- بینام، 1388. آمار نامه کشاورزی، جلد اول: محصولات زراعی وباغی(86-1385). نشریه شماره 09/88 دفتر آمار و فنآوری اطلاعات معاونت برنامهریزی و اقتصاد وزارت جهاد کشاورزی، تهران.
- روستا،م.ج، صالح راستین ،ن. و مظاهری اسدی ،م.1377.بررسی وفعالیت آزوسپیریلوم در برخی از خاک های ایران. مجله علوم کشاورزی ایران. 298-285 :29.
- Atlas, R.M. 2005. Media for environmental microbiology. Ed. Published by Taylor and Francis.USA.
- Anonymus, 2008. Agricuture statistics, first volume-horticultural and field crops, 2005-6 crop year. Ministry of Jihad-e-Agriculture, Programing and economics deputy, Statistics and information technology office, no. 85/09.
- Banerjee, M.R., L. Yesmin, and J.K.Vessey. 2006. Plant-growth-promoting rhizobacteria as biofertilizers and biopesticides, pp.137-181.in: Handbook of microbial biofertilizers. Ed., Rai, M.K., Food Production Press, S.A.
- Barber, A., and J.H.Cushman. 1981. Nitrogen uptake model for agronomic crops., pp. 382-409. in: Modeling waste water renovation-land treatment. Ed., Iskander, I.K., Wiely-Interscience, New York.
- Bashan, Y., and J.G. Dubrovsky. 1996. Azospirillum Participation dry matter partitioning in grasses at the whole plant level. Biology and Fertility of Soils, 23: 435-440.
- Bohn, W. 1979. Methods of studying root systems. Ecological Studies, 33:188. Springer-Verlag, Berlin.
- Burd, G.I., D.G., Dixon, and B.R.Glick. 1998. A plant growth-promoting bacterium that decreases nickel toxity in seedlings. Applied and Environmental Microbiology, 64:3663-3668.
- Fallik, E., Y. Okon, E., Epstin, A., Goldman, and M. Fischer. 1989. Identification and quantification of IAA and IBA in Azospirillum braziliens inoculated maize roots.Soil Biol. Bioch. 21: 147-153.
- FAO, 2005. 20 selected indicators of food and agriculture development in asia-pacific region (1994-2004). FAO, Rome, Italy.
- Fulchieri, M. and L.Frioni. 1994. Azospirillum inoculation on maize (Zea mays ):effect on yield in a field experiment in central Argentina.Soil Biol. Bioch. 26:921-923.
- Glick, B.R., C.B., Jacobsen, M.M.K. Schwartze, and Pasternak, J.J. 1994. 1-aminocyclopropane-1-carboxylic acid deaminase mutants of plant growth promoting rhizobacterium Pseudomonas putida GR12-2 do not stimulate canola root elongation.Canadian J. Microbiol. 40:911-915.
- Gonzalez-Lopez,J., M.V., Martinez-Toledo, Riena, and V. Salmeron, 1991. Root exudates of maize and production of auxin, gibberellins,cytokinin,amino acids and vitamins by Azotobacter chroococcum in chemically-defiend mediated dialyzed-soil media. Technol. Environ. Chem. 33: 69-78.
- Grichko, V.P., and B.R. Glick. 2001. Amelioration of flooding stress by ACC deaminase-containing plant growth-promoting bacteria. Plant Physiol. Bioch. 39:11-17.
- Hall, J.A., D., Pierson, S. Ghosh, and B.R. Glick, 1996. Root elongation in various agronomic crops by the plant growth promoting rhizobacterium Pseudomonas putida GR12-2. Isr. J. Plant Sci. 44: 37-42.
- Hubbel, D.H., T.M., Tien, M.H., Gaskins, and J., Lee. 1979. Physilogical intractions in the Azospirillum-grass root association, pp.1-6. in:Associative N2 – fixation. Eds., Vose, P.B. and Ruschel, A.P. CRC Press, Boca Raton. FL.
- Jacoud,C., D., Faure, P. Wadoux, and R. Bally. 1999. Initiation of root groth simulation by Azospirillum lipoferum CRT1 during maize seed germination.Can. J. Microbiol. 45:339-342.
- Javed, M., M., Arshad, and K., Ali. 1998. Evaluation of rhizobacteria for their growth promoting activity in maize. Pak. J. Soil Sci. 14: 36-42.
- Manaffee, W.F. and J.W., Kloepper. 1994. Applications of plant growth promoting rhizobacteria in sustainable agriculture. In: Soil biota management in sustainable farming systems, C.E., Pankburst, B.M.,Doube, V.V.S.R., Gupta, and P.R., Grace, eds. Pp:23-31 CSLRO, pub. East Melbourne, Australia.
- Kapulnik, Y., S. Sarig, A. Nur, Y. Okon, and Y., Henis. The effect of Azospirillum inoculation on growth and yield of corn. Isr. J. Bot. 31:247-255.
- Molla, A.H., Z.H., Shamsuddin, M.S., Halimi, M., Morziah, and A.B., Puteh. 2001. Potential for enhancement of root growth and nodulation of soybean co-inoculated with Azospirillum and Bradyrhizobium in laboratory system. Ann. Microbiol. 33:457-463.
- Newman, E.I.1966. Amethod of estimating the total lengh of root in asampel.Journal of Appl. Ecol. 3:139-145.
- Nieto, K.F. and W.T.(Jr.), Frankenberger. 1991. Influence of adenine, isopentyl alcohol and Azotobacter chroococcum on the vegetative growth of Zea mays. Plant Soil. 135:213- 221.
- Pan,B., Y.M., Bai, S. Leibovitch, and D.L. Smith. 1999.Plant growth promoting rhizobacteria and kinetin as ways to promot corn growth and and yield in a short growing season area.Eropean Journal of Agronomy, 11:179-186.
- Patten, C.L. and B.R. Glick. 2002. Role of Pseudomonas putida indolacetic acid in development of the host plant root system. Appl. Environ. Microbiol. 38: 3795-3801.
- Phillip, D.A., C.M., Joseph, G.P., Yang, E., Martinez-Romero, J.R. Sanborn, and H. Volpin. 1999. Identification of lumichrome as a Sinorrhizobioum enhancer of alfalfa root respiration and shoot growth. Proc. Nat. Acad. Sci. USA, 96: 12275-12280.
- Ribaudo, C.M., A.N., Paccusse, D.P., Rondanini, J.A., Curu, and A.A. Fraschina. 1998. Azospirillum- maize association: effects on dry matter yield and nirte reductuse activity. Agricultura Tropica et Subripica, 31: 61-70.
- Rohitashav-Singh, Sood, B.K., V.K. Sharma, and R.Singh, 1993. Response of forage maize (Zea mays ) to Azotobacter inoculation and nitrogen. Ind. J. Agron. 38: 555-558.
- Sarig, S., Y., Okon, and A. Blum. 1992. Effect of Azospirillum brasilense inoculation on growth dynamics and hydraulics conductivity of Sorghum bicolor J. Plant Nut. 15:805-819.
- Sharma, A.K. 2003. Biofertilizers for sustainable agriculture. Agrobios, India.
- Sturz, A.V. and B.R. Christie. 2003. Beneficial microbial alleloplathies in the root zone: the management of soil quality and plant disease with rhizobacteria. Soil Tillage Res. 72: 107-123.
- Tollenaar, M and W. Migus. 1984. Dry matter accumulation of maize growth hydroponically under controlled-environment and field conditions. J. Plant Sci. 64: 475-485.
- Vedderweiss, D., E., Jukervitch, S., Burdman, D. Weiss, and Y. Okon. 1999. Root growth respiration and beta-glocosidase activity in maize (Zea mays) and common bean(Phaseolus vulgaris) inoculated with Azospirillum brasilense. Symbiosis, 26:367-377.
- Vessey, J.K. 2003. Plant growth promoting rhizobacteria as biofertilizer. Plant Soil. 255: 271- 586.
- Vessey, J.K. and T.J. Buss. 2002. Bacillus cereus UW85 inoculation effects on growth, nodulation, and N accumulation in grain legumes. Controlled-environment studies. J. Plant Sci. 82:282-290.
- Vivanco, J.M. and H.E. Flores. 2000. Control of root formation by plant growth regulators, pp.1-25. in: Plant growth regulators in agriculture and horticulture. Ed., Basra, A.S., Food Products Press, New York.
- Zahir, Z., M., Arshad, and A. Khalid. 1998a. Improving maize yield by inoculation with plant growth promoting rhizobacteria. Pak. J. Soil Sci. 15: 7-11.
- Zahir, A.Z., S.A., Abbas, A. Khalid, and M. Arshad. 2000. Substrate dependnd microbially derived plant hormones for improving growth of maize seedlings. Pak. J. Biol. Sci. 3:289-291.
- Zahir, A.Z., M. Arshad, and W.F. Frankenberger (Jr.). 2004. Plant growth promoting rhizobacteria: applications and perspectives in Adv. Agron. 81:97-168.
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