Panse , V. G. and Sukhatme , P. V. 1978 . Statistical methods for agricultural workers , New Delhi , India : Indian Council of Agricultural Research .
  • Patel , K. J. , Singh , A. K. , Nareshkumar , G. and Archna , G. 2010 . Organic acid producing and phytate mineralizing rhizobacteria and their effect on growth of pigeon pea (Cajanus cajan) . Appl. Soil Ecol , 44 : 252 – 261 .
  • Pikovskaya , R. I. 1948 . Mobilization of phosphorus in soil in connection with vital activity of some microbial species . Microbiologiya , 17 : 362 – 370 .
  • Rodriguez , H. , Fraga , R. , Gonzalez , T. and Bashan , Y. 2006 . Genetics of phosphate solubilization and its potential application for improving plant growth promoting bacteria . Plant Soil , 287 : 15 – 21 .
  • Richardson , A. F. 2001 . Prospects for using soil microorganisms to improve the acquisition of phosphorus by plants . Aust. J. Plant Physiol , 28 : 897 – 906 .
  • Tabatabai , M. A. and Bremner , J. M. 1969 . Use of p-nitrophenyl phosphate assay of soil phosphatase activity . Soil Biol. Biochem , 1 : 301 – 307 .
  • Tarafdar , J. C. and Jungk , A. 1987 . Phosphatase activity in the rhizosphere and its relation to depletion of soil organic phosphorus . Biol. Fertil. Soils , 3 : 199 – 204 .
  • Unno , Y. , Okubo , K. , Wasaki , J. , Shinano , T. and Osaki , M. 2005 . Plant growth promotion abilities and microscale bacterial dynamics in the rhizospere of lupin analyzed by phytate utilization ability . Environ. Microbiol , 7 : 396 – 404 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.