375
Views
0
CrossRef citations to date
0
Altmetric
Entomology

Evaluation of oomycete-specific fungicides and application strategies for controlling fruit rot disease on arecanut (Areca catechu L.)

ORCID Icon, , , , , , , & ORCID Icon show all
Article: 2314227 | Received 10 Nov 2023, Accepted 30 Jan 2024, Published online: 13 Feb 2024

References

  • Abbott, W. S. (1925). A method of computing the effectiveness of an insecticide. Journal of Economic Entomology, 18(2), 1–11. https://doi.org/10.1093/jee/18.2.265a
  • Anandaraj, M. (1985). Effect of adhesives on the retention of Bordeaux mixture on arecanut bunches. Annals in Tropical Research, 7, 62–65.
  • Anandaraj, M., & Saraswathy, N. (1986). Effect of systemic fungicides on fruit rot of arecanut. Indian Phytopathology, 39, 607–609.
  • Balanagouda, P., Hegde, V., Sridhara, S., Narayanaswamy, H., Naik, M. K., Patil, K. K. R., Rajashekara, H., & Mishra, A. K. (2022a). Exploring the impact of climatic variables on the arecanut fruit rot epidemic by understanding the disease dynamics in relation to space and time. Journal of Fungi, 8(7), 745. https://doi.org/10.3390/jof8070745
  • Balanagouda, P., Hegde, V., Sridhara, S., Pandian, R. T. P., Thube, S. H., Gangaraj, K. P., Gangurde, S. S., & Jha, P. K. (2022b). Multigene phylogeny and haplotype analysis reveals predominance of oomycetous fungus, Phytophthora meadii (McRae) associated with fruit rot disease of arecanut in India. Saudi Journal of Biological Sciences, 29(8), 103341. https://doi.org/10.1016/j.sjbs.2022.103341
  • Balanagouda, P., Narayanaswamy, H., Hegde, V., Sridhara, S., Pandian, R. T. P., & Thube, S. H. (2023a). Development and evaluation of fungicide-amended urea briquettes (FAUB’s) to combat fruit rot disease of arecanut: A farmers-friendly approach. Crop Protection, 165, 106155. https://doi.org/10.1016/j.cropro.2022.106155
  • Balanagouda, P., Sridhara, S., Narayanaswamy, H., Hegde, V., Mishra, A. K., & Pruthviraj. (2023b). Efficacy of new generation oomycete-specific fungicides on life stages of Phytophthora meadii and field evaluation through bunch spraying system. Crop Protection, 168, 106232. https://doi.org/10.1016/j.cropro.2023.106232
  • Balanagouda, P., Sridhara, S., Shil, S., Vinayaka, H., Naik, M. K., Narayanaswamy, H., & Siva, K. B. (2021a). Assessment of the spatial distribution and risk associated with fruit rot disease in Areca catechu L. Journal of Fungi (Basel, Switzerland), 7(10), 797. https://doi.org/10.3390/jof7100797
  • Balanagouda, P., Vinayaka, H., Maheswarappa, H. P., & Narayanaswamy, H. (2021b). Phytophthora diseases of arecanut in India: Prior findings, present status, and future prospects. Indian Phytopathology, 74(3), 561–572. https://doi.org/10.1007/s42360-021-00382-8
  • Chowdappa, P., Saraswathy, N., Vinayagopal, K., & Somala, M. (2000). Control of fruit rot o arecanut through polythene covering. Indian Phytopathology, 53, 321.
  • Chowdappa, P., Saraswathy, N., Vinayagopal, K., & Somala, M. (2002). Natural occurrence of Phytophthora heveae. Indian Phytopathology, 55, 366.
  • Coleman, L. C. (1910). Diseases of the areca palm. In Koleroga, mycological series. Bulletin no. 2 (pp. 92). Department of Agriculture, Mysore State.
  • Das, T. P. M., & Cheeran, A. (1986). Infectivity of Phytophthora spp. on cash crops in Kerala. Agricultural Research Journal of Kerala, 24, 7–13.
  • Directorate of Arecanut and Spices Development. (2022). Area, production and productivity statistics of arecanut. http://www.dasd.gov.in/statistics (accessed on 15 December 2022).
  • FRAC. (2022). FRAC Code List 2021: Fungicides Sorted by Mode of Action. http://www.phi-base.org/images/fracCodeList.pdf (accessed on 31 July).
  • Hegde, G. M. (2015). Bio-efficacy of potassium phosphonate against nut rot disease of arecanut (Areca catechu L.) in the northern Karnataka of India. Sri Lanka Journal of Food and Agriculture, 1(2), 9–14. https://doi.org/10.4038/sljfa.v1i2.14
  • Heungens, K., De Dobbelaere, I., & Maes, M. (2016). Fungicide control of Phytophthora ramorum on Rhododendron. In Frankel, S. J., Shea, P. J., & Haverty, M. I. (Eds.). Proceedings of the sudden oak death second science symposium: the state of our knowledge (pp. 241–257). US Department of Agriculture, Forest Service, Pacific Southwest Research Station.
  • Jose, C. T., Balasimha, D., & Kannan, C. (2008). Yield loss due to fruit rot (Mahali) disease of arecanut in Karnataka. Indian Journal of Arecanut, Spices and Medicinal Plants, 10, 45–51.
  • Koti Reddy, M., & Anandaraj, M. (1980). Koleroga of arecanut. In Proc: Workshop on phytophthora diseases of tropical cultivated plants (pp. 71–79). Central Plantation Crops Research Institute.
  • Lenth, R., Singmann, H., Love, J., Buerkner, P., & Herve, M. (2018). Emmeans: estimated marginal means, aka least-squares means. R Package Version 1:3.
  • Lokesh, M. S., Patil, S. V., Palakshappa, M. G., & Gurumurthy, S. B. (2014). Role of systemic fungicide metalaxyl mancozeb in management of Koleroga (Phytophthora meadii Mc Rae) of arecanut (Areca catechu L.) in Central Western Ghats of Karnataka. Asian Journal of Biological Sciences, 9, 131–133.
  • Mathew, P., Austin, R. D., Varghese, S. S., & Manoj Kumar, A. D. (2015). Effect of copper-based fungicide (Bordeaux mixture) spray on the total copper content of areca nut: Implications in increasing prevalence of oral submucous fibrosis. Journal of International Society of Preventive & Community Dentistry, 5(4), 283–289. https://doi.org/10.4103/2231-0762.161755
  • Mitra, S. K., & Devi, H. (2018). Arecanut in India – Present situation and future prospects. Acta Horticulturae, 1205(1205), 789–794. https://doi.org/10.17660/ActaHortic.2018.1205.99
  • Naik, B. G., Maheshwarappa, H. P., Nagamma, G., & Latha, S. (2019). Management of fruit rot disease of arecanut (Areca catechu L.) caused by (Phytophthora meadii Mc Rae.). International Journal of Current Microbiology and Applied Sciences, 8(04), 837–847. https://doi.org/10.20546/ijcmas.2019.804.094
  • Narayanaswamy, H., Raju, J., & Jayalakshmi, K. (2017). Management of fruit rot disease of arecanut incited by Phytophthora meadii. International Journal of Current Microbiology and Applied Sciences, 6(7), 2824–2828. https://doi.org/10.20546/ijcmas.2017.607.393
  • Ojiambo, P., Paul, P. A., & Holmes, G. J. (2010). A quantitative review of fungicide efficacy for managing downy Mildew in Cucurbits. Phytopathology, 100(10), 1066–1076. https://doi.org/10.1094/PHYTO-12-09-0348
  • Pande, V. S., Dademal, A. A., Kasture, M. C., & Bhagwat, R. G. (2016). Management of Koleroga of arecanut caused by application of fungicide amended fertilizer briquettes Phytophthora meadii. Journal of Indian Society of Coastal Agricultural Research, 34, 88–90.
  • Pérez-Sierra, A., Álvarez, L. A., Vercauteren, A., Heungens, K., & Abad-Campos, P. (2011). Genetic diversity, sensitivity to phenyl amide fungicides, and aggressiveness of Phytophthora ramorum on Camellia, Rhododendron, and Viburnum plants in Spain. Plant Pathology, 60(6), 1069–1076. https://doi.org/10.1111/j.1365-3059.2011.02485.x
  • Rao, K. S. N. (1962). Estimation of copper on the finites sprayed with Bordeaux mixture. Agricultural Research, 2, 293.
  • Ravikumar, M., Pradeep Kumar, B. A., & Niranjana, K. S. (2019). Standardization of concentration of Bordeaux mixture for management of fruit rot disease (P. meadii) of arecanut. Green Farming, 10, 115–117.
  • Saraswathy, N. (2004). Diseases and disorders. In Rajagopal, V., & Balasimha, D. (Eds.). Arecanut (pp. 134–169). Central Plantation Crops Research Institute.
  • Saraswathy, N. (1994). Studies on Phytophthora spp. on arecanut and arecanut based cropping systems [Ph.D. Thesis]. Mangalore University.
  • Sastry, M. N. L., & Hedge, R. K. (1985). Taxonomic identity of arecanut Phytophthora isolates from the gardens of Sirsi, Uttara Kannada. In Shama Bhat, K., & Radhakrishnan Nair, C. P. (Eds.). Arecanut research and development (pp. 92–94). Central Plantation Crops Research Institute.
  • Sastry, M. N. L., & Hedge, R. K. (1987). Phytophthora associated with arecanut (Areca catechu L) in Uttara Kannada, Karnataka. Current Science, 56, 367–368.
  • Shah, T. A. (2009). Cause and management of Phytophthora fruit rot of tomato (Lycopersicon esculentum Mill.) in Kashmir (pp. 22–76) [Ph.D. Thesis]. Division of Plant Pathology. Sher-e-Kashmir University of Agricultural Sciences & Technology, Shalimar Campus.
  • Shashidhara, S. (2007). Studies on foot rot of black pepper caused by Phytophthora capsici Leonian, emend, Alizedeh and Tsao (pp. 63) [M.Sc. Thesis]. Department of Plant Pathology, University of Agricultural Sciences.
  • Turner, J., Jennings, P., Werres, S., & Wagner, S. (2008). Report response of isolates of Phytophthora ramorum exposed to fungicides commonly used to control Phytophthora diseases in nurseries. Deliverable Report 5, Forest Research, Central Sciences Laboratory.
  • Vannini, A., Natili, G., Anselmi, N., Montaghi, A., & Vettraino, A. M. (2010). Distribution and gradient analysis of Ink disease in chestnut forests. Forest Pathology, 40(2), 73–86. https://doi.org/10.1111/j.1439-0329.2009.00609.x
  • Vercauteren, A., De Dobbelaere, I., Grünwald, N. J., Bonants, P., Van Bockstaele, E., Maes, M., & Heungens, K. (2010). Clonal expansion of the Belgian Phytophthora ramorum populations based on new microsatellite markers. Molecular Ecology, 19(1), 92–107. https://doi.org/10.1111/j.1365-294X.2009.04443.x
  • Wagner, S., Kaminski, K., & Werres, S. (2008). Evaluation of fungicides for control of Phytophthora ramorum. In Frankel, S. J., Kliejunas, J. T., & Palmieri, K. M. (Eds.). Proceedings of the sudden oak death second science symposium: The state of our knowledge (pp. 481–482). US Department of Agriculture, Forest Service, Pacific Southwest Research Station.