Evaluation of bio-control agents for management of fruit rot and its effect on seed quality in chilli
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Capsicum annuum L., Colletotrichum capsici (Sydow.), seed quality, Trichoderma viride, T. harzianum, TalaromycesIssue
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The fruit rot/anthracnose disease by Colletotrichum capsici (Sydow.) is a wide spread problem, limiting the profitable cultivation and seed production throughout the major chilli growing regions of India. The present investigation was carried out to evaluate the effect of fruit rot on seed quality parameters as well as on eco-friendly management options in-vitro and in-vivo during 2018-2020. Seeds from the bio-agents treated plots exhibited good germination percentage, seedling vigour indices and electrical conductivity compared to control. The seeds from control (diseased) plots exhibited poor germination, which is less than IMSC standards (<60%). This clearly elucidates that there is a huge loss in all the seed quality parameters due to fruit rot in chilli. Among the three bio-agents evaluated for their efficacy in inhibiting the mycelial growth of C. capsici in dual culture technique, Trichoderma viride and T. harzianum were having better antagonistic effect due to their aggressiveness and fast growth on the fruit rot pathogen as compared to Talaromyces sp. Therefore, bio-agent can be a better ecofriendly option for the management of fruit rot disease with better quality of seeds in chilli.Abstract
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Abdul Baki, A. A. and Anderson, J. P. 1973. Vigour determination in soybean seeds by multiple criteria. Crop Sci. 13: 630-33. Akhtar, J., Singh, B., Kandan, A., Kumar, P. and Dubey, S. C. 2017. Status of Colletotrichum species infecting chilli germplasm processed for pathogen-free conservation in National Genebank, India. Bangladesh J. Bot. 46: 231-37. Choudhary, C. S., Jain, S. C., Ritesh Kumar and Jaipal Singh Choudhary. 2013. Efficacy of different fungicides, biocides and botanical extract seed treatment for controlling seed borne Colletotrichum sp. in chilli (Capsicum annum L.). The Bioscan. 8: 123-26. Deshmukh, R. R., Apet, K. T., Kamble, H. N. and Utpal Dey. 2012. Effect of different inoculants on germination and biometric character of chilli (Var. Parbhani Tejas). Int. J. Pl. Prot. 5: -55. Hermosa, R., Viterbo, A., Chet, I. and Monte, E. 2012. Plant beneficial effects of Trichoderma and of its genes. Microbiol. 158: 17–25. Indian Minimum Seed Certification Standards (IMSCS) 2013, pp 202-203. International Seed Testing Association (ISTA) International Rules of Seed Testing, Bassersdorf, Switzerland. Machenahalli, S., Nargund, V. B. and Hegde, R. V. 2014. Management of fruit rot causing seed borne fungal pathogens in chilli. The Bioscan. 9: -06. Malathi, P. 1996. Biocontrol of groundnut (Arachis hypogaea L.) dry root rot caused by Macrophomina phaseolina (Tassi.) Gold. Ph.D. Thesis. Tamil Nadu Agricultural University, Coimbatore, pp 51-69. Pandit, M. K. and Adhikary, S. 2014. Variability and heritability estimates in some reproductive character and yield in chilli (Capsicum annuum L.). Int. J. Plant Soil Sci. 3: 845-53. Presley, H. T. 1958. Relation of protoplast permeability of cotton seed viability and predisposition to seedling diseases. Plant Dis. Rep. 42: 52. Priya, K., Deshpande, V. K. and Kumar, H. B. Influence of fertilizer level and seedling age on growth, flowering, seed yield and seed quality of parental line of chilli hybrid HCH9646. A Quarterly J. Life Sci. 10: 110-14. Ramamoorthy, V. and Samiyappan, R. Induction of defense related genes in Pseudomonas fluorescens treated chilli plants in response to infection by Colletotrichum capsici. J. Mycol. Pl. Pathol. 31: 146-55. Singh, H. B., Singh, B. N., Singh, S. P. and Sarma, B. K. 2012. Exploring different avenues of Trichoderma as a potent biofungicidal and plant growth promoting candidate an overview. Rev. Plant Pathol. 5: 315-426. Vincent, J. M. 1947. Distortion of fungal hyphae in the presence of certain inhibitors. Nature : 850.
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