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Research Article

A farmer friendly and economic IPM strategy to combat root-knot nematodes infesting lentil

, , & | (Reviewing Editor)
Article: 1053214 | Received 19 Feb 2015, Accepted 14 May 2015, Published online: 09 Jun 2015

References

  • Abubakar, U. , Adamu, T. , & Manga, S. B. (2004). Control of Meloidogyne incognita (kofoid and white) chitwood (root-knot nematode) of Lycopersicon esculentus (tomato) using cowdung and urine. African Journal of Biotechnology , 3 , 379–381.10.5897/AJB
  • Abubakar, U. , & Majeed, Q. (2000). Use of animal manure for the control of root-knot nematodes of cowpea. Journal of Agriculture and Environment , 1 , 29–33.
  • Agyarko, K. , Kwakye, P. K. , Bonsu, M. , Osei, B. A. , & Fripong, K. A. (2006). Effects of organic soil amendments on root-knot nematodes, soil nutrients and growth of carrot. Journal of Agronomy , 5 , 641–646.
  • Ali, S. S. (1997). Status of nematode problems and research in India. In S. B. Sharma (Ed.), Diagnosis of key nematode pests of chickpea and pigeon pea in their management. Proceedings of Regional Training Course (pp. 74–82). Patancheru: ICRISAT.
  • Amulu, L. U. , & Adekunle, O. K. (2015). Comparative effects of poultry manure, cow dung, and carbofuran on yield of Meloidogyne incognita-infested okra. Journal of Agricultural Sciences and Technology , 17 , 495–504.
  • Ashoub, A. H. , & Amara, M. T. (2010). Biocontrol activity of some bacterial genera against root-knot nematode, Meloidogyne incognita . Journal of American Science , 6 , 321–328.
  • Barker, K. R. , & Hussey, R. S. (1976). Histopathology of nodular tissues of legumes infected with certain nematodes. Phytopathology , 66 , 851–855.10.1094/Phyto-66-851
  • Callaham, D. , Deltredici, P. , & Torrey, J. G. (1978). Isolation and cultivation in vitro of the actinomycete causing root nodulation in comptonia. Science , 199 , 899–902. doi:10.1126/science.199.4331.899
  • Chakraborty, U. , & Chakraborty, B. N. (1989). Interaction of Rhizobium leguminosarum and Fusarium solani f.sp. pisi in pea affecting disease development and phytoalexin production. Canadian Journal of Botany , 67 , 1698–1701.10.1139/b89-214
  • Chakraborty, U. , & Purkayastha, R. P. (1984). Role of rhizobitoxine in protecting soybean roots from Macrophomina phaseolina infection. Canadian Journal of Microbiology , 30 , 285–289.10.1139/m84-043
  • Chaudhary, K. K. , & Kaul, R. K. (2013). Efficacy of Pasteuria penetrans and various oil seed cakes in management of Meloidogyne incognita in chilli pepper (Capsicum annum L.). Journal of Agricultural Science and Technology , 15 , 617–626.
  • Chen, J. , Abasi, G. S. , & Zuckerman, B. M. (1999). Suppression of Meloidogyne hapla and its damage to lettuce grown in a mineral soil amended with chitin and biocontrol organisms. Supplement to the Journal of Nematology , 31 , 719–725.
  • Crow, W. T. , Guertal, E. A. , & Rodriguez-Kabana, R. (1996). Response of Meloidogyne arenaria and M. incognita to green manures and supplemental urea in glasshouse culture. Supplement to Journal of Nematology , 28 , 648–654.
  • del Amor, F. M. , Serrano-Martínez, A. , Fortea, M. I. , Legua, P. , & Núñez-Delicado, E. (2008). The effect of plant-associative bacteria (Azospirillum and Pantoea) on the fruit quality of sweet pepper under limited nitrogen supply. Scientia Horticulturae , 117 , 191–196.10.1016/j.scienta.2008.04.006
  • Ehteshamul-Haque, S. , & Ghaffar, A. (1993). Use of rhizobia in the control of root rot diseases of sunflower, okra, soybean and mungbean. Journal of Phytopathology , 138 , 157–163.10.1111/j.1439-0434.1993.tb01372.x
  • FAO . (2013). Production of lentils by countries . UN Food & Agriculture Organization, Statistics Division. Retrieved March 24, 2015, from http://en.wikipedia.org/w/index.php?title=Lentil&oldid=655712616
  • Hassan, M. A. , Chindo, P. S. , Marley, P. S. , & Alegbejo, M. D. (2010). Management of root knot nematodes (Meloidogyne spp.) on tomato (Lycopersicon lycopersicum) using organic wastes in Zaria, Nigeria. Plant Protection Sciences , 46 , 34–38.
  • Hassan, S. M. E. , Rahman, M. S. , Amin, M. R. , Hoque, A. T. M. R. , & Islam, S. M. S. (2001). Effect of some organic substances on the root-knot disease of brinjal. Journal of Biological Sciences , 8 , 791–792.
  • Hayat, R. , Ali, S. , Amara, U. , Khalid, R. , & Ahmed, I. (2010). Soil beneficial bacteria and their role in plant growth promotion: A review. Annals of Microbiology , 60 , 579–598. doi:10.1007/s13213-010-0117-1
  • Huang, J. S. (1987). Interaction of nematode with rhizobia. In J. A. Veech & D. W. Dickson (Eds.), Vistas on nematology (pp. 301–306). Hyattsville, MD: Society of Nematologist.
  • Hussaini, S. S. , & Seshadri, A. R. (1975). Interrelationship between Meloidogyne incognita and Rhizobium sp. on mung (Phaseolus aureus). Indian Journal of Nematology , 5 , 189–199.
  • Hussey, R. S. , & Barker, K. R. (1976). Influence of nematode and light sources on growth and nodulation of soybean. Journal of Nematology , 8 , 48–52.
  • Iqbal, M. A. , Khalid, M. , Shahzad, S. M. , Ahmad, M. , Soleman, N. , & Akhtar, N. (2012). Integrated use of rhizobium leguminosarum, plant growth promoting rhizobacteria and enriched compost for improving growth, nodulation and yield of lentil (Lens culinaris Medik.). Chilean Journal of Agricultural Research , 72 , 104–110.10.4067/S0718-58392012000100017
  • Jones, J. T. , Haegeman, A. , Danchin, E. G. J. , Gaur, H. S. , Helder, J. , Jones, M. G. K. , Kikuchi, T. , … Perry, R. N. (2013). Top 10 plant-parasitic nematodes in molecular plant pathology. Molecular Plant Pathology , 14 , 946–961. doi:10.1111/mpp.12057
  • Jordan, D. C. (1984). Family III. Rhizobiaceae Conn 1938, 321 AI. In N. R. Krieg & J. G. Holt (Eds.), Bergey’s manual systematic bacteriology (Vol. 1, pp. 234–254). Baltimore, MD: Williams & Wilkins.
  • Kloepper, J. W. , Lifshitz, R. , & Zablotowicz, R. M. (1989). Free-living bacterial inocula for enhancing crop productivity. Trends in Biotechnology , 7 , 39–44.10.1016/0167-7799(89)90057-7
  • Kumar, S. , & Vadivalu, S. (1993). Inter-relationship between Meloidogyne incognita and rhizobium sp. black gram, vigna mungo (L) Hopper. Indian Journal of Nematology , 23 , 75–81.
  • Lazarovits, G. , Tenuta, M. , & Conn, K. L. (2001). Organic amendments as a disease control strategy for soilborne diseases of high-value agricultural crops. Australasian Plant Pathology , 30 , 111–117.10.1071/AP01009
  • Lechevalier, M. P. , & Lechevalier, H. A. (1989). Genus Frankia Brunchorst 1886, 174AL . In S. T. Williams , M. E. Sharpe , & J. G. Holt (Eds.), Bergey’s manual of systematic bacteriology (Vol. 4, pp. 2410–2417). Baltimore, MD: Williams & Wilkins.
  • McSorley, R. , & Gallaher, R. N. (1996). Effect of yard-waste compost on nematode densities and maize yield. Supplement to the Journal of Nematology , 28 , 655–660.
  • McSorley, R. , & Gallaher, R. N. (1997). Effect of compost and maize cultivars on plant parasitic nematodes. Supplement to the Journal of Nematology , 29 , 655–660.
  • Muller, R. , & Gooch, P. S. (1982). Organic amendments in nematode control. An examination of the literature. Nematropica , 12 , 319–326.
  • Nagaraju, M. , Karemegam, N. , & Kadalmani, B. (2010). Eco-friendly management of root-knot nematode Meloidogyne incognita using organic amendments on tomato. International Journal of Research in Pharmaceutical Sciences , 1 , 530–532.
  • Natasasmita, S. (1997). Penggunaan tepung kulit udang dalam menekan serangan nematoda Meloidogyne spp. pada tanaman tomat (Lycopersicon esculentum Mill.). Journal of Agrikultura , 8 , 12–17.
  • Nchore, S. B. , Waceke, J. W. , & Kariuki, G. M. (2012). Efficacy of selected agroindustrial wastes in managing root-knot nematodes on black nightshade in Kenya. ISRN Agronomy , 1–12, 364842. doi:10.5402/2012/364842
  • Nutman, P. S. (1965). The relation between nodule bacteria and the legume host in the rhizosphere and in the rhizosphere and in the process of infection. In K. F. barker & W. C. Synder (Ed.), Ecology of soil-borne plant pathogens, prelude to biological control (pp. 231–247). Berkeley, CA: University of California Press.
  • Oka, Y. (2010). Mechanisms of nematode suppression by organic soil amendments—a review. Applied Soil Ecology , 44 , 101–115.10.1016/j.apsoil.2009.11.003
  • Orisajo, S. B. , Afolami, S. O. , Fademi, O. , & Atungwu, J. J. (2008). Effects of poultry litter and carbofuran soil amendments on Meloidogyne incognita attacks on cacao. Journal of Applied Biosciences , 7 , 214–221.
  • Pakeerathan, K. , Mikunthan, G. , & Tharahani, N. (2009). Effects of different animal manures on Meloidogyne incognita (kofoid and white) on tomato. World Journal of Agriculture , 5 , 432–435.
  • Patel, R. G. , & Patel, D. J. (1992). Comparative efficacy of some organic amendments and granular nematicides in the control of Rotylenchulus reniformis infecting pigeonpea. Indian Journal of Nematology , 22 , 14–18.
  • Poornima, K. , & Vadivelu, S. (1993). Comparative efficacy of nematicides, oil cakes and plant extracts in the management of Meloidogyne incognita, Pratylenchus delattrei and Rotylenchulus reniformis on brinjal. Indian Journal of Nematology , 23 , 170–173.
  • Renco, M. , & Kovácik, P. (2012). Response of plant-parasitic and free living soil nematodes to composted animal manure soil amendments. Journal of Nematology , 44 , 329–336.
  • Riegel, C. , Fernandez, F. A. , & Noe, J. P. (1996). Meloidogyne incognita infested soil amended with chicken litter. Journal of Nematology , 28 , 369–378.
  • Riegel, C. , & Noe, J. P. (2000). Chicken litter soil amendment effects on soilborne microbes and Meloidogyne incognita on cotton. Plant Disease , 84 , 1275–1281.10.1094/PDIS.2000.84.12.1275
  • Siddiqui, I. A. , & Shaukat, S. S. (2002). Rhizobacteria-mediated induction of systemic resistance (ISR) in tomato against Meloidogyne javanica . Journal of Phytopathology , 150 , 469–473.10.1046/j.1439-0434.2002.00784.x
  • Siddiqui, I. A. , & Shaukat, S. S. (2004). Systemic resistance in tomato induced by biocontrol bacteria against the root-knot nematode, Meloidogyne javanica is independent of salicylic acid production. Journal of Phytopathology , 152 , 48–54.10.1046/j.1439-0434.2003.00800.x
  • Siddiqui, I. A. , Zareen, A. , Shauket, S. S. , & Zaki, M. J. (2001). Evaluation of rhizobia for control of Meloidogyne javanica in Vigna mungo . Pakistan Journal of Biological Sciences , 4 , 1124–1125.
  • Siddiqui, Z. A. , Baghel, G. , & Akhtar, M. S. (2007). Biocontrol of Meloidogyne javanica by Rhizobium and plant growth-promoting rhizobacteria on lentil. World Journal of Microbiology and Biotechnology , 23 , 435–441. doi:10.1007/s11274-006-9244-z
  • Siddiqui, Z. A. , & Husain, S. I. (1992). Interaction between Meloidogyne incognita race 3, Macrophomina phaseolina and Bradyrhizobium sp. in the root rot disease complex of chickpea, Cicer arietinum . Fundamental and Applied Nematology , 15 , 491–494.
  • Siddiqui, Z. A. , & Mahmood, I. (1995). Role of plant symbionts in nematode management: A review. Bioresource Technology , 54 , 217–226.10.1016/0960-8524(95)00137-9
  • Siddiqui, Z. A. , & Zehra, N. (2012). Biocontrol of wilt disease complex of pea using Pseudomonas fluorescens and Rhizobium sp. Archives of Phytopathology and Plant Protection , 45 , 2340–2346.10.1080/03235408.2012.727072
  • Singh, S. , Hisamuddin , & Azam T. (2010). Interactive effects of Meloidogyne incognita and Macrophomina phaseolina on lentil. Indian Journal of Nematology , 40 , 31–34.
  • Southey, J. F. (1986). Laboratory methods for work with plant and soil nematodes (Ministry of Agriculture, Fisheries and Food Reference Book 402, 202 pp.). London: HMSO.
  • Stirling, G. R. (1991). Biological control of plant parasitic nematodes. Progress, problems and prospects . Wallingford: CAB International.
  • Suganda, T. (1999). Natural chitinous amendment for controlling root-knot nematode (Meloidogyne spp.) of tomato. Journal Agrikultura , 10 , 17–19.
  • Taha, A. H. Y. , & Raski, D. J. (1969). Inter relationship between root nodule bacteria, plant parasitic nematodes and their leguminous host. Journal of Nematology , 1 , 201–211.
  • Thoden, T. C. , Korthals, G. W. , & Termorshuizen, A. J. (2011). Organic amendments and their influences on plant-parasitic and free-living nematodes: A promising method for nematode management. Nematology , 13 , 133–153.10.1163/138855410X541834
  • Tiyagi, S. A. , Khan, A. V. , & Alam, M. M. (2001). Role of oil‐seed cakes for the management of plant‐parasitic nematodes and soil‐inhabiting fungi on lentil and mungben. Archives of Phytopathology and Plant Protection , 33 , 453–472.10.1080/03235400109383368
  • Vance, C. P. , & Johnson, L. E. B. (1981). Nodulation: A plant disease perspective. Plant Disease , 65 , 118–128.10.1094/PD-65-118
  • Wani, A. H. (2006). Management of root-knot nematode, Meloidogyne incognita, on okra and lentil by soil amendment with oil cakes and leaves of different plants. Nematologia Meditteranea , 34 , 83–87.
  • Wani, A. H. , & Bhat, M. Y. (2011). Integrated management of root-knot nematode, Meloidogyne incognita infecting lentil using seed treatment and organic amendment. Plant Disease Research , 26 , 197. Retrieved from http://www.indianjournals.com/ijor.aspx?target=ijor:pdr&volume=26&issue=2&article=abs123
  • Willer, H. , & Julia, L. (2014). The world of organic agriculture 2014: Summary. In H. Willer & L. Julia (Eds.), The world of organic agriculture. Statistics and emerging trends (pp. 25–32). Switzerland: International Federation of Organic Agriculture Movements (IFOAM).