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Microbial enrichment of compost with biological control agents to enhance suppressiveness to four soil-borne diseases in greenhouse

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Abstract

The aim of the present work was to study if the level and reproducibility of suppressive properties of compost can be increased upon enrichment with biological control agents. A compost made from green waste, organic urban waste and urban sludge was inoculated with commercial formulations of Trich oderma and non-pathogenic Fusarium. The compost showed to be suppressive against some soil-borne pathogens, except R. solani, while such activity was lost after sterilisation. The suppressive effect of enriched compost was assessed in greenhouse trials on cucumber, tomato, bean and basil. The addition of T. harzianum T-22 at 4 g l-1 dosage was able to increase suppressiveness against R. solani of a 40% compost and 60% peat mix and to increase biomass of bean compared to a peat inoculated control. The same enrichment did not reduce suppressiveness of compost against P. ultimum and P. nicotianae, so its addition might be considered a good strategy to increase compost suppressiveness. Disease suppressiveness of sterilised compost was restored by the addition of T. viride TV1 (> 4 gl-1) in P. ultimum /cucumber and in P. nicotianae/tomato. This study represents a further step toward the development of a substrate able to control a wide range of soil-borne pathogens and in the use of fortified composts for controlling plant diseases.

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References

  • Carisse O, Bernier J & Benhamou N, 2003. Selection of biological agents from composts for control of damping-off of cucumber caused by Pythium ultimum. Can J Plant Pathol 25, 258–267.

    Article  Google Scholar 

  • Elad Y, Chet I & Katan J, 1980. Trichoderma harzianum: a biocontrol agent effective against Sclerotium rolfsii and Rhizoctonia solani. Phytopathology 70, 119–121.

    Article  Google Scholar 

  • GaribaIdi A, 1988. Research on substrates suppressive to Fusarium oxysporum and Rhizoctonia solani. Acta Hort 221, 271–277.

    Article  Google Scholar 

  • Garibaldi A, Brunatti F & Gullino ML, 1987. Evaluation of several antagonists and different methods of application against Fusarium wilt of carnation. EPPO Bulletin 17, 625–629.

    Article  Google Scholar 

  • Hoitink HAJ & Boehm MJ, 1999. Biocontrol within the context of soil microbial communities: a substrate-dependent phenomenon. Ann Rev Phytopathol 37, 427–446.

    Article  CAS  Google Scholar 

  • Kwok OCH, Fahy PC, Hoitink HAJ & Kuter GA, 1987. Interactions between bacteria and Trichodermaamatum in suppression of Rhizoctonia damping-off in bark composted media. Phytopathology 77, 1206–1212.

    Article  Google Scholar 

  • Locke T & Colhoun J, 1974. Contributions to a method of testing oil palm seedlings for resistance to Fusarium oxysporum Schl. f. sp. elaeidis Toovey. Phytopathol Z 79, 77–92.

    Article  Google Scholar 

  • Noble R & Coventry E, 2005. Suppression of soil-borne plant diseases with composts: a review. Biocontrol Sci Techn 15, 3–20.

    Article  Google Scholar 

  • Noble R & Roberts SJ, 2004. Eradication of plant pathogens and nematodes during composting: a review. Plant Pathol 53, 548–568.

    Article  Google Scholar 

  • Postma J, Montanari M & Boogert van den PHJF, 2006. Micro-bial enrichment to enhance the disease suppressive activity of compost. Eur J Soil Biol 39, 157–163.

    Article  Google Scholar 

  • Pugliese M, Garibaldi A. & Gullino ML, 2007. The use of compost in horticulture for controlling soil-borne pathogens. Phytopathology s97, s95.

    Google Scholar 

  • Pugliese M, Liu BP, Gullino ML & Garibaldi A, 2008. Selection of antagonists from compost to control soil-borne pathogens. J Plant Dis Plant Protect 115, 220–228.

    Google Scholar 

  • Scheurell SJ & Mahaffee WF, 2005. Microbial recolonization of compost after peak heating needed for the rapid development of damping-off suppression. Compos Sci Util 13, 65–71.

    Article  Google Scholar 

  • Scheuerell SJ, Sullivan DM & Mahaffee WF, 2005. Suppression of seedling damping-off caused by Pythium ultimum, P. irregulare, and Rhizoctonia solani in container media amended with a diverse range of Pacific Northwest compost sources. Phytopathology 95, 306–315.

    Article  PubMed  Google Scholar 

  • Termorshuizen AJ, van Rijn E, van der Gaag DJ, Alabouvette C, Chen Y, Lagerlöf J, Malandrakis AA, Paplomatas EJ, Rämert B, Ryckeboer J, Steinberg C & Zmora-Nahum S, 2006. Suppressiveness of 18 composts against 7 patho-systems: variability in pathogen response. Soil Biol Biochem 38, 2461–2477.

    Article  CAS  Google Scholar 

  • Trillas IM, Casanova E, Cotxarrera L, Ordovàs J, Borrero C & Avilés M, 2006. Composts from agricultural waste and the Trichoderma asperellum strain T-34 suppress Rhizoctonia solani in cucumber seedlings. Biol Control 39, 32–38.

    Article  Google Scholar 

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Correspondence to Massimo Pugliese.

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Pugliese, M., Liu, B., Gullino, M.L. et al. Microbial enrichment of compost with biological control agents to enhance suppressiveness to four soil-borne diseases in greenhouse. J Plant Dis Prot 118, 45–50 (2011). https://doi.org/10.1007/BF03356380

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  • DOI: https://doi.org/10.1007/BF03356380

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