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Research Articles

Vol. 12 No. 1 (2025)

Quantifying the economic impact and management strategies for foot rot (Phytophthora capsici L.) disease on black pepper cultivation in West Coast India: Farm-level insights

DOI
https://doi.org/10.14719/pst.6764
Submitted
18 December 2024
Published
24-02-2025 — Updated on 28-02-2025
Versions

Abstract

Foot rot disease, caused by the soil-borne fungus Phytophthora capsici, poses a severe threat to black pepper cultivation, particularly in the Western Ghats region of India. The current study aims to comprehensively assess the economic impact of foot rot disease on black pepper cultivation in Goa and coastal Karnataka, focusing on farm-level losses, considering both present year yield losses and replacement costs given the perennial nature of the vine. The findings reveal an average vine mortality rate of 9.64% due to foot rot, leading to an economic loss of USD 902.04/ha, equivalent to 56% of annual net returns. Using a dummy variable regression model, the effectiveness of various management practices employed by farmers in mitigating foot rot disease was assessed. The study shows that adopting management practices, such as avoiding water stagnation and ensuring good drainage, reduced losses caused by foot rot by 24% (USD 439/ha), while the use of fungicides led to a 20% reduction (USD 364/ha and in the absence of foot rot management strategies, the loss amounted to USD 1838/ha. In conclusion, educating farmers and promoting the adoption of integrated disease management practices can reduce foot rot losses, thereby enabling sustainable production and improved income from black pepper.

References

  1. Aravind R, Eapen SJ, Kumar A, Dinu A, Ramana KV. Screening of endophytic bacteria and evaluation of selected isolates for suppression of burrowing nematode (Radopholus similis Thorne) using three varieties of black pepper (Piper nigrum L.). Crop Prot. 2010;29(4):318–24. https://doi.org/10.1016/j.cropro.2009.12.005
  2. Zachariah TJ. Major Indian spices- An introspection on variability in quality. J Spices Aromatic Crops. 2020;29(1):1–20. https://doi.org/10.25081/josac.2020.v29.i1.6331
  3. Krishnamoorthy B, Parthasarathy VA. Improvement of black pepper. CABI Reviews; 2010. p. 1–12. https://doi.org/10.1079/PAVSNNR20105003
  4. Food and Agriculture Organization of the United Nations. FAOSTAT Statistical Database. Rome; 2024. https://www.fao.org/faostat/en/#data/QCL
  5. Hao C, Fan R, Ribeiro MC, Tan L, Wu H, Yang J, et al. Modeling the potential geographic distribution of black pepper (Piper nigrum) in Asia Using GIS Tools. J Integr Agric. 2012;11(4):593–99. https://doi.org/10.1016/S2095-3119(12)60046-X
  6. Sen S, Gode A, Ramanujam S, Ravikanth G. Modeling the impact of climate change on wild Piper nigrum (Black Pepper) in Western Ghats, India using ecological niche models. J Plant Res. 2016;129:1033–40. https://doi.org/10.1007/s10265-016-0859-3
  7. Paramesh V, Arunachalam V, Nath AJ. Enhancing ecosystem services and energy use efficiency under organic and conventional nutrient management system to a sustainable arecanut based cropping system. Energy. 2019;187:115902. https://doi.org/10.1016/j.energy.2019.115902
  8. Shivakumar MS, Saji KV. Association and path coefficient analysis among yield attributes and berry yield in black pepper (Piper nigrum L.). J Spices Aromatic Crops. 2019;28(2):106–12. https://doi.org/10.25081/josac.2019.v28.i2.6073
  9. Nair KP. The geography of black pepper (Piper nigrum) - The King of Spices. Switzerland: Springer Nature Switzerland AG; 2020:1. https://doi.org/10.1007/978-3-030-52865-2
  10. Madan MS, Sarma YR, Peter KV, et al. Impact assessment of improved management practices for Phytophthora foot rot disease in black pepper. In: Joshi PK, Pal S, et al, editors. Impact of Agricultural Research: Post-Green Revolution Evidence from India. Delhi:NCAP; 2005. p. 281–92 https://oar.icrisat.org/3209/1/152-163.pdf
  11. Nysanth NS, Divya S, Chitra B, Nair AB, Anju R, Praveena KN, Anith. Biological control of foot rot (Phytophthora capsici L.) disease in black pepper (Piper nigrum L.) with rhizospheric microorganisms. Rhizosphere. 2022;23:100578. https://doi.org/10.1016/j.rhisph.2022.100578
  12. Devasahayam S, Zacharaiah J, Jayashree E, Kandiannan K, Prasath D, et al. Black pepper - Extension pamphlet. ICAR-Indian Institute of Spices Research, Kozhikode, Kerala; 2015. http://www.spices.res.in/sites/default/files/Extension%20Pamphlets/pepper_1.pdf
  13. Jibat M, Asfaw M. Management of foot rot (Phytophthora capsici) disease of black pepper (Piper nigrum L.) through fungicides and cultural practices in Southwestern Ethiopia. Int J Agric Res Innov Technol. 2023;13(1):48–50. https://doi.org/10.3329/ijarit.v13i1.67973
  14. Lim JA, Yaacob JS, Mohd Rasli SRA, Eyahmalay JE, El Enshasy HA, Zakaria MRS. Mitigating the repercussions of climate change on diseases affecting important crop commodities in Southeast Asia, for food security and environmental sustainability—A review. Front Sustain Food Syst. 2023;6:1030540. https://doi.org/10.3389/fsufs.2022.1030540
  15. Dutta P, Yasin A, Kumari A, Mahanta M, Sharma A. Diseases of black pepper (Piper nigrum L.) and their integrated management. In: Amar B, Dutta P, editors. Diseases of Commercial Crops and Their Integrated Management (1st ed.), CRC Press; 2023 https://doi.org/10.1201/9781032627908
  16. Mousumi D, Haridas H, Sabu A. Biological control of black pepper and ginger pathogens, Fusarium oxysporum, Rhizoctonia solani and Phytophthora capsici, using Trichoderma spp. Biocatal Agric Biotechnol. 2019;17:177–83. https://doi.org/10.1016/j.bcab.2018.11.021
  17. Van LN. Spread of Phytophthora capsici in black pepper (Piper nigrum) in Vietnam. Engineering. 2015;7(8):506–13. http://dx.doi.org/10.4236/eng.2015.78047
  18. Trinh THT, Wang SL, Nguyen VB, Tran MD, Doan CT, Vo TPK, et al. A potent antifungal rhizobacteria Bacillus velezensis RB.DS29 isolated from black pepper (Piper nigrum L.). Res Chemical Intermediates. 2019;45:5309–23. https://doi.org/10.1007/s11164-019-039715
  19. Metri SM, Singh K. Study of rainfall features over Goa state during Southwest monsoon season. Mausam. 2010;61(2):155–62. https://doi.org/10.54302/mausam.v61i2.796
  20. Paramesh V, Singh SK, Mohekar DS, Arunachalam V, Misra AD, Jat SL, et al. Impact of sustainable land-use management practices on soil carbon storage and soil quality in Goa State, India. Land Degrad Dev. 2021;33:28–40. https://doi.org/10.1002/ldr.4124
  21. NASA, Prediction of Worldwide Energy Resources (POWER), NASA Langley Research Center (LaRC), Hampton, USA; 2024. https://power.larc.nasa.gov/
  22. Conforti P, Markova G, Tochkov D. FAO’s methodology for damage and loss assessment in agriculture. FAO Statistics Working Paper 19–17. Rome; 2020. https://doi.org/10.4060/ca6990en
  23. Hair JF, Black WC, Babin BJ, Anderson RE. Multivariate data analysis (Eighth edition). Cengage, Hampshire, United Kingdom; 2019.
  24. Varghese R, Ray JG. Sustainability of black pepper production: A critical analysis of physicochemical soil parameters concerning variables in pepper fields of South India. Ecol Front. 2024;44(4):788–801. https://doi.org/10.1016/j.ecofro.2024.01.005
  25. Cariappa AA, Chandel BS. Why are the pepper prices declining? An analysis of changing production and trade scenario in India. J Plant Crops. 2020;48(1):60–69. https://doi.org/10.25081/jpc.2020.v48.i1.6219
  26. Kumar RA, Vasu K, Velayudhan KT, Ramachandran V, Bhai RS, Unnikrishnan G. Translocation and distribution of 32P labelled potassium phosphonate in black pepper (Piper nigrum L). Crop Prot. 2009;28(10):878–81. https://doi.org/10.1016/j.cropro.2009.06.016
  27. Vinitha KB, Anandaraj M, Suseela B. Virulence of Phytophthora isolates from Piper nigrum L, and their sensitivity to metalaxyl-mancozeb. J Plant Crops. 2016;44(2):67–76. https://doi.org/10.19071/jpc.2016.v44.i2.3100
  28. Pervez R. Plant health management in major spice crops. In: Sharangi A, editors. Indian Spices. Springer Cham; 2018. https://doi.org/10.1007/978-3-319-75016-3_8

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