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Research Articles

Vol. 13 No. sp5 (2026): Recent Advances in Agriculture

Weather-based predictive assessment of Sigatoka leaf spot in banana cultivars

DOI
https://doi.org/10.14719/pst.12098
Submitted
3 October 2025
Published
20-07-2026

Abstract

Sigatoka leaf spot, a major fungal disease of banana, causes significant yield losses. Although its development is strongly influenced by weather, the specific relationships between meteorological factors and disease severity in key Indian cultivars require quantification for effective forecasting and management. Weekly disease assessments (percent disease index; PDI) and meteorological data were collected for three banana cultivars (Grand Naine, Ney Poovan and Nendran) during the 2024–25 cropping season. The relationships between meteorological variables and PDI were evaluated through Pearson's correlation and multiple linear regression analysis. Correlation analysis identified wind speed as having the strongest negative correlation with PDI across all cultivars (r = -0.42 to -0.45), while rainfall showed a positive correlation (r = 0.27 to 0.31). Multiple regression confirmed wind speed and rainfall as the most significant predictors
(p < 0.05), with relative humidity and temperature showing minimal independent effects. The findings demonstrate that managing the microclimate to reduce leaf wetness from rainfall and enhance airflow is critical. These insights form a scientific basis for prioritising management strategies such as increased plant spacing and canopy pruning to achieve sustainable control.

References

  1. 1. Britannica. Banana. Encyclopaedia Britannica Inc. 2022;32:1–4.
  2. 2. Food and Agriculture Organization of the United Nations. FAOSTAT: Production: Crops and livestock products. Rome: FAO; 2024. https://www.fao.org/faostat/en/#data/QCL
  3. 3. Raju C, Pazhanivelan S, Perianadar IV, Kaliaperumal R, Sathyamoorthy NK, Sendhilvel V. Climate change as an existential threat to tropical fruit crop production-a review. Agriculture. 2024;14(11):2018. https://doi.org/10.3390/agriculture14112018
  4. 4. Udhayakumar M, Devi HM, Vanlalruata J, Bharathi B, Achumi KK. Survey and identification of fungal plant diseases in important fruits and vegetables of Tamil Nadu. J Mycopathol Res. 2023;61(1):69–74. https://doi.org/10.57023/JMycR.61.1.2023.069
  5. 5. Jones DV. Handbook of diseases of banana, abacá and enset. Boston (MA): CABI; 2019.
  6. 6. Stover RH, Simmonds NW. Bananas. 3rd ed. New York: Longman; 1987.
  7. 7. Crous PW, Mourichon X. Mycosphaerella eumusae and its anamorph Pseudocercospora eumusae sp. nov.: causal agent of eumusae leaf spot disease of banana. Sydowia. 2002;54(1):23–34.
  8. 8. Viljoen A, Mahuku G, Massawe C, Ssali RT, Kimunye J, Mostert G, et al. Banana pests and diseases: field guide for disease diagnostics and data collection. Ibadan (Nigeria): International Institute of Tropical Agriculture (IITA); 2016.
  9. 9. Stover RH. The effect of temperature on ascospore germinative tube growth of Mycosphaerella musicola and Mycosphaerella fijiensis var. difformis. Fruits. 1983;38(9):625–8.
  10. 10. Shanthiyaa V, Karthikeyan G, Raguchander T, Prabakar K. Prevalence of banana yellow Sigatoka disease caused by Mycosphaerella musicola in Tamil Nadu. J Mycol Plant Pathol. 2013;43(4):414.
  11. 11. Jacome LH, Schuh W. Effects of leaf wetness duration and temperature on development of black Sigatoka disease on banana infected by Mycosphaerella fijiensis var. difformis. Phytopathology. 1992;82(5):515–20.
  12. 12. Khan MAH, Hossain I, Ahmad MU. Impact of weather on Sigatoka leaf spot of banana (Musa spp. L.) and its ecofriendly management. The Agriculturists. 2015;13(2):44–53. https://doi.org/10.3329/agric.v13i2.26587
  13. 13. Balendres MAO. Plant diseases caused by fungi in the Philippines. In: Mycology in the tropics: updates on Philippine fungi. Elsevier; 2022. p. 163–88. https://doi.org/10.1016/B978-0-323-99489-7.00014-7
  14. 14. Borah S, Bora D, Bhorali P. Morphological studies on yellow Sigatoka disease in banana cultivar Kachkal (Musa paradisiaca ABB) and its causal organism. Plant Arch. 2020;20(2):6655–61.
  15. 15. Gauhl F. Epidemiology and ecology of black Sigatoka (Mycosphaerella fijiensis Morelet) on plantain and banana (Musa spp.) in Costa Rica, Central America. Montpellier (France): INIBAP; 1994.
  16. 16. McKinney H. A new system of grading plant diseases. J Agric Res. 1923;26:195–218.
  17. 17. Tabachnick BG. Using multivariate statistics. Boston: Allyn and Bacon; 2007.
  18. 18. Edwards AW. RA Fisher, statistical methods for research workers (1925). In: Landmark writings in western mathematics 1640–1940. Elsevier Science; 2005. p. 856–70.
  19. 19. Jobson JD. Multiple linear regression. In: Applied multivariate data analysis: regression and experimental design. New York (NY): Springer; 1991. p. 219–98.
  20. 20. Rocha HS, Pozza EA, Uchôa CDN, Cordeiro ZJM, De Souza PE, Sussel ÂAB, et al. Temporal progress of yellow Sigatoka and aerobiology of Mycosphaerella musicola spores. J Phytopathol. 2012;160(6):277–85.
  21. 21. Fouré E. Varietal reactions of bananas and plantains to black leaf streak disease. In: Banana and plantain breeding strategies. ACIAR; 1987. p. 110–13.
  22. 22. Robinson JC, Saúco VG. Bananas and plantains. 2nd ed. Wallingford: CABI; 2010.
  23. 23. Huber L, Gillespie TJ. Modeling leaf wetness in relation to plant disease epidemiology. Annu Rev Phytopathol. 1992;30(1):553–77.
  24. 24. Rieux A, Soubeyrand S, Bonnot F, Klein EK, Ngando JE, Mehl A, et al. Long-distance wind-dispersal of spores in a fungal plant pathogen: estimation of anisotropic dispersal kernels from an extensive field experiment. PLoS One. 2014;9(8):e103225.
  25. 25. Fullerton RA, Olsen TL. Pathogenic variability in Mycosphaerella fijiensis Morelet. In: Proceedings of the ASPNET Asia and Pacific Network Seminar; 1991; Philippines. p. 110–13.
  26. 26. Stover RH. Banana, plantain and abaca diseases. Kew: Commonwealth Mycological Institute; 1972.
  27. 27. Churchill AC. Mycosphaerella fijiensis, the black leaf streak pathogen of banana: progress towards understanding pathogen biology and detection, disease development and the challenges of control. Mol Plant Pathol. 2011;12(4):307–28.

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