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Original Articles

The Effects of Soil Solarization and Compost on Soil Suppressiveness against Fusarium Oxysporum f. sp. Melonis

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Pages 206-210 | Received 08 Sep 2016, Accepted 27 Dec 2016, Published online: 15 Mar 2017

References

  • Berry, E. D., P. D. Millner, J. E. Wells, N. Kalchayanand, and M. N. Guerini. 2013. Fate of naturally occurring Escherichia coli O157:H7 and other zoonotic pathogens during minimally managed bovine feedlot manure composting processes. Journal of Food Protection 76 (8):1308–1321.
  • Bonanomi, G., V. Antignani, C. Pane, and F. Scala. 2007. Suppression of soil-borne fungal diseases with organic amendments. Journal Plant Pathology 89:311–24.
  • Chen, W., H. A. J. Hoitink, and L. V. Madden. 1988. Microbial activity and biomass in container media for predicting suppressiveness to damping-off caused by Pythium ultimum. Phytopathology 78:1447–50.
  • Cohen, R., T. Katan, J. Katan, and R. Cohn. 1989. Occurrence of Fusarium oxysporum f. sp. melonis race 1,2 on muskmelon in Israel. Phytoparasitica 17:319–22.
  • Cook, R. J., and K. F. Baker. 1983. The nature and practice of biological control of plant pathogens. St. Paul, MN: American Phytopathological Society.
  • DeVay, J. E., and J. Katan. 1991. Mechanisms of pathogen control in solarized soils. In Soil Solarization, edited by J. E. DeVay and J. Katan, 87–101. Boca Raton, FL: CRC Press.
  • Gamliel, A., M. Austerweil, and G. Kritzman. 2000. Non-chemical approach soilborne pest management-organic amendments. Crop Protection 19:847–53.
  • Greenberger, A., A. Yogev, and J. Katan. 1987. Induced suppressiveness in solarized soils. Phytopathology 77:1663–67.
  • Hoitink, H. A. J., and M. J. Boehm. 1999. Biocontrol within the context of soil microbial communities: A substrate-dependent phenomenon. Annual Review of Phytopathology 37:427–446.
  • Hoitink, H. A. J., A. G. Stone, and D. Y. Han. 1997. Suppression of plant diseases by composts. HortScience 32:184–87.
  • Kanaan, H., S. H. Medina, A. Krassnovsky, and M. Raviv. 2015. Survival of macrophomina phaseolina s.l. and verticillium dahliae during solarization as affected by composts of various maturities. Crop Protection 76:108–13.
  • Kanaan, H., D. Minz, S. H. Medina, A. Krassnovsky, and M. Raviv. 2016. The interdependent effects of solar disinfestation and compost maturity level on soil microbial activity. Phytoparasitica 44:55–64.
  • Klein, E., J. Katan, and A. Gamliel. 2011. Soil suppressiveness to fusarium disease following organic amendments and solarization. Plant Disease 95:1116–23.
  • Klein, E., J. Katan, and A. Gamliel. 2012. Soil suppressiveness to meloidogyne javanica as induced by organic amendments and solarization in greenhouse crops. Crop Protection 39:26–32.
  • Kreutzer, W. A. 1965. The reinfestation of treated soil. In Ecology of soil-borne plant pathogens, ed. K. F. Baker and W. C. Snyder, 495–507. Berkeley, CA: University of California Press.
  • Mandelbaum, R., and Y. Hadar. 1990. Effects of available carbon source on microbial activity and suppression of Pythium aphanidermatum in compost and peat container media. Phytopathology 80:794–804.
  • Olsen, C. M., and K. F. Baker. 1968. Selective heat treatment of soil, and its effect on the inhibition of Rhizoctonia solani by Bacillus subtilis. Phytopathology 58:79–87.
  • Raviv, M., O. Yuji, J. Katan, Y. Hadar, A. Yogev, S. H. Medina, A. Krasnovsky, and H. Ziadna. 2005. High-nitrogen compost as a medium for organic container-grown crops. Bioresource Technology 96:419–27.
  • Raviv, M., B. Zaidman, and Y. Kapulnik. 1998. The use of compost as a peat substitute for organic vegetable transplants production. Compost Science & Utilization 6:46–52.
  • Schreiner, P. R., K. L. Ivors, and J. N. Pinkerton. 2001. Soil solarization reduces arbuscular mycorrhizal fungi as a consequence of weed suppression. Mycorrhiza 11:273–77.
  • Stapleton, J. J., and J. E. DeVay. 1982. Effect of soil solarization on populations of selected soilborne microorganisms and growth of deciduous fruit tree seedlings. Phytopathology 72:323–26.
  • Stapleton, J. J., and J. E. DeVay. 1984. Thermal components of soil solarization as related to changes in soil and root microflora and increased plant growth response. Phytopathology 74:255–59.
  • van Os, G. J., and J. H. van Ginkel. 2001. Suppression of Pythium root rot in bulbous iris in relation to biomass and activity of the soil microflora. Soil Biology and Biochemistry 33:1447–54.
  • Yogev, A., M. Raviv, Y. Hadar, R. Cohen, and J. Katan. 2006. Plant waste based composts suppressive to diseases caused by pathogenic Fusarium oxysporum. European Journal of Plant Pathology 116:267–78.

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