Yields Losses Caused by Basal Plate Rot (Fusarium oxysporum f.sp. cepae) in Some Shallot Varieties

Hadiwiyono Hadiwiyono, Kumala Sari, Susilo Hambeg Poromarto

Abstract

Basal plate rot or moler caused by Fusarium oxysporum f. sp. cepae (FOCe) is the most important disease of shallot. However, the information of crop losses attributed to the pathogen is still limited, especially related to resistance of shallot. This paper discusses the correlation between disease severity and resistance of some shallot varieties to yield losses. The experiment was arranged by Completely Randomized Design (CRD) with six varieties of shallot as treatments, each of which consisted of 20 shallots, with three times of replications. The independent variables were the disease severity of twisting leaf and rotting of shallot bulb. The association of disease severity versus yield losses in different varieties was based on the correlation analysis. The results showed that both variables were positively correlated to yield losses, which were significantly affected by the level of resistance. Yield losses in resistant and moderate varieties were at the ranges of 2.13-4.38 and 15, 27.26-40.04, respectively.

Keywords

disease severity; resistance; susceptible; twisting leaf

Full Text:

PDF

References

Agrios, G. N. (2005). chapter eleven - Plant Diseases Caused by Fungi. In: Agrios, G. N. (ed). Plant Pathology (Fifth Edition), pp. 385-614. Crossref

Arie, T. (2019). Fusarium diseases of cultivated plants, control, diagnosis, and molecular and genetic studies. Journal of Pesticide Science, 44(4), 275–281. Crossref

Armstrong, G. M., & Armstrong, J. K. (1981). Formae speciales and races of Fusarium oxysporum causing wilt diseases. Pages 391-399. In: Fusarium: Disease, Biology, and Taxonomy. P. E. Nelson, T. A. Toussoun, and R. J. Cook, eds. The Pennsylvania State University Press, University Park, London. Retrieved from Link

Barnoczkine, S. (1986). Possibilities to control Fusarium on onion. Zoldsegtermesztesi Kutato Intezet Bulletinje, 19, 33. Retrieved from Link

Booth, C. (1971). The Genus Fusarium. Kew, UK: Commonwealth Mycological Institute.

Brzozowski, L., & Mazourek, M. (2018). A sustainable agricultural future relies on the transition to organic agroecological pest management. Sustainability, 10(6), 2023. Crossref

Costa, A. E. S., da Cunha, F. S., Honorato, A. da C., Capucho, A. S., Dias, R. de C. S., Borel, J. C., & Ishikawa, F. H. (2018). Resistance to Fusarium Wilt in watermelon accessions inoculated by chlamydospores. Scientia Horticulturae, 228, 181–186. Crossref

Deden & Umiyati, U. (2017). Pengaruh inokulasi Trichoderma sp dan varietas bawang merah terhadap penyakit moler dan hasil tanaman bawang merah (Allium ascalonicum L). Jurnal Kultivasi, 16(2), 140–148. Crossref

Dinakaran, D., Gajendran, G., Mohankumar, S., Karthikeyan, G., Thiruvudainambi, S., Jonathan, E. I., Samiyappan, R., Pfeiffer, D. G., Rajotte, E. G., Norton, G. W., Miller, S., & Muniappan, R. (2013). Evaluation of Integrated Pest and Disease Management Module for Shallots in Tamil Nadu, India: a Farmer’s Participatory Approach. Journal of Integrated Pest Management, 4(2), B1–B9. Crossref

Dissanayake, M. L. M. C., Kashima, R., Tanaka, S., & Ito, S. (2009). Pathogenic variation and molecular characterization of Fusarium species isolated from wilted welsh onion in Japan. Journal of General Plant Pathology, 75(1), 37–45. Crossref

Edy, S. (2019). Pertumbuhan dan hasil beberapa varietas bawang merah pada dua cara tanam di lahan kering dataran rendah Kota Jambi. Jurnal Agroecotenia, 2(1), 1–10. Retrieved from Link

Esfahani, M. N., Hossaini, M., & Ashrafi, N. (2012). Screening of Iranian onion seed sets genotypes for resistance to Fusarium oxysporum f.sp. cepae. Archives of Phytopathology and Plant Protection, 46(15), 1864–1873. Crossref

Fadhilah, S., Wiyono, S., & Surahman, M. (2014). Pengembangan Teknik Deteksi Fusarium Patogen pada Umbi Benih Bawang Merah (Allium ascalonicum) di Laboratorium. Jurnal Hortikultura, 24(2), 171–178. Crossref

Heil, M., & Bostock, R. M. (2002). Induced systemic resistance (ISR) against pathogens in the context of induced plant defences. Annals of Botany, 89(5), 503–512. Crossref

Jiménez-Díaz, R. M., & Jiménez-Gasco, M. del M. (2011). Integrated management of Fusarium Wilt Diseases. In book: Control of Fusarium Diseases, Chapter: Chapter 7. Transworld Research Network & Research Signpost, pp. 177–215. Retrieved from Link

Lampridi, M. G., Sørensen, C. G., & Bochtis, D. (2019). Agricultural sustainability: A review of concepts and methods. Sustainability, 11(18), 5120. Crossref

Manurung, M. (2019). Konsumsi dan neraca penyediaan - penggunaan bawang merah. Buletin Konsumsi Pangan, 10(1), 55–61. Retrieved from Link

Michielse, C. B., & Rep, M. (2009). Pathogen profile update: Fusarium oxysporum. Molecular Plant Pathology, 10(3), 311–324. Crossref

Mishra, R. K., Jaiswal, R. K., Kumar D., Saabale, P. R., & Singh, A. (2014). Management of major diseases and insect pests of onion and garlic: A comprehensive review. Journal of Plant Breeding and Crop Science, 6(11), 160–170. Crossref

Nelson, P. E. (1981). Chapter 3 - Life Cycle and Epidemiology of Fusarium oxysporum. In Fungal Wilt Diseases of Plants (pp. 51–80). Crossref

Nugroho, B., Astriani, D., & Mildaryani, W. (2011). Variasi virulensi isolat Fusarium oxysporum f. sp. cepae pada beberapa varietas bawang merah. Agrin, 15(1), 8–17. Retrieved from Link

Nutter, F. W., Teng, P. S., & Royer, M. H. (1993). Terms and concepts for yield, crop loss, and disease thresholds. Plant Disease, 77(2), 211–216. Retrieved from Link

Prakoso, E. B, Wiyatiningsih, S., & Nirwanto, H. (2016). Uji ketahanan berbagai kultivar bawang merah (Allium ascalonicum) terhadap infeksi penyakit moler (Fusarium oxysporum f.sp. cepae). Plumula, 5(1), 10–20. Retrieved from Link

Rampersad, S. (2020). Pathogenomics and Management of Fusarium Diseases in Plants. Pathogens, 9(5), 340. Crossref

Ronald, P. (2011). Plant genetics, sustainable agriculture, and global food security. Genetics, 188(1), 11–20. Crossref

Savary, S., Teng, P. S., Willocquet, L., & Nutter, F. (2006). Quantification and Modeling of Crop Losses: A Review of Purposes. Annual Review Phytopathology, 44, 89–112. Crossref

Saxena, A., & Cramer, C. S. (2009). Screening of onion seedlings for resistance against new mexico isolates of Fusarium oxysporum f. sp. cepae. Journal of Plant Pathology, 91(1), 199–202. Retrieved from Link

Schwartz, H. F. (2008). Compendium of onion and garlic diseases and pests, Second Edition. Schwartz, H. F., and Mohan, S. K., eds. The American Phytopathological Society. Press, St. Paul, Minnesota, U.S.A. Crossref

Sintayehu, A., Sakhuja, P. K., Fininsa, C., & Ahmed, S. (2011). Management of fusarium basal rot (Fusarium oxysporum f. sp. cepae) on shallot through fungicidal bulb treatment. Crop Protection, 30(5), 560–565. Crossref

Velten, S., Leventon, L., Jager, N., & Newig, J. (2015). What is sustainable agriculture? A systematic review. Sustainability, 7(6), 783–786. Crossref

Waller, J. M., & Brayford, D. (1990). Fusarium diseases in the tropics. Plant Pest Management, 36(3), 181–194. Crossref

Wijoyo, R. B., Sulistyaningsih, E., & Wibowo, A. (2019). Growth, Yield and Resistance Responses of Three Cultivars on True Seed Shallots to Twisted Disease with Salicylic Acid Application. Caraka Tani: Journal of Sustainable Agriculture, 35(1), 1–11. Crossref

Wiyatiningsih, S., Wibowo, A., & Triwahyu, E. P. (2009). Tanggapan tujuh kultivar bawang merah terhadap infeksi Fusarium oxysporum f. sp. cepae penyebab penyakit moler. Jurnal Pertanian Mapeta, 12(1), 1–12. Retrieved from Link

Wiyatiningsih, S. (2007). Kajian Epidemi Penyakit Moler pada Bawang Merah [Dissertation] (Universitas Gadjah Mada. Yogyakarta). Retrieved from Link

Yanuarti, A. R., & Afsari, M. D. (2016). Profil Komoditas Bawang Merah. Retrieved from Link

Refbacks

  • There are currently no refbacks.