BIOLOGICAL POTENTIAL OF TRICHODERMA SPECIES IN THE CONTROL OF SOME PHYTOPATHOGENIC FUNGI

Sobia Chohan, Saba Idrees, Muhammad Abid, Rashida Perveen, Muhammad T. Malik

Abstract


Trichoderma are soilborne, green-spored ascomycetes that can be found all over the world. They are well known for their antagonistic ability towards the control of plant pathogenic fungi. Current research reveals the potential of Trichoderma species against fiveplant pathogenic fungi viz.,Ceratocystis fimbriata,Colletotrichum gleosporiodes,Alternaria solani, Fusarium solani and Verticillium sppTrichoderma species viz., Trichoderma harzianum,Trichoderma viridae and Trichoderma harzianum (AT strain) were evaluated under laboratory conditions for their antagonistic ability towards test fungi.All the Trichoderma isolates had marked statistical inhibitory effect on mycelial growth of test fungi over control. Among theseT. harzianum (AT) gave better results showing 85.19% radial growth inhibition of C. fimbriatawith the mean radial growth of 1.79 cm. followed by 83.09, 79.69, 76.66 and 73.66 percent growth inhibition of F. solani, A. solani, C. gleosporioides and Verticillium spp respectively. Topsin-M was used as positive control that gave maximum growth reduction of all tested fungal species over negative control. Under glasshouse conditions T. harzianum (AT) when tested against C. fimbriataalso gave good results by showing reduced colonization (52.55%) of pathogen in the soil. For the management of mango sudden death syndrome (MSDS) affected plants in the field,T. harzianum (AT) showed significant response for the control of the disease among all the treatments. These investigations constitute a strong base in future for use of Trichoderma species as a potential biological agent for the management of various diseases of plants.


Keywords


Trichoderma; Fungi; MSD; Ceratocystis fimbriata; Mangifera indica

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References


Al Adawi, A. O., M. L. Deadman, A. K. Al Rawahi, Y. M. Al Maqbali, A. A. Al Jahwari, B. A. Al Saadi, I. S. Al Amri and M. J. Wingfield. 2006. Aetiology and causal agents of mango sudden decline disease in the Sultanate of Oman. European Journal of Plant Pathology, 116: 247-254.

Dubey, S. C., M. Suresh and B. Singh. 2007. Evaluation of Trichoderma species against Fusarium oxysporum f. sp. ciceris for integrated management of chickpea wilt. Biological Control, 40: 118-127.

Edigington, L., K. KHEW and G. Barron. 1971. Fungitoxic spectrum of benzimidazoles compounds. Phytopathology, St. Paul, 61: 42-44.

Freeman, S., D. Minz, I. Kolesnik, O. Barbul, A. Zveibil, M. Maymon, Y. Nitzani, B. Kirshner, D. Rav-David and A. Bilu. 2004. Trichoderma biocontrol of Colletotrichum acutatum and Botrytis cinerea and survival in strawberry. European Journal of Plant Pathology, 110: 361-370.

Ha, T. N. 2010. Using Trichoderma species for biological control of plant pathogens in Vietnam. J. ISSAAS, 16: 17-21.

Hajieghrari, B., M. Torabi-Giglou, M. R. Mohammadi and M. Davari. 2008. Biological potantial of some Iranian Trichoderma isolates in the control of soil borne plant pathogenic fungi. African Journal of Biotechnology, 7.

Harman, G. E. 1996. Trichoderma for biocontrol of plant pathogens: from basic research to commercialized products. Proceedings of the Cornell Community Conference on Biological Control, Ithaca, NY.

Hatvani, L., Z. Antal, L. Manczinger, A. Szekeres, I. S. Druzhinina, C. P. Kubicek, A. Nagy, E. Nagy, C. Vágvölgyi and L. Kredics. 2007. Green Mold Diseases of Agaricus and Pleurotusspp. Are Caused by Related but Phylogenetically Different Trichoderma Species. Phytopathology, 97: 532-537.

Howell, C. 2003. Mechanisms employed by Trichoderma species in the biological control of plant diseases: the history and evolution of current concepts. Plant disease, 87: 4-10.

Khanzada, M., A. M. Lodhi and S. Shahzad. 2004. Pathogenicity of Lasiodiplodia theobromae and Fusarium solani on mango. Pakistan Journal of Botany, 36: 181-190.

Kratzer, C., S. Tobudic, M. Schmoll, W. Graninger and A. Georgopoulos. 2006. In vitro activity and synergism of amphotericin B, azoles and cationic antimicrobials against the emerging pathogen Trichoderma spp. Journal of Antimicrobial Chemotherapy, 58: 1058-1061.

Kumar, D. and S. Dubey. 2012. Management of collar rot of pea by the integration of biological and chemical methods. Indian phytopathology.

Malik, M. T., A. A. Dasti and S. M. Khan. 2005. Mango decline disorders prevailing in Pakistan. Proceedings of International Conference on Mango and Date palm: Culture and Export, University of Agriculture, Faisalabad, Pakistan. pp. 20-23.

Masood, A., S. Saeed, N. Iqbal, M. T. Malik and M. R. Kazmi. 2010. Methodology for the evaluation of symptoms severity of mango sudden death syndrome in Pakistan. pakistan Journal of Botany, 42: 1289-1299.

Meyer, W., J. Sinclair and M. Khare. 1973. Biology of Macrophomina phaseoli in soil studied with selective media. Phytopathology.

Pernezny, K. and G. Simone. 2000. Diseases of Mango Mangifera indica L. Common names of plant diseases. American Phytopathological Society, St. Paul, MN.

Rajendiran, R., D. Jegadeeshkumar, B. Sureshkumar and T. Nisha. 2010. In vitro assessment of antagonistic activity of Trichoderma viride against post harvest pathogens. Journal of Agricultural Technology, 6: 31-35.

Ubalua, A. and E. Oti. 2007. Antagonistic properties of Trichoderma viride on post harvest cassava root rot pathogens. African Journal of Biotechnology, 6.

Whipps, J. M. and R. D. Lumsden. 2001. Commercial use of fungi as plant disease biological control agents: status and prospects. Fungal biocontrol agents: progress, problems and potential: 9-22.


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Pakistan Journal of Phytopathology
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