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Rhizobacteria cooperative effect against Meloidogyne javanica in rhizosphere of legume seedlings

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Ahemad, M. and Kibret, M. 2014. Mechanisms and applications of plant growth promoting rhizobacteria: Current perspective. Journal of King Saud University-Science, 26: 1-20.Search in Google Scholar

Alizadeh, K., Ghaffari, A. and Kumar, S. 2013. Development of Feed Legumes as Suitable Crops for the Drylands of Iran. ICARDA (International Center for Agricultural Research in the Dry Areas) P.O. Box 114/5055, Beirut, Lebanon.Search in Google Scholar

Ashoub, A.H. and Amara, M.T. 2010. Biocontrol activity of some bacterial genera against root-knot nematode, Meloidogyne incognita. Journal of American Science, 6(10): 321-328.Search in Google Scholar

Aydinli, G. and Mennan, S. 2016. Identification of root-knot nematodes (Meloidogyne spp.) from greenhouses in the Middle Black Sea Region of Turkey. Turkish Journal of Zoology, 40: 1-12.Search in Google Scholar

Bai, Y., Zhou, X. and Smith, D.L. 2003. Crop ecology, management and quality: enhanced soybean plant growth resulting from coinoculation of Bacillus strains with Bradyrhizobium japonicum. Crop Science, 43(5): 1774-1781.10.2135/cropsci2003.1774Search in Google Scholar

Bayat, L., Askari, M., Amini, F. and Zahedi, M. 2014. Effects of Rhizobium inoculation on Trifolium resupinatum antioxidant system under sulfur dioxide pollution. Biological Journal of Microorganism, 2(8): 37-50.Search in Google Scholar

Beneduzi, A., Ambrosini, A. and Passaglia, L.M.P. 2012. Plant growth-promoting rhizobacteria (PGPR): Their potential as antagonists and biocontrol agents. Genetics and Molecular Biology, 35(4) (Suppl.): 1044-1051.Search in Google Scholar

Bojňanská, T., Frančáková, H., Líšková, M. and Tokár, M. 2012. Legumes-The alternative raw materials for bread production. Journal of Microbiology, Biotechnology and Food Sciences, 1: 876-86.Search in Google Scholar

Dashadi, M., Khosravi, H., Moezzi, A., Nadian, H., Heiari, M. and Radjabi, M. 2011. Co-inoculation of Rhizobium and Azotobacter on growth indices of faba bean under water stress in the green house condition. Advance Studies in Biology, 3(8): 373-85.Search in Google Scholar

Gharabadiyan, F., Jamali, S. and Komeili, H.R. 2013. Determining of root-knot nematode (Meloidogyne javanica) damage function for tomato cultivars. Journal of Agricultural Sciences, 58(2): 147-157.Search in Google Scholar

Gupta, G., Parihar, S.S., Ahirwar, N.K., Snehi, S.K. and Singh, V. 2015. Plant Growth Promoting Rhizobacteria (PGPR): Current and Future Prospects for Development of Sustainable Agriculture. Journal of Microbial & Biochemical Technology, 7: 96-102.Search in Google Scholar

Hmissi, I., Mabrouk, Y., Abdi, N., Bouraoui, M., Saidi, M. and Sifi, B. 2011. Effects of some Rhizobium strains on chickpea growth and biological control of Rhizoctonia solani. African Journal of Microbiology Research, 5(24): 4080-4090.Search in Google Scholar

Hosseini Nejad, S.A. and Khan, M.W. 2001. Interaction of root-knot nematode, Meloidogyne incognita (race 1), on chickpea cultivars. Applied Entomology and Phytopathology, 68: 1-11.Search in Google Scholar

Hussey, R.S. and Janssen, G.J.W. 2002. Root-Knot Nematodes: Meloidogyne species. Pp: 43-70. In: J.L. Starr, J. Bridge and R. Cook, (Eds.). Plant resistance to parasitic nematodes. CAB1 Publishing, Walling ford, UK.10.1079/9780851994666.0043Search in Google Scholar

Hussey, R.S. and Barker, K.R. 1973. A comparison of methods of collecting inocula of Meloidogyne spp. including a new technique. Plant Disease Reports, 57: 1025-1028.Search in Google Scholar

Jang, J.Y., Choi, Y.H., Shin, TS., Kim, T.H., Shin, K.S., Park, H.W., Kim, Y.H., Kim, H., Choi, G.J., Jang, K.S., Cha, B., Kim, I.S., Myung, E.J. and Kim, J.C. 2016. Biological Control of Meloidogyne incognita by Aspergillus niger F22 Producing Oxalic Acid. PLoS ONE, 11(6): 1-15.10.1371/journal.pone.0156230489260427258452Search in Google Scholar

Jenkins, W.R. 1964. A rapid centrifugal flotation technique for separating nematodes from soil. Plant Disease Report, 48:692.Search in Google Scholar

Lipiec, J. and Glinski, J. 2011. Rhizosphere. In Encyclopedia of Agrophysics; Glinski, J., Horabik, J., Lipiec, J., Eds.; Springer: Dordrecht, The Netherlands, pp.705-709.Search in Google Scholar

Muthulakshmi, M., Devrajan, K. and Jonathan, E.I. 2010. Biocontrol of root knot nematode, Meloidogyne incognita (Kofoid and White) Chitwood in mulberry (Morus alba L.). Journal of Biopesticides, 3(2): 479-482.Search in Google Scholar

Nicol, J.M. 2002. Important nematode pests. In: Curtis BC, Rajaram S, Gómez M (Eds.) Bread wheat improvement and production. FAO Plant Production and Protection Series 2002, p 567.Search in Google Scholar

Nihorimbere, V., Ongena, M., Smargiassi, M. and Thonart, P. 2011. Beneficial effect of the rhizosphere microbial community for plant growth and health. Biotechnology, Agronomy, Society and Environment, 15(2): 327-337.Search in Google Scholar

Ntalli, N.G., Caboni, P. 2012. Botanical nematicides: a review. Journal of Agricultural and Food Chemistry, 60(40): 9929-40.10.1021/jf303107j22973877Search in Google Scholar

Onyeke, C.C. and Akueshi, C.O. 2012. Pathogenicity and reproduction of Meloidogyne incognita (Kofoid and White) Chitwood on African yam bean, Sphenostylis stenocarpa (Hochst Ex. A. Rich) Harms accessions. African Journal of Biotechnology, 11(7): 1607-1616.10.5897/AJB11.3000Search in Google Scholar

Osei, K., Gowen, S.R., Pembroke, B., Brandenburg, R.L. and Jordan, D.L. 2010. Potential of Leguminous Cover Crops in Management of a Mixed Population of Root-knot Nematodes (Meloidogyne spp.). Journal of Nematology, 42(3): 173-178.Search in Google Scholar

Panizzon, J.P., Júnior, H.L.P., Knaak, N., Ziegler, D.R., Ramos, R.C. and Fiuza, L.M. 2016. Bacteria-Soil-Plant Interaction: This Relationship to Generate can Inputs and New Products for the Food Industry. Journal of Rice Research, 4(165): 1-6.10.4172/2375-4338.1000165Search in Google Scholar

Perry, R.N. and Moens, M. 2006. Plant Nematology. Printed and bound in the UK by Biddles Ltd, King’s Lynn. 447p.10.1079/9781845930561.0000Search in Google Scholar

Sadovinkova, Y.N., Bespalova, L.A. and Antonyuk, L.P. 2003. Wheat gram agglutinin is a grown factor for bacterium Azospirillum brasilense. Doklady Biochemistry and Biophysics, 398(1-6): 103-105.Search in Google Scholar

Saeedizadeh, A. 2016. Trichoderma viride and Pseudomonas fluorescens CHA0 against Meloidogyne javanica in the rhizosphere of tomato plants. Hellenic Plant Protection Journal, 9: 28-34.Search in Google Scholar

Safdar, H., Javed, N., Khan, S.A., Haq, I., Safdar, A. and Khan, N.A. 2012. Control of Meloidogyne incognita (Kofoid and White) Chitwood by Cadusafos (Rugby®) on Tomato. Pakistan Journal of Zoology, 44(6): 1703-1710.Search in Google Scholar

Shaikh, S.S., Sayyed, R.Z. and Reddy, M.S. 2016. Plant Growth Promoting Rhizobacteria: A Sustainable Approach to Agro-ecosytstem. In book: Plant, Soil and Microbes-Interactions and Implications in Crop Science., Edition: 1, Publisher: Springer international publishing AG, Switzerland. Editors: K R Hakeem et al, pp. 181-201.Search in Google Scholar

Siddiqui, Z.A. and Akhtar, M.S. 2009. Effect of plant growth promoting rhizobacteria, nematode parasitic fungi and root-nodule bacterium on root-knot nematodes Meloidogyne javanica and growth of chickpea. Biocontrol Science and Technology, 19(5): 511-521.10.1080/09583150902887792Search in Google Scholar

Siddiqui, Z.A., Fatima, M. and Alam, S. 2013. Interactions of Meloidogyne incognita, Xanthomonas campestris, and Rhizobium sp. in the disease complex of chickpea. Turkish Journal of Agriculture and Forestry, 37: 173-178.Search in Google Scholar

Siddiqui, I.A., Haas, D. and Heeb, S. 2005. Extracellular Protease of Pseudomonas fluorescens CHA0, a Biocontrol Factor with Activity against the Root-Knot Nematode Meloidogyne incognita. Applied and Environmental Microbiology, 71(9): 5646-5649.10.1128/AEM.71.9.5646-5649.2005121465116151170Search in Google Scholar

Siddiqui, I.A., Shaukat, S.S., Sheikh, I.H. and Khan, A. 2006. Role of cyanide production by Pseudomonas fluorescens CHA0 in the suppression of root-knot nematode, Meloidogyne javanica in tomato. World Journal of Microbiology and Biotechnology, 22: 641-650.Search in Google Scholar

Sokhandani, Z., Moosavi, M.R. and Basirnia, T. 2016. Optimum Concentrations of Trichoderma longibrachiatum and Cadusafos for Controlling Meloidogyne javanica on Zucchini Plants. Journal of Nematology, 48(1): 54-63.10.21307/jofnem-2017-009485961827168653Search in Google Scholar

Tian, B., Yang, J. and Zhang, K. 2007. Bacteria used in the biological control of plant parasitic nematodes: populations, mechanisms of action, and future prospects. FEMS Microbiology and Ecology, 61: 197-213.Search in Google Scholar

Ugwuoke, K.I. and Eze, S.C. 2010. The effect of mycorrhiza (Glomus geosporum), Rhizobium and Meloidogyne incognita on growth and development of cowpea (Vigna unguiculata L. Walp). Research Journal of Agriculture and Biological Sciences, 6(6): 937-941.Search in Google Scholar

Wang, Y.X. and Oyaizu, H. 2009. Evaluation of the phytoremediation potential of four plant species for dibenzofu-ran-contaminated soil. Journal of Hazardous Materials, 168: 760-764.Search in Google Scholar

Weller, D.M. and Cook, R.J. 1983. Suppression of Take-all of Wheat by Seed Treatments with Fluorescent Pseudomonads. Phytopathology, 78: 463-469.Search in Google Scholar

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