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DAFTAR REFERENSI

Ahmad, F. Iqbal A., M.S. Khan. 2008. Screening of free-living rhizospheric bacteria for their multiple plant growth promoting activities. Microbiological Research 163 : 173-181.

Akbari, Gh. A., S.M. Arab, H.A.Alikhani, I. Allahdadi, M.H.Arzanesh. 2007. Isolation and selection of Indigenous Azospirillum spp. and the IAA of superior strains effects on wheat roots. World Journal of Agricultural Sciences 3 (4) : 523-529.

Badan Pusat Statistik. 2014. Berita Resmi Statistik : Produksi Padi, Jagung, dan Kedelai (Angka Sementara tahun 2013), No. 22/ Th. XVII, 3 Maret 2014.

Bashan Y, L.E. de-Bashan. 2002. Protection of tomato seedlings against infection by

Pseudomonas syringae pv. tomato by using the plant growth-promoting bacterium

Azospirillum brasilense. Appl. Environ. Microbiol. 68(6):2637–2643.

Bashan Y, de-Bashan LE. 2010. How to Plant Growth-Promoting Bacterium Azospirillum promotes plant-growth, A critical assessment. Elsevier Inc.

Bashan, Y., G. Holguin, L.E. De-Bashan. 2004. Azospirillum-plant Relationships: Physiological, Molecular, Agricultural, and Environmental Advances (1997-2003).

Can. J. Microbiol. 50 : 521-577.

Beyeler, M., P. Michaux, C. Keel, and D. Haas. 1997. Effect of enhanced production of indole-3-acetic acid by the biological control agent Pseudomonas fluorescens CHA0 on plant growth.

Bloemberg, G.V. and Luglenberg B.J.J. 2001. Molecular Basis of Plant Growth Promotion and Biocontrol by Rhizobacteria. Curr. Opinion Plant Biol. 4 : 343-350.

Bowen, G.D., and Rovira, A.D. 1999. The Rhizosphere and Its Management to Improve Plant Growth. Adv. Agron. 66 : 1-102.

Chen, Y.P., P.D. Rekha, A.B. Arun, F.T. Shen, W. A. Lai, C.C. Young. Phosphate solubilizing bacteria from subtropical soil and their tricalcium phosphate solubilizing abilities. Applied Soil Ecology 34 : 33-41

Copeland, L.O. and Donald M.C. Principles of Seed Science and Technology, Third Edition. Chapmond and Hall. New York.

Dey R., Pal K.K., Bhatt D.M., Chauhan S.M. 2004. Growth Promotion and Yield Enhancement of Peanut (Arachis hypogaea L.) by Application of Plant Growth-Promoting Rhizobacteria. Microbiol. Res. 159 : 371-394.

Glick, B.R. 1995. The enhancement of plant growth by free-living bacteria. Can. J.Microbiol. 4: 109-117.

Glick, B. R., D. M. Penrose, and J. Li. 1998. A model for the lowering of plant ethylene concentrations by plant growth-promoting rhizobacteria. J. Theor. Biol. 190:63–68.

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38

Glick, B.R. 2005. Modulation of plant ethylene levels by the bacterial enzyme ACC Deaminase. FEMS Microbiology Letters 251 : 1-7

Gupta S, Arora DK, Srivastava AK. 1995. Growth promotion of tomato plants by rhizobacteria and imposition of energy stress on Rhizoctonia solani. Soil Biol Biochem. 27:1051–1058

Holguin G., and Glick B.R. 2001. Expression of the ACC Deaminase gene from Enerobacter cloacae UW4 in Azospirillum brasilense. Microbial Ecology 41 : 281-288.

Hussain, M. I., H. N. Ashgar, M. Arshad, and M. Shahbaz. 2013. Screening of Multi-traits Rhizobacteria to Improve Maize Growth Under Axenic Conditions. The Journal of Animal & Plant Sciences 23 (2) : 514-520.

Husen, E. and R. Saraswati. 2005. Effect of IAA-Producing bacteria on growth of hot pepper. J. Microbiol. Indones. 2 : 107-111.

Husen, E. A.T. Wahyudi, A. Suwanto, R.Saraswati. 2009. Soybean seedling root growth promotion by 1-aminocyclopropane-1-carboxylate deaminase-producing

Pseudomonas. Indonesian Journal of Agricultural Science 10 (1) : 19-25.

Iqbal, A., S. Hasnain. 2013. Auxin Producing Pseudomonas Strains : Biological Candidates to Modulate the Growth of Triticum aestivum Beneficially. American Journal of Plant Sciences 4 : 1693-1700.

Kumar, N.R., Arasu V.T., Gunasekaran P. 2002. Genotyping of Antifungal Compounds Producing Plant Promoting Rhizobacteria, Pseudomonas fluorescens. Curr. Sci. 82 : 1463-1466.

Lestari, P., D.N. Susilowati, E.I. Riyanti. 2007. Pengaruh hormon asam indol asetat yang dihasilkan oleh Azospirillum sp. terhadap perkembangan akar padi. Jurnal Agro Biogen. 3 (2): 66-71.

Louden, B.C., Daniel H., Aaron M.L. 2011. Use of Blue Agar CAS Assay for Siderophore Detection. Journal of Microbiology and Biology Education 12 (1) : 51-53

Manivannan, M., Ganesh P., Suresh Kumar., R. Tharmaraj K., and Shiney Ramya B. 2012. Isolation, Screening, Characterization, and Antagonism Assay of PGPR Isolates from Rhizosphere of Rice Plants in Cuddalore District. International Journal of Pharmaceutical & Biological Archives 3 (1) : 179-185.

Mia, M.A.B., Z.H. Shamsuddin, Z. Wahab, M. Marziah. 2010. Effect of plant growth promoting rhizobacterial (PGPR) inoculation on growth and nitrogen incorporation of tissue-cultured Musa plantlets under nitrogen-free hydroponics condition.

Australian Journal of Crop Science 4 (2) : 85-90.

Nezarat S., A. Gholami. 2009. Screening Plant Growth Promoting Rhizobacteria for Improving Seed Germination, Seedling Growth, and Yield of Maize. Pakistan Journal of Biological Sciences 12 (1) : 26-32.

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39

Oedjijono, E. S. Soetarto, S. Moeljopawiro, H. A. Djatmiko. 2014. Promising Plant Growth Promoting Rhizobacteria of Azospirillum spp. Isolated from Iron Sand Soils, Purworejo Coast, Central Java, Indonesia. Advances in Applied Science Research 5 (3) : 302-308.

Oedjijono, Ryandini, D., Prayogo, L. Isolasi Azospirillum sp. dan Uji Kemampuannya dalam Meningkatkan Pertumbuhan Tanaman Jagung (Zea mays L.). Biosfera 5: 9-18. Ona, O., I. Smets., P.Gysegom., K. Bernaerts, J.V. Impe, E. Prinsen, J. Vanderleyden. 2003. The effect of pH on Indole-3-Acetic acid (IAA) biosynthesis of Azospirillum brasilense sp7. Symbiosis, 35 : 199-208.

Patten. C.L., B.R. Glick. 2002. Role of Pseudomonas putida indole-acetic acid in Development of The Host Plant Root System. Appl. Environ. Microbiol. 68 : 3795-3801.

Penrose, D.M., and B.R. Glick. 2003. Methods for Isolating and Characterizing ACC deaminase-containing plant growth-promoting Rhizobacteria. Physiologia Plantarum

118 : 10-15.

Pradhan, N., Sukla, L.B. 2006. Solubilization of Inorganic Phosphates by Fungi Isolated from Agriculture Soil. Afr. J. Biotechnol. 5 : 850-854.

Reis, M.V., K.R.S. Teixeira, R.O. Pedraza. 2011. What is Expected from the Genus Azospirillum as a Plant Growth-Promoting Rhizobacteria?. Bacteria in Agrobiology : Plant Growth Responses. Springer.

Rodriguez, H., T. Gonzalez, I. Goire, Y. Bashan. 2004. Gluconic acid production and phosphate solubilization by the plant growth-promoting bacterium Azospirillum spp.

Short Communication. Naturwissenschaften 91 : 552-555.

Schwyn, B., and J.B. Neilands. 1987. Universal Chemical Assay for The Detection and Determination of Siderophores. Analytical Biochem. 160 : 47-56.

Shaharoona, B., M. Arshad, A. Khalid. 2007. Differential response of etiolated pea seedling to 1-aminocyclopropane-1-carboxylate and/or L-methionie utilizing rhizobacteria. Journal of Microbiology 45 : 15-20.

Shirinzadeh, A., H. Soleimanzadeh., and Z. Shirinzadeh. 2013. Effect of Seed Priming with Plant Growth Promoting Rhizobacteria (PGPR) on Agronomic Traits and Yield of Barley Cultivars. World Applied Sciences Journal 21 (5) : 727-737.

Steenhoudt, O., and Jos Vanderleryden. 2000. Azospirillum, a Free-Living Nitrogen-Fixing Bacterium Closely Associated with Grasses : Genetic, Biochemical, and Ecological Aspects. FEMS Microbiology Reviews Elsevier 24 : 487-506.

Tortora, M.L., Juan C. Diaz-Ricci., Raul O.P. 2011. Azospirillum brasilense siderophores with antifungal activity against Colletotrichum acutatum. Arch. Microbiol. 193 : 275-286.

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Volk, W.A. dan M.F. Wheeler. 1988. Mikrobiologi Dasar Vol. I. Erlangga. Jakarta.

Whipps, J.M. 2001. Microbial Interactions and Biocontrol in The Rhizosphere. J. Experiment. Bot. 52 : 487-511.

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