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Pakistan Journal of Biological Sciences

Year: 2005 | Volume: 8 | Issue: 6 | Page No.: 872-876
DOI: 10.3923/pjbs.2005.872.876
Effect of Salinity on in vitro Trichoderma harzianum Antagonism Against Verticillium dahliae
Amina Regragui and Houria Lahlou

Abstract: This in vitro study led to test the sodium chloride tolerance of Trichoderma harzianum and to evaluate the impact of salinity on its antagonistic capacities, in order to use it as a biological agent controlling Verticillium wilt of tomato in Moroccan saline soils. Trichoderma harzianum tolerates the salinity for its mycelial growth but its sporulation is significantly reduced. The efficiency of the antagonistic modes of action of Trichoderma against Verticillium depends on the saline concentration used. Thus, the antagonism by competition is slightly affected by moderated salt concentrations (6 g L-1). The antagonism by antibiosis decreases with the increase of salt. The antagonistic compounds produced by Trichoderma in presence of 8 g L-1 NaCl concentration still reduce the pathogen growth but have no action on the abundance of microsclerotia. The in vitro antagonistic properties of T. harzianum obtained at low salt concentrations may be applied for the biological control of Verticillium wilt of tomato in Moroccan saline soils where levels of salinity are equivalent to salt concentrations favorable to Trichoderma antagonism.

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How to cite this article
Amina Regragui and Houria Lahlou, 2005. Effect of Salinity on in vitro Trichoderma harzianum Antagonism Against Verticillium dahliae. Pakistan Journal of Biological Sciences, 8: 872-876.

Keywords: salinity, verticillium, Trichoderma and mode of action

REFERENCES

  • Besri, M. and A. Afailal, 1993. Effect of soil and water salt content on the development of Verticillium wilt on resistant tomato cultivars. Proceedings of the 6th International Congress on Plant Pathology, Jul. 28-Aug. 6, Montreal, Canada.


  • Besri, M., 1991. Verticillium wilt of tomato grown under plastic tunnel in Morocco. Acta Hortic., 287: 355-360.


  • Regragui, A., M. Rahouti and H. Lahlou, 2003. Effect of salinity stress on Verticillium albo-atrum: Pathogenicity and in vitro production of cellulolytic enzymes. Cryptogamie Mycol., 24: 167-174.
    Direct Link    


  • Cook, R.J., 1973. Influence of low plant and soil water potentials on diseases caused by soilborne fungi. Phytopathology, 63: 451-458.


  • Harris, D.C. and J.R. Yang, 1996. The relationship between the amount of Verticillium dahliae in soil and the incidence of strawberry wilt as a basis for disease risk prediction. Plant Pathol., 45: 106-114.
    Direct Link    


  • Elad, Y., Y. Hadar, E. Hadar, I. Chet and Y. Henis, 1991. Biological control of Rhizoctonia solani by Trichoderma harzianum in carnation. Plant Dis., 65: 675-677.


  • Cliquet, S. and R.J. Scheffer, 1996. Biological control of damping-off caused by Pythium ultimum and Rhizoctonia solani using Trichoderma sp. applied as industrial film coatings on seeds Eur. J. Plant Pathol., 102: 247-255.
    CrossRef    Direct Link    


  • Eden, M.A., R.A. Hill and A. Stewart, 1996. Biological control of Botrytis stem infection of green house tomatoes. Plant Pathol., 45: 276-284.
    Direct Link    


  • Harman, G.E., B. Latorre, B. Agosin, R. San Martin and D.G. Riegel et al., 1996. Biological and integrated control of Botrytis bunch rot of grape using Trichoderma sp. Biol. Control, 7: 259-266.
    CrossRef    


  • Howell, C.R., 2002. Cotton seedling preemergence damping-off incited by Rhizoctonia orysae and Pythium spp. and its biological control with Trichoderma spp. Phytopathology, 92: 177-180.
    CrossRef    Direct Link    


  • Datnoff, L.E., S. Nemec and K. Pernezny, 1995. Biological control of Fusarium crown and root rot of tomato in Florida using Trichoderma harzianum and Glomus intraradices. Biol. Control, 5: 427-431.
    CrossRef    


  • Haggag W.M. and A.W. Amin, 2001. Efficiency of Trichoderma species in control of Fusarium-Rot, Root knot and reniform nematode disease complex on sunflower. Pak. J. Biol. Sci., 4: 314-318.
    Direct Link    


  • Stefanova, M., A. Leiva, L. Larrinaga and M.F. Courrone, 1999. Metabolic activity of Trichoderma spp. Isolates for control of soilborne phytopathogenic fungi. Rev. Fac. Agro. (Luz), 16: 509-516.
    Direct Link    


  • Lorito, M., G.E. Harman, C.K. Hayes, R.M. Broadway, A. Tronsmo, S.L. Woo and A. di Pietro, 1993. Chinolytic enzymes produced by Trichoderma harzianum: Antifungal activity of purified endochinase and chetobiosidase. Phytopathology, 83: 302-307.
    Direct Link    


  • Windham, M.T., Y. Elad and R.A. Baker, 1986. Mechanism for increased plant growth induced by Trichoderma sp. Phytopathology, 76: 518-521.
    Direct Link    


  • Ozbay, N. and S.E. Newman, 2004. Effect of Trichoderma strains to colonize tomato roots and improve Transplant growth. Pak. J. Biol. Sci., 7: 253-257.


  • Eastburn, D.B. and E.E. Butler, 1991. Effects of soil moisture and temperature on the saprophytic ability of Trichoderma harzianum. Mycologia, 83: 257-263.
    Direct Link    


  • Camporota, P., 1985. In vitro Antagonism of Trichoderma spp. against Rhizoctonia solani Kuhn. Agronomie, 5: 613-620.
    CrossRef    


  • D`Ercole, N., P. Nipoti, L. di Pillo and F. Gavina, 2000. In vitro and in vivo Tests of Trichoderma spp. As a Biocontrol Agent of Verticillium dahliae kleb. In Eggplants. Advances in Verticillium Research and Disease Management. APS Press, USA., pp: 260-263


  • Essalmani, H. and H. Lahlou, 2002. In vitro study of antagonistic activity of microorganisms against Fusarium oxysporum f.sp. lentis. Cryptogamie Mycol., 23: 221-234.


  • Claydon, N., M. Allen, J.R. Hanson and A.G. Avent, 1987. Antifungal alkyl pyrones of Trichoderma harzianum. Trans. Br. Mycol. Soc., 88: 505-513.
    CrossRef    Direct Link    


  • Graeme-Cook, K.A. and J.L. Faull, 1991. Effect of ultraviolet induced mutants of Trichoderma harzianum with altered antibiotic production on selected pathogens in vitro. Can. J. Microbiol., 37: 659-664.
    Direct Link    

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