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Quantitative assessment of the interaction between the antagonistic fungus Talaromyces flavus and the wilt pathogen Verticillium dahliae on eggplant roots

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Abstract

Quantitative aspects of the interaction between the antagonist Talaromyces flavus, the pathogen Verticillium dahliae and eggplant roots, were studied. When eggplant roots were inoculated with T. flavus, prior to the infection with the pathogen, the population density of T. flavus on V. dahliae-infected roots was at least 3 times higher than on healthy uninfected roots, and the proliferation of T. flavus on diseased eggplant roots was related to the severity of wilt symptoms, in the two levels of application of T. flavus studied. However, in all classes of disease severity tested (disease index, 0–3), the population density of T. Flavus on eggplant roots treated with 106 ascospores g−1 rooting mixture was significantly (p=0.05) higher than with 105 ascospores g−1. In roots treated with 105 and 106 T. flavus ascospores g−1 rooting mixture, the population density of V. dahliae was reduced by 51% and 69%, respectively. When testing the relationships between the population density of V. dahliae in the roots and disease severity, no significant (p=0.05) difference was found between disease indexes 2 and 3. However, the density of V. dahliae on roots of plants with disease index 1 was significantly (p=0.05) lower than disease indexes 2 and 3. The positive relationship between the inoculum concentration of V. dahliae and the population density of T. flavus developed on eggplant roots was significant (p=0.001), linear, and highly correlated (r=0.945) on a logarithmic scale. In addition, the analysis of these data revealed a significant (p=0.05), high, negative and linear correlation (r=−0.985) between the log concentration of V. dahliae inoculum and the disease reduction achieved by T. flavus.

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References

  • Ahmad J S and Baker R 1987a Rhizosphere competence of Trichoderma harzianum. Phytopathology 77, 182–189.

    Google Scholar 

  • Ahmad J S and Baker R 1987b Competitive saprophytic ability and cellulolytic activity of rhizosphere-competent mutants of Trichoderma harzianum. Phytopathology 77, 358–362.

    Google Scholar 

  • Ashworth L JJr 1983 Aggressiveness of random isolates of Verticillium dahliae from cotton and the quantitative relationship of internal inoculum to defoliation. Phytopathology 73, 1292–1295.

    Google Scholar 

  • Ausher R, Katan J and Ovadia S 1975 An improved selective medium for the isolation of Verticillium dahliae. Phytoparasitica 3, 133–137.

    Google Scholar 

  • Beckman C H and Talboys P W 1981 Anatomy of resistance. In Fungal Wilt Diseases of Plants. Eds. M E Mace, A A Bell and C H Beckman. pp 487–521. Academic Press, New York.

    Google Scholar 

  • Davis J R, Fravel D R, Marois J J and Sorensen L H 1986 Effect of soil fumigation and seedpiece treatment with Talaromyces flavus on wilt incidence and yield, 1983. In Biological and Cultural Tests for Control of Plant Diseases. Ed. J R Hartman. Vol. 1, p 18. The American Phytopathological Society, St. Paul, Minnesota.

    Google Scholar 

  • Dutta B K 1981 Studies on some fungi isolated from the rhizosphere of tomato plants and the consequent prospect for the control of Verticillium wilt. Plant and Soil 63, 209–216.

    Google Scholar 

  • Evans G and Gleeson A C 1973 Observation on the origin and nature of Verticillium dahliae colonizing plant roots. Aust. J. Biol. Sci. 26, 151–161.

    Google Scholar 

  • Evans G, McKeen C D and Gleeson A C 1974 A quantitative bioassay for determinig low numbers of microsclerotia of Verticillium dahliae in field soils. Can. J. Microbiol. 20, 119–124.

    PubMed  Google Scholar 

  • Fahima T and Henis Y 1990 Interactions between pathogen, host and biocontrol agent: multiplication of Trichoderma hamatum and Talaromyces flavus on roots of diseased and healthy hosts. In Biological Control of Soil-borne Plant Pathogens. Ed. D Hornby. pp 165–180. CAB International, Wallingford, UK.

    Google Scholar 

  • Fahima T, Madi L and Henis Y 1992 Ultrastructure and germinability of Verticillium dahliae microsclerotia parasitized by Talaromyces flavus on agar medium and in treated soil. Biocontrol Sci. Technol. 2, 69–78.

    Google Scholar 

  • Fravel D R, Davis J R and Sorensen L H 1986 Effect of Talaromyces flavus and metham on Verticillium wilt incidence and potato yield, 1984–1985. In Biological and Cultural Tests for Control of Plant Diseases. Ed. J R Hartman. Vol. 1, p 17. The American Phytopathological Society, St. Paul, Minnesota.

    Google Scholar 

  • Fravel D R, Kim K K and Papavizas G C 1987 Viability of microsclerotia of Verticillium dahliae reduced by a metabolite produced by Talaromyces flavus. Phytopathology 77, 616–619.

    Google Scholar 

  • Gerik J S and Huisman O C 1988 Study of field-grown cotton roots infected with Verticillium dahliae using an immunoenzymatic staining technique. Phytopathology 78, 1174–1178.

    Google Scholar 

  • Henis Y 1984 Ecological principles of soilborne plant pathogens: Trichoderma model. In Current Perspectives in Microbial Ecology. Eds. M J Klug and C A Reddy. pp 353–361. ASM, Washington DC.

    Google Scholar 

  • Henis Y, Ghaffar A and Baker R 1978 Integrated control of Rhizoctonia solani damping off of radish: effect of successive plantings, PCNB and Trichoderma harzianum on pathogen and disease. Phytopathology 68, 900–907.

    Google Scholar 

  • Henis Y, Ghaffar A and Baker R 1979 Factors affecting suppressivness to Rhizoctonia solani in soil. Phytopathology 69, 1164–1169.

    Google Scholar 

  • Huisman O C 1982 Interrelations of root growth dynamics to epidemiology of root-invading fungi. Annu. Rev. Phytopathol. 20, 303–327.

    Article  Google Scholar 

  • Isaac I and Rogers W G 1974 Verticilliurn wilt of pea (Pisum sativum). Ann. Appl. Biol. 76, 27–35.

    Google Scholar 

  • Katan T 1985 Heat activation of dormant ascospores of Talaromyces flavus. Trans. Brit. Mycol. Soc. 84, 748–750.

    Google Scholar 

  • Kim K K, Fravel D R and Papavizas G C 1988 Identification of a metabolite produced by Talaromyces flavus as glucose oxidase and its role in the biocontrol of Verticillium dahliae. Phytopathology 78, 488–492.

    Google Scholar 

  • Marois J J, Johnston S A, Dunn M T and Papavizas G C 1982. Biological control of Verticillium wilt of eggplant in the field. Plant Disease 66, 1166–1168.

    Google Scholar 

  • Marois J J, Fravel D R and Papavizas G C 1984 Ability of Talaromyces flavus to occupy the rhizosphere and its interaction with Verticillium dahliae. Soil Biol. Biochem. 16, 387–390.

    Article  Google Scholar 

  • McLaren D L and Rimmer S R 1983 Biological Control of Sclerotinia wilt of sunflower by Talaromyces flavus. Phytopathology 73, 822 (Abstr.).

    Google Scholar 

  • McLaren D L, Huang H C and Rimmer S R 1986 Hyperparasitism of Sclerotinia sclerotiorum by Talaromces flavus. Can. J. Plant Pathol. 8, 43–48.

    Google Scholar 

  • Rovira A D 1969 Plant root exudates. Bot. Rev. 35, 35–57.

    Google Scholar 

  • Schnathorst W C 1981 Life cycle and epiderniology of Verticillium. In Fungal Wilt Diseases of Plants. Eds. M E Mace, A A Bell and C E Beckman. pp 81–111. Academic Press, New York.

    Google Scholar 

  • Tuite J 1969 Plant Pathological Methods — Fungi and Bacteria. Burgess Publishing Company, Minneapolis, USA. 239p.

    Google Scholar 

  • Wheeler H 1978 Disease alterations in permeability and membranes. In Plant Diseases, An Advanced Treatise. Eds. J G Horsfall and E B Cowling. Vol. 3, pp 327–347. Academic Press, New York.

    Google Scholar 

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Fahima, T., Henis, Y. Quantitative assessment of the interaction between the antagonistic fungus Talaromyces flavus and the wilt pathogen Verticillium dahliae on eggplant roots. Plant Soil 176, 129–137 (1995). https://doi.org/10.1007/BF00017683

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