Vol. 10 No. 1 (2026): MARCH
Open Access
Peer Reviewed

Evaluasi Efikasi BiokomposTricho terhadap Intensitas Serangan Blast pada Padi IR42 di Kotadaro

Authors

DOI:

10.25047/agriprima.v10i1.795
Received: Jan 02, 2026
Accepted: Mar 02, 2026
Published: Mar 31, 2026

Abstract

Penyakit blast (Pyricularia oryzae) menjadi kendala utama produksi padi di lahan suboptimal rawa lebak yang memerlukan penanganan ramah lingkungan. Penelitian ini bertujuan mengevaluasi efikasi BiokomposTricho (mengandung Trichoderma spp.) dalam menekan serangan blast serta meningkatkan produktivitas padi varietas IR42 di Kotadaro, Ogan Ilir, Sumatera Selatan. Metode penelitian meliputi observasi lapangan terhadap gejala makroskopis dan intensitas serangan, analisis laboratorium morfologi patogen, serta pengamatan parameter pertumbuhan dan hasil ubinan. Kondisi lingkungan seperti suhu, kelembapan, pH tanah, dan kadar unsur hara makro turut diukur sebagai data pendukung. Hasil penelitian menunjukkan bahwa aplikasi BiokomposTricho secara signifikan mampu menurunkan intensitas penyakit blast hingga 30% dibandingkan kontrol yang mencapai 44% pada taraf nyata 5% (P<0,05). Penggunaan BiokomposTricho juga mampu mengoptimalkan kondisi lingkungan untuk menghambat proses sporulasi. Selain menekan patogen, penggunaan biokompos dapat meningkatkan pertumbuhan vegetatif dan produktivitas tanaman yang ditunjukkan pada hasil ubinan sebesar 4,17 ton/ha atau meningkat 8,3% dibandingkan kontrol. Peningkatan ini dibarengi dengan perbaikan kesuburan tanah yang terlihat dari peningkatan kandungan unsur N, P, dan K. Hasil penelitian ini dapat disimpulkan bahwa BiokomposTricho terbukti efektif sebagai agen pengendali hayati dengan menekan intensitas penyakit blast sebesar 14% secara absolut, sekaligus berperan sebagai biofertilizer yang meningkatkan hasil gabah melalui pengoptimalan komponen produksi seperti berat gabah dan jumlah bulir. Temuan ini menegaskan bahwa inovasi biokompos berbasis agen antagonis sangat potensial diaplikasikan untuk pengendalian penyakit tanaman di wilayah rawa lebak.

Keywords:

BiokomposTricho Pyricularia oryzae padi IR42 blast Trichoderma spp

References

Asghar, W., Craven, K. D., Kataoka, R., Mahmood, A., Asghar, N., Raza, T., & Iftikhar, F. (2024). The application of Trichoderma spp., an old but new useful fungus, in sustainable soil health intensification: A comprehensive strategy for addressing challenges. Plant Stress, 12, 100455. https://doi.org/10.1016/j.stress.2024.100455

Barnett, H. L., & Hunter, B. B. (1998). Illustrated Genera of Imperfect Fungi (4th ed.). APS Press.

Chiu, M. C., Chen, C. L., Chen, C. W., & Lin, H. J. (2022). Weather fluctuation can override the effects of integrated nutrient management on fungal disease incidence in the rice fields in Taiwan. Scientific Reports, 12(1), 4273. https://doi.org/10.1038/s41598-022-08139-7

Contreras, C. H. A., Schmoll, M., Esquivel-Ayala, B. A., González-Esquivel, C. E., Rocha-Ramírez, V., & Larsen, J. (2024). Mechanisms for plant growth promotion activated by Trichoderma in natural and managed terrestrial ecosystems. Microbiological Research, 281, 127621. https://doi.org/10.1016/j.micres.2024.127621

Guo, Z., Han, J., Zhang, Y., & Wang, H. (2023). Mineralization mechanism of organic carbon in maize rhizosphere soil of soft rock and sand mixed soil under different fertilization modes. Frontiers in Plant Science, 14, 1278122. https://doi.org/10.3389/fpls.2023.1278122

Gutiérrez, M., K., Olguín-Martínez, A. I., Montoya-Martínez, A. C., & de los Santos-Villalobos, S. (2025). Trichoderma in Sustainable Agriculture and the Challenges Related to Its Effectiveness. Diversity, 17(10), 734. https://doi.org/10.3390/d17100734

Guzmán-Guzmán, P., Kumar, A., de los Santos-Villalobos, S., Parra-Cota, F. I., Orozco-Mosqueda, M. d. C., Fadiji, A. E., Hyder, S., Babalola, O. O., & Santoyo, G. (2023). Trichoderma species: Our best fungal allies in the biocontrol of plant diseases—A review. Plants, 12(3), 432. https://doi.org/10.3390/plants12030432

Hassan, M. M. (2014). Influence of protoplast fusion between two Trichoderma spp. on extracellular enzymes production and antagonistic activity. Biotechnology & Biotechnological Equipment, 28(6), 1014–1023. https://doi.org/10.1080/13102818.2014.978206

Matsuzaki, R., Gunnigle, E., Geissen, V., & others. (2023). Pesticide exposure and the microbiota- ISME Journal, 17, 1153–1166. https://doi.org/10.1038/s41396-023-01450-9

Mowobi, G. G., Usman, A., Yeye, M., Yusuf, M., & Alabi, O. (2022). Screening of rice germplasm for blast resistance in Nigeria. Asian Journal of Agriculture, 6(1), 1–6. https://doi.org/10.13057/asianjagric/g060106

Mukherjee, P. K., Mendoza-Mendoza, A., Zeilinger, S., & Horwitz, B. A. (2022). Mycoparasitism as a mechanism of Trichoderma-mediated suppression of plant diseases. Fungal Biology Reviews, 39, 15–33. https://doi.org/10.1016/j.fbr.2021.11.004

Riddech, N ntemic defense response in brinjal against Sclerotinia sclerotiorum. Current Research in Microbial Sciences, 2, 100051. https://doi.org/10.1016/j.crmicr.2021.100051

Tran, L. M. H., Tran, H. T., & Bui, V. T. (2025). Impact of plant growth regulators on shortening maturity duration and enhancing grain yield in Oryza sativa cv. OM5451. Journal of Applied Biology & Biotechnology, 13(6), 63–71. https://doi.org/10.7324/JABB.2025.253706

Wen, Y., Ma, Y., Wu, Z., Yang, Y., Yuan, X., Chen, K., Luo, Y., He, Z., Huang, X., Deng, P., Li, C., Yang, Z., Chen, Z., Ma, J., & Sun, Y. (2024). Enhancing rice ecological production: Synergistic effects of wheat-straw decomposition and microbial agents on soil health and yield. Frontiers in Plant Science, 15, 1368184. https://doi.org/10.3389/fpls.2024.1368184

Xing, Y., Wang, X., & Mustafa, A. (2025). Exploring the link between soil health and crop productivity. Ecotoxicology and Environmental Safety, 289, 117703. https://doi.org/10.1016/j.ecoenv.2025.117703

Yao, X., Guo, H., Zhang, K., Zhao, M., Ruan, J., & Chen, J. (2023). Trichoderma and its role in biological control of plant fungal and nematode disease. Frontiers in microbiology, 14, 1160551. https://doi.org/10.3389/fmicb.2023.1160551

Yogalakshimi, S., Thiruvudainambi, S., Kalpana, K., Thamizh Vendan, K., & Oviya, R. (2021). Antifungal activity of Trichoderma atroviride against Fusarium oxysporum f. sp. lycopersici causing wilt disease of tomato. Journal of Horticultural Sciences, 16(2). https://doi.org/10.24154/jhs.v16i2.1066

Author Biographies

Rahmad Fadli, Sriwijaya University image/svg+xml

Author Origin : Indonesia

Suwandi, Sriwijaya University image/svg+xml

Author Origin : Indonesia

Andri Purniawan, Sriwijaya University image/svg+xml

Author Origin : Indonesia

Monalisa, Sriwijaya University image/svg+xml

Author Origin : Indonesia

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How to Cite

Fadli, R., Suwandi, Purniawan, A., & Monalisa. (2026). Evaluasi Efikasi BiokomposTricho terhadap Intensitas Serangan Blast pada Padi IR42 di Kotadaro. Agriprima : Journal of Applied Agricultural Sciences, 10(1), 1–10. https://doi.org/10.25047/agriprima.v10i1.795