|
Reference
|
1
|
Barea, J.M., Pozo, M.J., Azcon, R., Azcon-Aguilar, C. (2005) Microbial co-operation in the rhizosphere. Journal of Experimental Botany, 56(417): 1761-1778
|
|
Bashan, Y., Holguin, G. (1998) Proposal for the division of plant growth promoting rhizobacteria into two classifications: Biocontrol PGPB (plant growth - promoting bacteria) and PGPB. Soil Biology and Biochemistry, 30(8/9), str. 1225-1228
|
|
Bevivino, A., Sarrocco, S., Dalmastri, C., Tabacchioni, S., Cantale, C., Chiarini, L. (1998) Characterization of a free-living maize-rhizosphere population of Burkholderia cepacia: effect of seed treatment on disease suppression and growth promotion of maize. FEMS Microbiology Ecology, 27(3): 225-237
|
1
|
Bjelić, D., Mrkovački, N., Jarak, M., Jošić, D., Đalović, I. (2010) Efekat rizobakterija (PGPR) na početni rast kukuruza i brojnost mikroorganizama u rizosferi. Savremena poljoprivreda, vol. 59, br. 3-4, str. 339-345
|
1
|
Bowen, G.D., Rovira, A.D. (1999) The rhizosphere and its management to improve plant growth. Adv. Agron, 66, str. 1-102
|
|
Brown, M.E. (1974) Seed and root bacterization. Annual Review of Phytopathology, 12(1): 181-197
|
|
Burd, G.I., Dixon, G.D., Glick, B.R. (2000) Plant growth-promoting bacteria that decrease heavy metal toxicity in plants. Canadian Journal of Microbiology, 46(3): 237-245
|
|
Burr, T.J., Caesar, A., Schrolh, M.N. (1984) Beneficial plant bacteria. Critical Reviews in Plant Sciences, 2(1): 1-20
|
1
|
Cakmakci, R., Donmez, F., Aydin, A., Sahin, F. (2006) Growth promotion of plants by plant growth-promoting rhizobacteria under greenhouse and two different field soil conditions. Soil Biology and Biochemistry, 38(6): 1482-1487
|
|
Cavaglieri, L.R., Andres, L., Ibanez, M., Etcheverry, M.G. (2005) Rhizobacteria and their potential to control Fusarium verticillioides: Effect of maize bacterisation and inoculum density. Antonie van Leeuwenhoek, 87(3): 179-187
|
1
|
Chet, I., Chernin, L. (2002) Biocontrol, microbial agents in soil. u: Bitton G. [ur.] Encyclopedia of environmental microbiology, New York, USA: John Willey and Sons Inc, 45-465
|
1
|
Cvijanović, G., Govedarica, M.M., Milošević, N.A., Jovanović, Ž. (2000) Uticaj biofertilizatora na prinos kukuruza i biogenost zemljišta. u: EKO-Konferencija Zdravstveno bezbedna hrana, Novi Sad, 27-30. septembar, Zbornik radova, Novi Sad: Ekološki pokret grada Novog Sada, I, 365-370
|
2
|
Cvijanović, G., Milošević, N., Jarak, M. (2007) Značaj diazotrofa kao biofertilizatora u proizvodnji kukuruza i soje. Genetika, vol. 39, br. 3, str. 395-404
|
|
Dey, R., Pal, K.K., Bhatt, D.M., Chauham, S.M. (2004) Growth promotion and yield enhancement of peanut (Arachis hypogaea L.) by application of plant growth-promoting rhizobacteria. Microbiological Research, 159(4): 371-394
|
|
Dobbelaere, S., Croonenborghs, A., Thys, A., Sarig, S., Okon, Y. (2001) Response of agronomically important crops to inoculation with Azospirillum. Aust. J. Plant Physiol, 28, str. 1-9
|
3
|
Dobbelaere, S., Vanderleyden, J., Yaacov, O. (2003) Plant growth promoting effect of diazothrophs in the rhizosphere. Critical reviews in plant science, 22, 107-149
|
2
|
Đorđević, S., Govedarica, M., Jarak, M., Vesković, M., Jovanović, Z. (1993) Influence of various fertilization regimes on the number of nitrogen fixators in soil under maize monoculture. Zemljište i biljka, Beograd, V. 42, No 2, 105-113
|
|
Đorđević, S., Govedarica, M., Milošević, N., Jakovljević, M. (2000) Uticaj bakterijske inokulacije na biomasu C, P i aktivnost fosfataza u rizosferi kukuruza. u: EKO-Konferencija Zdravstveno bezbedna hrana, Novi Sad, 27-30. septembar, Zbornik radova, Novi Sad: Ekološki pokret grada Novog Sada, I, 359-364
|
5
|
Egamberdiyeva, D. (2007) The effect of plant growth promoting bacteria on growth and nutrient uptake of maize in two different soils. Applied Soil Ecology, 36(2-3): 184
|
|
el Mohandes, M.A.O. (1999) The use of associative diazotrophs with different rates of nitrogen fertilization and compost to enhance growth and N2-fixation of wheat. Bulletin of Faculty of Agriculture, University of Cairo, 50, str. 729-753
|
|
Fages, J. (1994) Azospirillum inoculants and field experiments. u: Okon Y. [ur.] Azospirillum-plant associations, Boca Raton: CRC Press, 87-110
|
|
Fallik, E., Okon, Y. (1996) The response of maize (Zea mays) to Azospirillum inoculation in various types of soils in the field. World J. Microbiol. Biotechnol, 12, str. 511-515
|
1
|
Gholami, A., Shahsavani, S., Nezarat, S. (2009) The effect of plant growth promoting rhizobacteria (PGPR) on germination, seedling growth and yield of maize. International Journal of Biological and Life Sciences, 5, 35-40
|
|
Glick, B. (2003) Phytoremediation: synergistic use of plants and bacteria to clean up the environment. Biotechnology Advances, 21(5): 383-393
|
2
|
Glick, B.R. (1995) The enhancement of plant growth by free-living bacteria. Can. J. Microbiol, 41, 109-117
|
2
|
Glick, B.R., Patten, C.L., Holguin, G., Penrose, D.M. (1999) Biochemical and genetic mechanisms used by plant growth-promoting bacteria. London, UK: Imperial College Press
|
7
|
Govedarica, M.M. (1992) Efektivnost azotobaktera kod nekih hibrida kukuruza. Savremena poljoprivreda, vol. 40, br. 6, str. 87-93
|
1
|
Govedarica, M.M. (1992) Effectiveness of Azospirillum in some maize hybrids. Soil and Plant, V. 41, 3, str. 201-205
|
|
Govedarica, M.M., Jarak, M.N., Milošević, N.A. (1994) Specifičan odnos sojeva Klebsiella pneumoniae i nekih hibrida kukuruza. Savremena poljoprivreda, 42, 3, 191-194
|
1
|
Gray, E.J., Smith, D.L. (2005) Intracellular and extracellular PGPR: Commonalities and distinctions in the plant-bacterium signaling processes. Soil Biology and Biochemistry, 37(3): 395-412
|
|
Hajnal, T., Govedarica, M., Jeličić, Z. (2002) Biofertilizatori i proizvodnja kukuruza. u: Eko-konferencija, 25-28. septembar, Novi Sad, Serbia, II, str. 63-68
|
1
|
Hajnal, T., Govedarica, M.M., Jeličić, Z. (2001) Uticaj bakterizacije na brojnost mikroorganizama i sadržaj azota u zemljištu pod usevom kukuruza. Acta agriculturae Serbica, vol. 6, br. 11, str. 77-90
|
|
Hameeda, B., Harini, G., Rupela, O., Wani, S., Reddy, G. (2008) Growth promotion of maize by phosphate-solubilizing bacteria isolated from composts and macrofauna. Microbiological Research, 163(2): 234-242
|
|
Hernandez, Y., Sogo, J., Sarmiento, M. (1997) Azospirillum inoculation on Zea mays. Cuban J. Agr. Sci, 31, str. 203-209
|
|
Iswandi, A., Bossier, P., Vandenabeele, J., Verstraete, W. (1987) Effect of seed inoculation with the rhizopseudomonad strain 7NSK2 on the root microbiota of maize (Zea mays) and barley (Hordeum vulgare). Biology and Fertility of Soils, 3(3): 153-158
|
|
Jacoud, C., Faure, D., Wadoux, P., Bally, R. (1998) Development of a strain-specific probe to follow inoculated Azospirillum lipoferum CRT1 under field conditions and enhancement of maize root development by inoculation. FEMS Microbiology Ecology, 27(1): 43-51
|
|
Jarak, M., Jeličić, Z., Kuzevski, J., Mrkovački, N., Đurić, S. (2011) The use of Azotobacter in maize production: The effect on microbiological activity of soil, early plant growth and grain yield. u: Contemporary Agriculture, u štampi
|
1
|
Kennedy, A.C., Smith, K.L. (1995) Soil microbial diversity and the sustainability of agricultural soils. Plant Soil, 170: 75-86
|
|
Kennedy, I.R., Tchan, Y. (1992) Biological nitrogen fixation in non-leguminous field crops: Recent advances. Plant Soil, 141, str. 93-118
|
1
|
Kennedy, I.R., Choudhury, A.T., Kecskes, M.L. (2004) Non-symbiotic bacterial diazotrophs in crop-farming systems: can their potential for plant growth promotion be better exploited?. Soil Biology and Biochemistry, 36(1)1229-1244
|
|
Khan, A. (2005) Role of soil microbes in the rhizospheres of plants growing on trace metal contaminated soils in phytoremediation. Journal of Trace Elements in Medicine and Biology, 18(4): 355-364
|
2
|
Kloepper, J.W., Schroth, M.N. (1978) Plant growth promoting rhizobacteria on radishes. u: Angers [ur.] Plant Pathogenic Bacteria, Fourth International Conference, Gibert - Clarey Tours, Proceedings, str. 879-882
|
|
Lalande, R., Bissonnette, N., Coutlee, D., Antoun, H. (1989) Identification of rhizobacteria from maize and determination of their plant-growth promoting potential. Plant and Soil, 115(1): 7-11
|
|
Lucas, G.J.A., Probanza, A., Ramos, B., Colon, F.J.J., Gutirerez, M.F.J. (2004) Effect of plant growth promoting rhizobacteria (PGPRs) on biological nitrogen fixation, nodulation and growth of Lupinus albus I. cv. Multolupa. Eng. Life Sci, 7, str. 1-77
|
1
|
Lucy, M., Reed, E., Glick, B.R. (2004) Application of free living plant growth-promoting rhizobacteria: Antonie van Leeuwenhoek. Intern. J. Gener. Molec. Microbiol, 86, str. 1-25
|
2
|
Mrkovački, N.B., Milić, V. (2001) Use of Azotobacter chroococcum as potentially useffull in agricultural application. Annales of Microbiology, Vol.51, No2., 145-159
|
6
|
Mrkovački, N.B., Čačić, N.A., Kovačev, L.M., Mezei, S.M. (2002) Response of sugar beet to inoculation with Azotobacter in field trials. Agrochimica, vol. 46, br. 1-2, str. 18-26
|
8
|
Mrkovački, N.B., Mezei, S.M. (2003) Primena sojeva Azotobacter chroococcum - NS Betafixina u gajenju šećerne repe. Zbornik radova Instituta za ratarstvo i povrtarstvo, br. 39, str. 49-58
|
4
|
Mrkovački, N.B., Mezei, S.M., Čačić, N.A. (2003) Dinamika brojnosti Azotobacter chroococcum u rizosferi šećerne repe u zavisnosti od mineralne ishrane. Zbornik Matice srpske za prirodne nauke, br. 104, str. 91-97
|
1
|
Mrkovački, N., Čačić, N., Mezei, S., Kovačev, L., Nagl, N. (2008) Biogenost rizosfere šećerne repe inokulisane sa Azotobacter chroococcum. Zbornik radova Instituta za ratarstvo i povrtarstvo, vol. 45, br. 2, str. 241-245
|
2
|
Mrkovački, N., Čačić, N., Mezei, S., Kovačev, L., Nagl, N. (2009) Efekat primene mikrobiološkog đubriva za šećernu repu. Zbornik radova Instituta za ratarstvo i povrtarstvo, vol. 46, br. 1, str. 175-179
|
1
|
Mrkovački, N., Čačić, N., Kuzevski, J., Kovačev, L., Mezei, S., Nagl, N., Bjelić, D. (2010) Uticaj načina primene Azotobacter chroococcum na mikroorganizme u rizosferi i prinos šećerne repe. Ratarstvo i povrtarstvo, vol. 47, br. 2, str. 599-606
|
|
Nieto, K.F., Frankenberger, W.T. (1991) Influence of adenine, isopentyl alcohol and Azotobacter chroococcum on the vegetative growth of Zea mays. Plant and Soil, 135(2): 213-221
|
1
|
Okon, Y., Labandera-Gonzalez, C. (1994) Agronomic applications of Azospirillum: An evolution of 20 year worldwide field inoculation. Soil Biology and Biochemistry, 26, str. 1591-1601
|
1
|
Raičević, V. (1996) Asocijativna sposobnost roda Azotobacter sa kukuruzom. Beograd: Poljoprivredni fakultet, doktorska disertacija
|
|
Ribaudo, C.M., Rondanini, D.P., Cura, J.A., Fraschina, A.A. (2001) Response of Zea mays to the inoculation with Azospirillum on nitrogen metabolism under greenhouse conditions. Biologia Plantarum, 44(4): 631-634
|
1
|
Rodrigez, H., Fraga, R. (1999) Phosphate solubilzing bacteria and their role in plant growth promotion. Biotechnology Advances, 17(4-5)319-339
|
|
Sachin, D.N. (2009) Effect of azotobacter chroococcum (PGPR) on the growth of bamboo (Bambusa bamboo) and maize (Zea mays) plants. Biofrontiers, 1, str. 37-46
|
|
Sarić, Z., Mrkovački, N., Sarić, M., Milić, V. (1993) Dynamics of nodulation in some soybean genotypes. u: Dou Xintian [ur.] Current developments in soybean rhizobia symbiotic nitrogen fixation, breeding soybean with symbiotic n-fixation, Harbin: Heilongjiang Science and Technology Publishing House, 113-126
|
|
Schippers, B., Scheffer, R.J., Lugtenberg, B.J.J., Weisbeek, P.J. (1995) Biocoating of seed with plant growth promoting rhizobacteria to improve plant establishment. Outlook Agr, 24, str. 179-185
|
1
|
Shaharoona, B., Arshad, M., Zahir, Z., Khalid, A. (2006) Performance of Pseudomonas spp. containing ACC-deaminase for improving growth and yield of maize (Zea mays L.) in the presence of nitrogenous fertilizer. Soil Biology and Biochemistry, 38(9): 2971-2975
|
1
|
Shoebitz, M., Ribaudo, C.M., Pardo, M.A., Cantore, M.L., Ciampi, L., Cura, J.A. (2009) Plant growth promoting properties of a strain of Enterobacter ludwigii isolated from Lolium perenne rhizosphere. Soil Biology and Biochemistry, 41(9): 1768-1774
|
1
|
Sturz, A.V., Nowak, J. (2000) Endophytic communities of rhizobacteria and the strategies required to create yield enhancing associations with crops. Applied Soil Ecology, 15(2): 183-190
|
|
Suresh, A., Pallavi, P., Srinivas, V., Kumar, V.P., Chandra, S.J., Reddy, S.R. (2010) Plant growth promoting activities of fluorescent pseudomonads associated with some crop plants. Afr. J. Microbiol. Res, 4, str. 1491-1494
|
|
Suslow, T.V., Kloepper, J.W., Schroth, M.N., Burr, T.J. (1979) Beneficial bacteria enhance plant growth Rhizobacteria. Calif. Agric. Exp. Stn, 33, str. 15-17
|
|
Vasquez, M.M., Cesar, S., Azcon, R., Barea, J.M. (2000) Interactions between arbuscular mycorrhizal fungi and other microbial inoculants (Azospirillum, Pseudomonas, Trichoderma) and their effects on microbial population and enzyme activities in the rhizosphere of maize plants. Applied Soil Ecology, 15(3): 261-272
|
6
|
Vessey, K.J. (2003) Plant growth promoting rhizobacteria as biofertilizers. Plant and Soil, 255(2), 571-586
|
|
Wu, S.C., Cao, Z.H., Li, Z.G., Cheung, K.C., Wong, M.H. (2005) Effects of biofertilizer containing N-fixer, P and K solubilizers and AM fungi on maize growth: a greenhouse trial. Geoderma, 125(1-2): 155-166
|
|
Yanni, Y.G., El-Fattah, F.K.A. (1999) Towards integrated biofertilization management with free living and associative dinitrogen fixers for enhancing rice performance in the Nile delta. Symbiosis, 27, str. 319-331
|
2
|
Yazdani, M., Bahmanyar, M.A., Pirdashti, H., Esmaili, M.A. (2009) Effect of phosphate solubilization microorganisms (PSM) and plant growth promoting rhizobacteria (PGPR) on yield and yield components of corn (Zea mays L). World Academy of Science, Engineering and Technology, 49, str. 90-92
|
4
|
Zahir, Z.A., Arshad, M., Frankenberger, W.T. (2004) Plant growth promoting rhizobacteria: Applications and perspectives in agriculture. Advances in Agronomy, vol. 81, 97-168
|
|
Zhuang, X., Chen, J., Shim, H., Bai, Z. (2007) New advances in plant growth-promoting rhizobacteria for bioremediation. Environment International, 33(3): 406-413
|
|
|
|