Application of Phosphate Solubilizing Fungi Indegenous Paddy Soil Increased P Availability, Rice Growth and Production
Abstract
Keywords
Full Text:
PDFReferences
Buckman, H.O. and N.C. Brady. 1956. The Nature and Properties of Soils.5th ed. Macmillan, New York.
Doberman, A., T. Fairhust. 2000. Nutrient Disorders and Nutrient Management. International Rize Research Institute, Manila, Philippines.
El-Azouni, I. M. 2008. Effect of phosphate solubilizing fungi on growth and nutrient uptake of soybean (Glycine max L.) plants. J. Appl. Sci. Res. 4:592-598.
Fitriatin, BN. B Joy and T Subroto. 2008. The Influence of Organic Phosphorous substrate on Phosphatase Activity of Soil Microbes.2008.Paper Presented on International Seminar of Chemistry. Bandung.
Fitriatin, B. M., A. Yuniarti., O. Mulyani., F. S. Fauziah., M. D. Tiara. 2009The effect of phosphate solubilizing microbes and P fertilizer on available P, phosphatase activity, plant P and upland rice yields on ultisols. J. Agrikultura 20:210-215.
Jones, U.S. 1982. Fertilizers and Soil Fertility.2nd ed. Reston Publ. Co.Reston, Virginia.
Lestari, P. 1994. Effect of phosphate solubilizing fungi on P nutrient uptake and maize plant growth. Thesis . Faculty of Agriculture, Bogor Agricultural University
Mehrvarz, S., M. R. Chaichi, H. A. Alikhani.2008. Effect of phosphate solubilizing microorganisms and phosphorus chemical fertilizer on yield components of barley (Hordeum vulgare L.). American Eurasian J. Agric. & Environ. Sci. 3:822-828.
Prihatini, T., S. Komariah, A. Hamzah, dan E. Suhaeti. 1997. Biological P residue mining in paddy fields. p. 89-98 In Proceedings of Soil Research.
Puspitawati M. D., Sugiyanta, I. Anas. 2013. Utilization of phosphate solubilizing microbes to reduce the dose of inorganic P fertilizer in lowland rice. J. Agron. Indonesia 41:88-195.
Saraswati. R., Tini Prihatini, dan Ratih Dewi Hastuti. 2004. Fungi Fertilizer Technology to Improve Fertilization Efficiency and Sustainable Rice Field Production System in Rice Fields and Management Technology. Ed: Agus Facmudin et al. Center for Soil and Agroclimate Research and Development. Research and Development Front
Setyowati N., H. Bustaman, M. Derita. 2003. Reduction of root rot disease and weed growth in lettuce plants fertilized by microbes. J. Indonesian Agricultural Sciences 5 :48-57.
Vallverde, A., A. Burgos, T. Fiscella, R. Rivas, E. Velazquez, C. Rodriguez-Barrueco, E. Cervantes, M. Chamber, J.M. Igual. 2006. Differential effects of co-inoculations with Pseudomonas jessenii PS06 (a phosphate-solubilizing bacterium) and Mesorhizobium ciceri c- 2/2 strains on the growth and seed yield of chickpea under greenhouse and field conditions. Plant Soil 287:43-50.
Wibowo, S. T., Hamim, A.T. Wahyudi. 2009. IAA content, nutrient uptake and production of corn and peanuts in response to the application of biofertilizers. J. Indonesian Agricultural Science 14: 177-183.
Yafizham. 2003. Application of phosphate solubilizing fungi and P fertilizer on peanut production in red yellow podzolic soil . J. Agrotrop. VIII(1): 18-22.
DOI: https://doi.org/10.33258/birex.v3i3.2094
Article Metrics
Abstract view : 126 timesPDF - 49 times
Refbacks
- There are currently no refbacks.

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.